Title | Author | Year | SCOPUS | PUBMED | ISI | TCI | |
---|---|---|---|---|---|---|---|
1. | Comparison of the polymerase chain reaction and serologic tests for diagnosis of septicemic melioidosis. | Sermswan, RW Wongratanacheewin, S Anuntagool, N Sirisinha, S |
0 | ||||
2. | Characterization of the Opisthorchis viverrini genome | Sermswan, R Mongkolsuk, S Sirisinha, S |
1991 | ||||
3. | Detection of Opisthorchis viverrini by monoclonal antibody-based ELISA and DNA hybridization | Sirisinha, S Chawengkirttikul, R Sermswan, R Amornpant, S Mongkolsuk, S Panyim, S |
1991 | ||||
4. | Immunodiagnosis of opisthorchiasis. | Sirisinha, S. Sermswan, R.W.O. |
1991 | ||||
5. | Isolation and characterization of Opisthorchis viverrini specific DNA probe | Sermswan, R Mongkolsuk, S Panyim, S Sirisinha, S |
1991 | ||||
6. | Search for specific antigens of Pseudomonas pseudomallei : I. An analysis of sonic extracted antigens of P.pseudomallei by SDS-PAGE and immunoblot | Suwin Wongwajana supatra Ratanatragooldecha Surasakdi Wongratanacheewin Unchalee Tattawasart Kanokrut Nuntirooj Rasana Wongratanacheewin Chatri Settasatian |
1991 | ||||
7. | Characterization of Pseudomonas pseudomallei antigens by SDS-polyacrylamide gel electrophoresis and western blot. | Wongratanacheewin, S. Tattawasart, U. Lulitanond, V. Wongwajana, S. Sermswan, R.W.O. Sookpranee, M. Nuntirooj, K. |
1993 | ||||
8. | Construction of a specific DNA probe for diagnosis of melioidosis and use as an epidemiological marker of Pseudomonas pseudomallei | Sermswan, RW Wongratanacheewin, S Tattawasart, U Wongwajana, S |
1994 | ||||
9. | Use of culture-filtrated antigen in an ELISA and a dot immunoassay for the diagnosis of melioidosis. | Wongratanacheewin, S. Amornpunt, S. Sermswan, R.W.O. Tattawasart, U. Wongwajana, S. |
1995 | ||||
10. | Detection of Burkholderia pseudomallei in blood samples using polymerase chain reaction. | Rattanathongkom, A. Sermswan, R.W.O. Wongratanacheewin, S. |
1997 | ||||
11. | Comparison of the polymerase chain reaction and serologic tests for diagnosis of septicemic melioidosis | Sermswan, R.W.O. Wongratanacheewin, S. Anuntagool, N. Sirisinha, S. |
2000 | ||||
12. | Comparison of three PCR primer sets for diagnosis of septicemic melioidosis | Kunakorn, M Raksakait, K Sethaudom, C Sermswan, RW Dharakul, T |
2000 | ||||
13. | Use of multiplex PCR patterns as genetic markers for Burkholderia pseudomallei | Wongratanacheewin, S Komutrin, K Sermswan, RW |
2000 | ||||
14. | Development of a PCR-based method for the detection of Opisthorchis viverrini in experimentally infected hamsters | S Wongratanacheewin W Pumidonming RW Sermswan W Maleewong |
2001 | ||||
15. | Retrospective study on the diagnostic value of IgG ELISA, dot immunoassay and indirect hemagglutination in septicemic melioidosis | Wongratanacheewi, S Sermswan, RW Anuntagool, N Sirisinha, S |
2001 | ||||
16. | Ribotyping of Burkholderia pseudomallei from clinical and soil isolates in Thailand | Sermswan, R.W.O. Wongratanacheewin, S. Thamlikitkul, V. |
2001 | ||||
17. | Detection of Opisthorchis viverrini in human stool specimens by PCR | S Wongratanacheewin W Pumidonming RW Sermswan V Pipitgool W Maleewong |
2002 | ||||
18. | Detection of Opisthorchis viverrini in human stool specimens by PCR [3] | Wongratanacheewin, S. Pumidonming, W. Sermswan, R.W.O. Pipitgool, V. Maleewong, W. |
2002 | ||||
19. | Genetic Engineering and Diagnosis of Genetic Diseases in 21st Century | Rasana Wongratanacheewin | 2003 | ||||
20. | Immunology and molecular biology of Opisthorchis viverrini infection | Wongratanacheewin, S Sermswan, RW Sirisinha, S |
2003 | ||||
21. | Immunostimulatory CpG oligodeoxynucleotide confers protection in a murine model of infection with Burkholderia pseudomallei | Wongratanacheewin, S. Sermswan, R.W.O. Sirisinha, S. |
2004 | ||||
22. | Isolation of fetal nucleated red blood cell from maternal blood using immunomagnetic beads for prenatal diagnosis | Pongsritasana, T. Wongratanacheewin, S. Sermswan, R.W.O. |
2006 | ||||
23. | Lipopolysaccharide heterogeneity among Burkholderia pseudomallei from different geographic and clinical origins. | Anuntagool, N Wuthiekanun, V White, NJ Currie, BJ Sermswan, RW Wongratanacheewin, S Taweechaisupapong, S Chaiyaroj, SC Sirisinha, S |
2006 | ||||
24. | Short report: Lipopolysaccharide heterogeneity among Burkholderia pseudomallei from different geographic and clinical origins | Anuntagool, N. Wuthiekanun, V.R. Currie, B.J. Sermswan, R.W.O. Wongratanacheewin, S. Taweechaisupapong, S. Sirisinha, S. |
2006 | ||||
25. | Toxicity of the entomopathogenic bacteria Photorhabdus and Xenorhabdus to the mushroom mite (Luciaphorus sp.; Acari: Pygmephoridae) | P Bussaman RW Sermswan PS Grewal |
2006 | ||||
26. | A horizontal gene transfer event defines two distinct groups within Burkholderia pseudomallei that have dissimilar geographic distributions | Tuanyok, A Auerbach, RK Brettin, TS Bruce, DC Munk, AC Detter, JC Pearson, T Hornstra, H Sermswan, RW Wuthiekanun, V Peacock, SJ Currie, BJ Keim, P Wagner, DM |
2007 | ||||
27. | Cytokine expression in hamsters experimentally infected with Opisthorchis viverrini | Jittimanee, J. Sermswan, R.W.O. Puapairoj, A. Maleewong, W. Wongratanacheewin, S. |
2007 | ||||
28. | Fine-scale genetic diversity among Burkholderia pseudomallei soil isolates in northeast Thailand. | Jana M. U'Ren Heidie Hornstra Talima Pearson James M. Schupp Benjamin Leadem Shalamar Georgia Rasana W. Sermswan Paul Keim |
2007 | ||||
29. | Analyses of vaccination protocols for Leptospira interrogans serovar Autumnalis in hamsters | Amporn Srikram Surasakdi Wongratanacheewin Anucha Puapairoj Vanaporn Wuthiekanun Rasana W. Sermswan |
2008 | ||||
30. | Differential response of cytokines induced by Leptospira interrogans, serogroup Pomona, serovar Pomona, in mouse and human cell lines | Jongyota, W Wigraipat, C Nontapa, S Taweechaisupapong, S Wara-Aswapati, NC Wongratanacheewin, S Sermswan, RW |
2008 | ||||
31. | Soil physicochemical properties related to the presence of Burkholderia pseudomallei | Palasatien, S Lertsirivorakul, R Royros, P Wongratanacheewin, S Sermswan, RW |
2008 | ||||
32. | TBK1 does not play a role in the control of in vitro Burkholderia pseudomallei growth | Panomket, P Splitter, G Harms, J Sermswan, RW Chedchotisakd, P Wongratanacheewin, S |
2008 | ||||
33. | Genome-wide transposon mutagenesis in pathogenic Leptospira species. | Gerald L. Murray Viviane Morel Gustavo M. Cerqueira Julio Croda Amporn Srikram Rebekah Henry Albert I. Ko Odir A. Dellagostin Dieter M. Bulach Rasana W. Sermswan Ben Adler Mathieu Picardeau |
2009 | ||||
34. | Leptospira interrogans requires heme oxygenase for disease pathogenesis | Murray, GL Srikram, A Henry, R Puapairoj, A Sermswan, RW Adler, B |
2009 | ||||
35. | Major surface protein LipL32 is not required for either acute or chronic infection with leptospira interrogans | Gerald L. Murray Amporn Srikram David E. Hoke Elsio A. Wunder Rebekah Henry Miranda Lo Kunkun Zhang Rasana W. Sermswan Albert I. Ko Ben Adler |
2009 | ||||
36. | Use of a low-dose steroid as an adjunct in the treatment, in mice, of severe sepsis caused by Burkholderia pseudomallei | P. Panomket P. Chetchotisakd R. W. Sermswan P. Pannengpetch S. Wongratanacheewin |
2009 | ||||
37. | Bacterial loads and antibody responses in BALB/c mice infected with low and high doses of Burkholderia pseudomallei. | Srisurat, N Sermswan, RW Tatawasart, U Wongratanacheewin, S |
2010 | ||||
38. | Bacteriophages and their Medical Applications | Nittaya Khakhum Umaporn Yordpratum Rasana Wongratanacheewin |
2010 | ||||
39. | Growing Burkholderia pseudomallei in biofilm stimulating conditions significantly induces antimicrobial resistance | Chakrit Sawasdidoln Suwimol Taweechaisupapong Rasana W. Sermswan Unchalee Tattawasart Sumalee Tungpradabkul Surasakdi Wongratanacheewin |
2010 | ||||
40. | Metagenomics | Chotima Potisap Rasana Wongratanacheewin |
2010 | ||||
41. | Mutations affecting Leptospira interrogans lipopolysaccharide attenuate virulence | Murray, GL Srikram, A Henry, R Hartskeerl, RA Sermswan, RW Adler, B |
2010 | ||||
42. | Short Report: Bacterial Loads and Antibody Responses in BALB/c Mice Infected with Low and High Doses of Burkholderia pseudomallei | Srisurat, N. Sermswan, R.W.O. Tatawasart, U. Wongratanacheewin, S. |
2010 | ||||
43. | Use of Luminescent Leptospira interrogans for Enumeration in Biological Assays | Srikram, A. Sermswan, R.W.O. |
2010 | ||||
44. | Cross-protective Immunity Against Leptospirosis Elicited by a Live, Attenuated Lipopolysaccharide Mutant | Srikram, A. Zhang, K. Bartpho, T. Sermswan, R.W.O. |
2011 | ||||
45. | Genetic diversity of mushroom mite (Luciaphorus sp.) infesting cultivated mushrooms in the Northeast of Thailand | Bussaman, P. Sermswan, R.W.O. |
2011 | ||||
46. | Novel lytic bacteriophages from soil that lyse Burkholderia pseudomallei. | Yordpratum, U. Tattawasart, U. Wongratanacheewin, S. Sermswan, R.W.O. |
2011 | ||||
47. | Recombinant LipL32 and LigA from Leptospira are unable to stimulate protective immunity against leptospirosis in the hamster model | Deveson Lucas, D.S. Srikram, A. Sermswan, R.W.O. |
2011 | ||||
48. | Cationic liposomes extend the immunostimulatory effect of CpG oligodeoxynucleotide against Burkholderia pseudomallei infection in BALB/c mice. | Puangpetch, A. Huang, Y.Y. Sermswan, R.W.O. Chaicumpa, W. Sirisinha, S. Wongratanacheewina, S. |
2012 | ||||
49. | Development of a multiplex PCR assay for rapid identification of Burkholderia pseudomallei, Burkholderia thailandensis, Burkholderia mallei and Burkholderia cepacia complex | Seng Fook Koh Sun Tee Tay Rasana Sermswan Surasakdi Wongratanacheewin Kek Heng Chua Savithri D. Puthucheary |
2012 | ||||
50. | Flaa proteins in Leptospira interrogans are essential for motility and virulence but are not required for formation of the flagellum sheath | Ambroise Lambert Mathieu Picardeau David A. Haake Rasana W. Sermswan Amporn Srikram Ben Adler Gerald A. Murray |
2012 | ||||
51. | Genomic islands as a marker to differentiate between clinical and environmental Burkholderia pseudomallei | Thanatchaporn Bartpho Thidathip Wongsurawat Surasakdi Wongratanacheewin Adel M. Talaat Nitsara Karoonuthaisiri Rasana W. Sermswan |
2012 | ||||
52. | Leptospira interrogans catalase is required for resistance to H2O2 and for virulence. | Eshghi, A. Bartpho, T. Sermswan, R.W.O. |
2012 | ||||
53. | Protective immunization of hamsters against Opisthorchis viverrini infection is associated with the reduction of TGF-β expression | Jittimanee, J Sermswan, RW Kaewraemruaen, C Barta, JR Macinnes, JI Maleewong, W Wongratanacheewin, S |
2012 | ||||
54. | Environmental management procedures following fatal melioidosis in a captive chimpanzee (Pan Troglodytes) | Sommanustweechai, A Kasantikul, T Somsa, W Wongratanacheewin, S Sermswan, RW Kongmakee, P Thomas, W Kamolnorranath, S Siriaroonrat, B Bush, M Banlunara, W |
2013 | ||||
55. | Evaluation of 238 antigens of Leptospira borgpetersenii serovar Hardjo for protection against kidney colonisation | Gerald L. Murray Miranda Lo Dieter M. Bulach Amporn Srikram Torsten Seemann Noelene S. Quinsey Rasana W. Sermswan Andy Allen Ben Adler |
2013 | ||||
56. | Leptospiral LruA is required for virulence and modulates an interaction with mammalian apolipoprotein AI | Kunkun Zhang Gerald L. Murray Torsten Seemann Amporn Srikram Thanatchaporn Bartpho Rasana W. Sermswan Ben Adler David E. Hoke |
2013 | ||||
57. | Leptospiral outer membrane protein lipl41 is not essential for acute leptospirosis but requires a small chaperone protein, lep, for stable expression | Amy M. King Thanatchaporn Bartpho Rasana W. Sermswan Dieter M. Bulach Azad Eshghi Mathieu Picardeau Ben Adler Gerald L. Murray |
2013 | ||||
58. | Use of a high-throughput screen to identify Leptospira mutants unable to colonize the carrier host or cause disease in the acute model of infection. | Renee A. Marcsisin Thanatchaporn Bartpho Dieter M. Bulach Amporn Srikram Rasana W. Sermswan Ben Adler Gerald L. Murray |
2013 | ||||
59. | Characterization of BPSS1521 (bprD), a regulator of Burkholderia pseudomallei virulence gene expression in the mouse model. | Sunisa Chirakul Thanatchaporn Bartpho Thidathip Wongsurawat Suwimol Taweechaisupapong Nitsara Karoonutaisiri Adel M. Talaat Surasakdi Wongratanacheewin Robert K. Ernst Rasana W. Sermswan |
2014 | ||||
60. | Comparison of the protective effects of killed Burkholderia pseudomallei and CpG oligodeoxynucleotide against live challenge | Apichaya Puangpetch Robert Anderson Yan Y. Huang Rojana Saengsot Rasana W. Sermswan Surasakdi Wongratanacheewin |
2014 | ||||
61. | High HMGB1 level is associated with poor outcome of septicemic melioidosis | Sermswan, R.W.O. Paeyao, A. Wongratanacheewin, S. |
2014 | ||||
62. | High-temperature protein G is an essential virulence factor of Leptospira interrogans | Amy M. King Gabriela Pretre Thanatchaporn Bartpho Rasana W. Sermswan Claudia Toma Toshihiko Suzuki Azad Eshghi Mathieu Picardeau Ben Adler Gerald L. Murray |
2014 | ||||
63. | LYTIC CAPABILITY OF BACTERIOPHAGES (FAMILY MYOVIRIDAE) ON BURKHOLDERIA PSEUDOMALLEI | Kulsuwan, R Wongratanacheewin, S Wongratanacheewin, RS Yordpratum, U Tattawasart, U |
2014 | ||||
64. | A PCR-based detection of burkholderia pseudomallei diversity using myoviridae prophage typing | Nakornpakdee, Y Sermswan, RW Tattawasart, U Yordpratum, U Wongratanacheewin, S |
2015 | ||||
65. | Direct detection of Burkholderia pseudomallei and biological factors in soil. | Rasana W. Sermswan Phairat Royrosa Nittaya Khakhum Surasakdi Wongratanacheewin Apichai Tuanyok |
2015 | ||||
66. | Drug susceptibility and biofilm formation of burkholderia pseudomallei in nutrient-limited condition | Anutrakunchai, C Sermswan, RW Wongratanacheewin, S Puknun, A Taweechaisupapong, S |
2015 | ||||
67. | Retrospective study on fatal melioidosis in captive zoo animals in Thailand | Kasantikul, T. Polsrila, K. Kongkham, W. Chaisongkram, C. Kongmakee, P. Narongwanichgarn, W. Sermswan, R.W.O. |
2015 | ||||
68. | THE CONTRIBUTION OF SOIL PHYSICOCHEMICAL PROPERTIES TO THE PRESENCE AND GENETIC DIVERSITY OF BURKHOLDERIA PSEUDOMALLEI | Potisap, C. Boonmee, A. Chaianunporn, T. Wongratanacheewin, S. Sermswan, R.W.O. |
2015 | ||||
69. | Transcription level analysis of intracellular Burkholderia pseudomallei illustrates the role of BPSL1502 during bacterial interaction with human lung epithelial cells | Teerasit Techawiwattanaboon Tanachaporn Bartpho Rasana Wongratanacheewin Sermswan Sorujsiri Chareonsudjai |
2015 | ||||
70. | Burkholderia pseudomallei resistance to antibiotics in biofilm-induced conditions is related to efflux pumps. | Sermswan, R.W.O. Wongratanacheewin, S. |
2016 | ||||
71. | Cloning, expression, and characterization of a peptidoglycan hydrolase from the Burkholderia pseudomallei phage ST79 | Nittaya Khakhum Umaporn Yordpratum Atcha Boonmee Unchalee Tattawasart Jorge L. M. Rodrigues Rasana W. Sermswan |
2016 | ||||
72. | CpG oligodeoxynucleotides with crude parasite antigens reduce worm recovery in Opisthorchis viverrini infected hamsters | Kaewraemruaen, C Sermswan, RW Wongratanacheewin, S |
2016 | ||||
73. | Identification of the Burkholderia pseudomallei bacteriophage ST79 lysis gene cassette | Khakhum, N Yordpratum, U Boonmee, A Tattawasart, U Rodrigues, JL Sermswan, RW |
2016 | ||||
74. | Induction of regulatory T cells by Opisthorchis viverrini | Kaewraemruaen, C. Sermswan, R.W.O. Wongratanacheewin, S. |
2016 | ||||
75. | Retrospective Study on Fatal Melioidosis in Captive Zoo Animals in Thailand | Kasantikul, T Sommanustweechai, A Polsrila, K Kongkham, W Chaisongkram, C Sanannu, S Kongmakee, P Narongwanichgarn, W Bush, M Sermswan, RW Banlunara, W |
2016 | ||||
76. | Role of RelA and SpoT in Burkholderia pseudomallei survival, biofilm formation and ceftazidime tolerance during nutritional stress | C. Anutrakunchai C. M. Hemsley R. W. Sermswan R. W. Titball S. Chareonsudjai S. Taweechaisupapong |
2016 | ||||
77. | Hydrological connectivity and Burkholderia pseudomallei prevalence in wetland environments: investigating rice-farming community's risk of exposure to melioidosis in North-East Thailand | Sermswan, R.W. | 2017 | ||||
78. | Physicochemical and Biological Factors of Soil and the Potential Use of Antagonistic Microbes for Biocontrol of Burkholderia pseudomallei | Sermswan, R.W. Wongratanacheewin, S. |
2017 | ||||
79. | Secondary metabolites from Bacillus amyloliquefaciens isolated from soil can kill Burkholderia pseudomallei | Patcharaporn Boottanun Chotima Potisap Julian G. Hurdle Rasana W. Sermswan |
2017 | ||||
80. | Burkholderia pseudomallei-absent soil bacterial community results in secondary metabolites that kill this pathogen | Potisap, C Khan, MAW Boonmee, A Rodrigues, JLM Wongratanacheewin, S Sermswan, RW |
2018 | ||||
81. | Hamster IFN-gamma(+)CD4(+) and IL-4(+)CD4(+) T cell responses against leptospires are significantly higher than those of mice | Sermswan, R.W. Wongratanacheewin, S. |
2018 | ||||
82. | Heterologous protection elicited by a live, attenuated, Leptospira vaccine | Murray, GL Simawaranon, T Kaewraemruaen, C Adler, B Sermswan, RW |
2018 | ||||
83. | Melioidosis in Thailand: Present and Future. | Hinjoy, S Hantrakun, V Kongyu, S Kaewrakmuk, J Wangrangsimakul, T Jitsuronk, S Saengchun, W Bhengsri, S Akarachotpong, T Thamthitiwat, S Sangwichian, O Anunnatsiri, S Sermswan, RW Lertmemongkolchai, G Tharinjaroen, CS Preechasuth, K Udpaun, R Chuensombut, P Waranyasirikul, N Anudit, C Narenpitak, S Jutrakul, Y Teparrukkul, P Teerawattanasook, N Thanvisej, K Suphan, A Sukbut, P Ploddi, K Sirichotirat, P Chiewchanyon, B Rukseree, K Hongsuwan, M Wongsuwan, G Sunthornsut, P Wuthiekanun, V Sachaphimukh, S Wannapinij, P Chierakul, W Chewapreecha, C Thaipadungpanit, J Chantratita, N Korbsrisate, S Taunyok, A Dunachie, S Palittapongarnpim, P Sirisinha, S Kitphati, R Iamsirithaworn, S Chaowagul, W Chetchotisak, P Whistler, T Wongratanacheewin, S Limmathurotsakul, D |
2018 | ||||
84. | A new cytotoxic plumbagin derivative from roots of . | Suchaichit, N Suchaichit, NP Kanokmedhakul, K Boottanun, P Sermswan, RW Moosophon, P Kanokmedhakul, S |
2019 | ||||
85. | A new cytotoxic plumbagin derivative from roots of Diospyros undulata | Suchaichit, N. Kanokmedhakul, K. Sermswan, R.W. Moosophon, P. Kanokmedhakul, S. |
2019 | ||||
86. | Iron chelator effect on biofilm-producing burkholderia pseudomallei antibiotic susceptibility in a microfluidic culture system | Supaksorn Chattagul Surasakdi Wongratanacheewin Rasana W. Sermswan |
2019 | ||||
87. | Temporal proteomic profiling reveals changes that support Burkholderia biofilms | Sermswan, R.W. | 2019 | Count | 74 | 69 | 62 | 4 |
Title | Authors | Year | Publication name | Cited count | ||||||||
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< 2015 | 2016 | 2017 | 2018 | 2019 | 2020 | รวม | ||||||
1. | Characterization of the Opisthorchis viverrini genome | Sermswan, R.W.O. Sirisinha, S. |
1991 |
Journal of Helminthology 1 (65), pp. 51-54 |
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2. | Detection of Opisthorchis viverrini by monoclonal antibody-based ELISA and DNA hybridization | Sirisinha, S. Sermswan, R.W.O. Panyim, S. |
1991 |
American Journal of Tropical Medicine and Hygiene 2 (44), pp. 140-145 |
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3. | Immunodiagnosis of opisthorchiasis. | Sirisinha, S. Sermswan, R.W.O. |
1991 |
The Southeast Asian journal of tropical medicine and public health (22 Suppl), pp. 179-183 |
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4. | Isolation and characterization of Opisthorchis viverrini specific DNA probe | Sermswan, R.W.O. Panyim, S. Sirisinha, S. |
1991 |
Molecular and Cellular Probes 6 (5), pp. 399-407 |
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5. | Characterization of Pseudomonas pseudomallei antigens by SDS-polyacrylamide gel electrophoresis and western blot. | Wongratanacheewin, S. Tattawasart, U. Lulitanond, V. Wongwajana, S. Sermswan, R.W.O. Sookpranee, M. Nuntirooj, K. |
1993 |
The Southeast Asian journal of tropical medicine and public health 1 (24), pp. 107-113 |
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6. | Construction of a specific DNA probe for diagnosis of melioidosis and use as an epidemiological marker of Pseudomonas pseudomallei | Sermswan, R.W.O. Wongratanacheewin, S. Tattawasart, U. Wongwajana, S. |
1994 |
Molecular and Cellular Probes 1 (8), pp. 1-9 |
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7. | Use of culture-filtrated antigen in an ELISA and a dot immunoassay for the diagnosis of melioidosis. | Wongratanacheewin, S. Amornpunt, S. Sermswan, R.W.O. Tattawasart, U. Wongwajana, S. |
1995 |
The Southeast Asian journal of tropical medicine and public health 2 (26), pp. 329-334 |
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8. | Detection of Burkholderia pseudomallei in blood samples using polymerase chain reaction | Rattanathongkom, A. Sermswan, R.W.O. Wongratanacheewin, S. |
1997 |
Molecular and Cellular Probes 1 (11), pp. 25-31 |
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9. | Comparison of the polymerase chain reaction and serologic tests for diagnosis of septicemic melioidosis | Sermswan, R.W.O. Wongratanacheewin, S. Anuntagool, N. Sirisinha, S. |
2000 |
American Journal of Tropical Medicine and Hygiene 3-4 (63), pp. 146-149 |
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10. | Comparison of three PCR primer sets for diagnosis of septicemic melioidosis | Sermswan, R.W.O. | 2000 |
Acta Tropica 2-3 (74), pp. 247-251 |
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11. | Use of multiplex PCR patterns as genetic markers for Burkholderia pseudomallei | Wongratanacheewin, S. Komutrin, K. Sermswan, R.W.O. |
2000 |
Acta Tropica 2-3 (74), pp. 193-199 |
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12. | Development of a PCR-based method for the detection of Opisthorchis viverrini in experimentally infected hamsters | Wongratanacheewin, S. Pumidonming, W. Sermswan, R.W.O. Maleewong, W. |
2001 |
Parasitology 2 (122), pp. 175-180 |
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13. | Ribotyping of Burkholderia pseudomallei from clinical and soil isolates in Thailand | Sermswan, R.W.O. Wongratanacheewin, S. Thamlikitkul, V. |
2001 |
Acta Tropica 3 (80), pp. 237-244 |
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14. | Detection of Opisthorchis viverrini in human stool specimens by PCR [3] | Wongratanacheewin, S. Pumidonming, W. Sermswan, R.W.O. Pipitgool, V. Maleewong, W. |
2002 |
Journal of Clinical Microbiology 10 (40), pp. 3879-3880 |
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15. | Immunology and molecular biology of Opisthorchis viverrini infection | Wongratanacheewin, S. Sermswan, R.W.O. Sirisinha, S. |
2003 |
Acta Tropica 3 (88), pp. 195-207 |
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16. | Immunostimulatory CpG oligodeoxynucleotide confers protection in a murine model of infection with Burkholderia pseudomallei | Wongratanacheewin, S. Sermswan, R.W.O. Sirisinha, S. |
2004 |
Infection and Immunity 8 (72), pp. 4494-4502 |
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17. | Isolation of fetal nucleated red blood cell from maternal blood using immunomagnetic beads for prenatal diagnosis | Pongsritasana, T. Wongratanacheewin, S. Sermswan, R.W.O. |
2006 |
Asian Pacific Journal of Allergy and Immunology 1 (24), pp. 65-71 |
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18. | Short report: Lipopolysaccharide heterogeneity among Burkholderia pseudomallei from different geographic and clinical origins | Anuntagool, N. Wuthiekanun, V.R. Currie, B.J. Sermswan, R.W.O. Wongratanacheewin, S. Taweechaisupapong, S. Sirisinha, S. |
2006 |
American Journal of Tropical Medicine and Hygiene 3 (74), pp. 348-352 |
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19. | Toxicity of the entomopathogenic bacteria Photorhabdus and Xenorhabdus to the mushroom mite (Luciaphorus sp.; Acari: Pygmephoridae) | Bussaman, P. Sermswan, R.W.O. Grewal, P.S. |
2006 |
Biocontrol Science and Technology 3 (16), pp. 245-256 |
||||||||
20. | A horizontal gene transfer event defines two distinct groups within Burkholderia pseudomallei that have dissimilar geographic distributions | Bruce, D.C. Sermswan, R.W.O. Wuthiekanun, V.R. Peacock, S.J. Currie, B.J. |
2007 |
Journal of Bacteriology 24 (189), pp. 9044-9049 |
||||||||
21. | Cytokine expression in hamsters experimentally infected with Opisthorchis viverrini | Jittimanee, J. Sermswan, R.W.O. Puapairoj, A. Maleewong, W. Wongratanacheewin, S. |
2007 |
Parasite Immunology 3 (29), pp. 159-167 |
||||||||
22. | Fine-scale genetic diversity among Burkholderia pseudomallei soil isolates in northeast Thailand | Sermswan, R.W.O. | 2007 |
Applied and Environmental Microbiology 20 (73), pp. 6678-6681 |
||||||||
23. | Analyses of vaccination protocols for Leptospira interrogans serovar Autumnalis in hamsters | Srikram, A. Wongratanacheewin, S. Puapairoj, A. Wuthiekanun, V.R. Sermswan, R.W.O. |
2008 |
American Journal of Tropical Medicine and Hygiene 5 (79), pp. 779-786 |
||||||||
24. | Differential response of cytokines induced by Leptospira interrogans, serogroup Pomona, serovar Pomona, in mouse and human cell lines | Jongyota, W. Wigraipat, C. Nontapa, S. Taweechaisupapong, S. Wara-Aswapati, N.C. Wongratanacheewin, S. Sermswans, R.W. |
2008 |
Asian Pacific Journal of Allergy and Immunology 4 (26), pp. 229-235 |
||||||||
25. | Soil physicochemical properties related to the presence of Burkholderia pseudomallei | Palasatien, S. Lertsirivorakul, R. Royros, P. Wongratanacheewin, S. Sermswan, R.W.O. |
2008 |
Transactions of the Royal Society of Tropical Medicine and Hygiene SUPPL. 1 (102), pp. S5-S9 |
||||||||
26. | TBK1 does not play a role in the control of in vitro Burkholderia pseudomallei growth | Panomket, P. Sermswan, R.W.O. Chedchotisakd, P. Wongratanacheewin, S. |
2008 |
Transactions of the Royal Society of Tropical Medicine and Hygiene SUPPL. 1 (102), pp. S95-S100 |
||||||||
27. | Genome-wide transposon mutagenesis in pathogenic leptospira species | Srikram, A. Henry, R.A. Bulaeh, D.M. Sermswan, R.W.O. |
2009 |
Infection and Immunity 2 (77), pp. 810-816 |
||||||||
28. | Leptospira interrogans requires heme oxygenase for disease pathogenesis | Srikram, A. Henry, R.A. Puapairoj, A. Sermswan, R.W.O. |
2009 |
Microbes and Infection 2 (11), pp. 311-314 |
||||||||
29. | Major surface protein LipL32 is not required for either acute or chronic infection with leptospira interrogans | Srikram, A. Wünder, E.A. Henry, R.A. Zhang, K. Sermswan, R.W.O. |
2009 |
Infection and Immunity 3 (77), pp. 952-958 |
||||||||
30. | Use of a low-dose steroid as an adjunct in the treatment, in mice, of severe sepsis caused by Burkholderia pseudomallei | Panomket, P. Chetchotisakd, P. Sermswan, R.W.O. Pannengpetch, P. Wongratanacheewin, S. |
2009 |
Annals of Tropical Medicine and Parasitology 7 (103), pp. 635-646 |
||||||||
31. | Growing Burkholderia pseudomallei in biofilm stimulating conditions significantly induces antimicrobial resistance | Sawasdidoln, C. Taweechaisupapong, S. Sermswan, R.W.O. Tattawasart, U. Wongratanacheewin, S. |
2010 |
PLoS ONE 2 (5), pp. |
||||||||
32. | Mutations affecting Leptospira interrogans lipopolysaccharide attenuate virulence | Srikram, A. Henry, R.A. Sermswan, R.W.O. |
2010 |
Molecular Microbiology 3 (78), pp. 701-709 |
||||||||
33. | Short report: Bacterial loads and antibody responses in BALB/c mice infected with low and high doses of Burkholderia pseudomallei | Srisurat, N. Sermswan, R.W.O. Tatawasart, U. Wongratanacheewin, S. |
2010 |
American Journal of Tropical Medicine and Hygiene 6 (82), pp. 1102-1105 |
||||||||
34. | Use of luminescent Leptospira interrogans for enumeration in biological assays | Srikram, A. Sermswan, R.W.O. |
2010 |
Journal of Clinical Microbiology 6 (48), pp. 2037-2042 |
||||||||
35. | Cross-protective immunity against leptospirosis elicited by a live, attenuated lipopolysaccharide mutant | Srikram, A. Zhang, K. Bartpho, T. Sermswan, R.W.O. |
2011 |
Journal of Infectious Diseases 6 (203), pp. 870-879 |
||||||||
36. | Genetic diversity of mushroom mite (Luciaphorus sp.) infesting cultivated mushrooms in the Northeast of Thailand | Bussaman, P. Sermswan, R.W.O. |
2011 |
African Journal of Agricultural Research 24 (6), pp. 5438-5445 |
||||||||
37. | Novel lytic bacteriophages from soil that lyse Burkholderia pseudomallei | Yordpratum, U. Tattawasart, U. Wongratanacheewin, S. Sermswan, R.W.O. |
2011 |
FEMS Microbiology Letters 1 (314), pp. 81-88 |
||||||||
38. | Recombinant LipL32 and LigA from Leptospira are unable to stimulate protective immunity against leptospirosis in the hamster model | Deveson Lucas, D.S. Srikram, A. Sermswan, R.W.O. |
2011 |
Vaccine 18 (29), pp. 3413-3418 |
||||||||
39. | Cationic liposomes extend the immunostimulatory effect of CpG oligodeoxynucleotide against burkholderia pseudomallei infection in BALB/c mice | Puangpetch, A. Huang, Y.Y. Sermswan, R.W.O. Chaicumpa, W. Sirisinha, S. Wongratanacheewina, S. |
2012 |
Clinical and Vaccine Immunology 5 (19), pp. 675-683 |
||||||||
40. | Development of a multiplex PCR assay for rapid identification of Burkholderia pseudomallei, Burkholderia thailandensis, Burkholderia mallei and Burkholderia cepacia complex | Sermswan, R.W.O. Wongratanacheewin, S. Chua, K.H. |
2012 |
Journal of Microbiological Methods 3 (90), pp. 305-308 |
||||||||
41. | Flaa proteins in Leptospira interrogans are essential for motility and virulence but are not required for formation of the flagellum sheath | Sermswan, R.W.O. Srikram, A. |
2012 |
Infection and Immunity 6 (80), pp. 2019-2025 |
||||||||
42. | Genomic islands as a marker to differentiate between clinical and environmental Burkholderia pseudomallei | Bartpho, T. Wongratanacheewin, S. Karoonuthaisiri, N. Sermswan, R.W.O. |
2012 |
PLoS ONE 6 (7), pp. |
||||||||
43. | Leptospira interrogans catalase is required for resistance to H2O2 and for virulence | Eshghi, A. Bartpho, T. Sermswan, R.W.O. |
2012 |
Infection and Immunity 11 (80), pp. 3892-3899 |
||||||||
44. | Protective immunization of hamsters against Opisthorchis viverrini infection is associated with the reduction of TGF-β expression | Jittimanee, J. Sermswan, R.W.O. Kaewraemruaen, C. Maleewong, W. Wongratanacheewin, S. |
2012 |
Acta Tropica 2 (122), pp. 189-195 |
||||||||
45. | Environmental management procedures following fatal melioidosis in a captive chimpanzee (Pan Troglodytes) | Kasantikul, T. Somsa, W. Wongratanacheewin, S. Sermswan, R.W.O. Kongmakee, P. Thomas, W. Kamolnorranath, S. |
2013 |
Journal of Zoo and Wildlife Medicine 2 (44), pp. 475-479 |
||||||||
46. | Evaluation of 238 antigens of Leptospira borgpetersenii serovar Hardjo for protection against kidney colonisation | Srikram, A. Sermswan, R.W.O. |
2013 |
Vaccine 3 (31), pp. 495-499 |
||||||||
47. | Leptospiral LruA is required for virulence and modulates an interaction with mammalian apolipoprotein AI | Zhang, K. Srikram, A. Bartpho, T. Sermswan, R.W.O. |
2013 |
Infection and Immunity 10 (81), pp. 3872-3879 |
||||||||
48. | Leptospiral outer membrane protein lipl41 is not essential for acute leptospirosis but requires a small chaperone protein, lep, for stable expression | Bartpho, T. Sermswan, R.W.O. Eshghi, A. |
2013 |
Infection and Immunity 8 (81), pp. 2768-2776 |
||||||||
49. | Use of a high-throughput screen to identify Leptospira mutants unable to colonize the carrier host or cause disease in the acute model of infection | Bartpho, T. Srikram, A. Sermswan, R.W.O. |
2013 |
Journal of Medical Microbiology PART10 (62), pp. 1601-1608 |
||||||||
50. | Characterization of BPSS1521 (bprD), a regulator of Burkholderia pseudomallei virulence gene expression in the mouse model | Chirakul, S. Bartpho, T. Taweechaisupapong, S. Wongratanacheewin, S. Sermswan, R.W.O. |
2014 |
PLoS ONE 8 (9), pp. |
||||||||
51. | Comparison of the protective effects of killed Burkholderia pseudomallei and CpG oligodeoxynucleotide against live challenge | Puangpetch, A. Huang, Y.Y. Sermswan, R.W.O. Wongratanacheewin, S. |
2014 |
Vaccine 45 (32), pp. 5983-5988 |
||||||||
52. | High HMGB1 level is associated with poor outcome of septicemic melioidosis | Sermswan, R.W.O. Paeyao, A. Wongratanacheewin, S. |
2014 |
International Journal of Infectious Diseases (28), pp. e111-e116 |
||||||||
53. | High-temperature protein G is an essential virulence factor of Leptospira interrogans | Bartpho, T. Sermswan, R.W.O. Suzuki, T. Eshghi, A. |
2014 |
Infection and Immunity 3 (82), pp. 1123-1131 |
||||||||
54. | A PCR-based detection of burkholderia pseudomallei diversity using myoviridae prophage typing | Sermswan, R.W.O. Tattawasart, U. Yordpratum, U. Wongratanacheewin, S. |
2015 |
Southeast Asian Journal of Tropical Medicine and Public Health 1 (46), pp. 30-37 |
||||||||
55. | Direct detection of Burkholderia pseudomallei and biological factors in soil | Sermswan, R.W.O. Royros, P. Khakhum, N. Wongratanacheewin, S. |
2015 |
Transactions of the Royal Society of Tropical Medicine and Hygiene 7 (109), pp. 462-468 |
||||||||
56. | Drug susceptibility and biofilm formation of burkholderia pseudomallei in nutrient-limited condition | Anutrakunchai, C. Sermswan, R.W.O. Wongratanacheewin, S. Puknun, A. Taweechaisupapong, S. |
2015 |
Tropical Biomedicine 2 (32), pp. 300-309 |
||||||||
57. | Retrospective study on fatal melioidosis in captive zoo animals in Thailand | Kasantikul, T. Polsrila, K. Kongkham, W. Chaisongkram, C. Kongmakee, P. Narongwanichgarn, W. Sermswan, R.W.O. |
2015 |
Transboundary and Emerging Diseases (), pp. |
||||||||
58. | The contribution of soil physicochemical properties to the presence and genetic diversity of burkholderia pseudomallei | Potisap, C. Boonmee, A. Chaianunporn, T. Wongratanacheewin, S. Sermswan, R.W.O. |
2015 |
Southeast Asian Journal of Tropical Medicine and Public Health 1 (46), pp. 38-50 |
||||||||
59. | Transcription level analysis of intracellular Burkholderia pseudomallei illustrates the role of BPSL1502 during bacterial interaction with human lung epithelial cells | Techawiwattanaboon, T. Bartpho, T. Sermswan, R.W.O. Chareonsudjai, S. |
2015 |
Journal of Microbiology 2 (53), pp. 134-140 |
||||||||
60. | Burkholderia pseudomallei resistance to antibiotics in biofilm-induced conditions is related to efflux pumps | Sermswan, R.W.O. Wongratanacheewin, S. |
2016 |
Journal of Medical Microbiology 11 (65), pp. 1296-1306 |
||||||||
61. | Cloning, expression, and characterization of a peptidoglycan hydrolase from the Burkholderia pseudomallei phage ST79 | Khakhum, N. Yordpratum, U. Boonmee, A. Tattawasart, U. Sermswan, R.W.O. |
2016 |
AMB Express 1 (6), pp. |
||||||||
62. | CpG oligodeoxynucleotides with crude parasite antigens reduce worm recovery in Opisthorchis viverrini infected hamsters | Kaewraemruaen, C. Sermswan, R.W.O. Wongratanacheewin, S. |
2016 |
Acta Tropica (164), pp. 395-401 |
||||||||
63. | Identification of the Burkholderia pseudomallei bacteriophage ST79 lysis gene cassette | Khakhum, N. Yordpratum, U. Boonmee, A. Tattawasart, U. Sermswan, R.W.O. |
2016 |
Journal of Applied Microbiology (), pp. |
||||||||
64. | Identification of the Burkholderia pseudomallei bacteriophage ST79 lysis gene cassette | Khakhum, N. Yordpratum, U. Boonmee, A. Tattawasart, U. Sermswan, R.W.O. |
2016 |
Journal of Applied Microbiology 2 (121), pp. 364-372 |
||||||||
65. | Induction of regulatory T cells by Opisthorchis viverrini | Kaewraemruaen, C. Sermswan, R.W.O. Wongratanacheewin, S. |
2016 |
Parasite Immunology 11 (38), pp. 688-697 |
||||||||
66. | Retrospective Study on Fatal Melioidosis in Captive Zoo Animals in Thailand | Kasantikul, T. Polsrila, K. Kongkham, W. Chaisongkram, C. Kongmakee, P. Narongwanichgarn, W. Sermswan, R.W.O. |
2016 |
Transboundary and Emerging Diseases 5 (63), pp. e389-e394 |
||||||||
67. | Hydrological connectivity and Burkholderia pseudomallei prevalence in wetland environments: investigating rice-farming community’s risk of exposure to melioidosis in North-East Thailand | Sermswan, R.W. | 2017 |
Environmental Monitoring and Assessment 6 (189), pp. |
||||||||
68. | Physicochemical and Biological Factors of Soil and the Potential Use of Antagonistic Microbes for Biocontrol of Burkholderia pseudomallei | Sermswan, R.W. Wongratanacheewin, S. |
2017 |
Current Tropical Medicine Reports 4 (4), pp. 192-198 |
||||||||
69. | Secondary metabolites from Bacillus amyloliquefaciens isolated from soil can kill Burkholderia pseudomallei | Potisap, C. Sermswan, R.W.O. |
2017 |
AMB Express 1 (7), pp. |
||||||||
70. | Burkholderia pseudomallei-absent soil bacterial community results in secondary metabolites that kill this pathogen | Potisap, C. Boonmee, A. Wongratanacheewin, S. Sermswan, R.W. |
2018 |
AMB Express 1 (8), pp. |
||||||||
71. | Hamster IFN-γ+CD4+ and IL-4+CD4+ T cell responses against leptospires are significantly higher than those of mice | Sermswan, R.W. Wongratanacheewin, S. |
2018 |
Asian Pacific journal of allergy and immunology 4 (36), pp. 265-272 |
||||||||
72. | Heterologous protection elicited by a live, attenuated, Leptospira vaccine | Kaewraemruaen, C. Sermswan, R.W. |
2018 |
Veterinary Microbiology (223), pp. 47-50 |
||||||||
73. | A new cytotoxic plumbagin derivative from roots of Diospyros undulata | Suchaichit, N. Kanokmedhakul, K. Sermswan, R.W. Moosophon, P. Kanokmedhakul, S. |
2019 |
Natural Product Research (), pp. |
||||||||
74. | Iron chelator effect on biofilm-producing burkholderia pseudomallei antibiotic susceptibility in a microfluidic culture system | Wongratanacheewin, S. Sermswan, R.W. |
2019 |
Southeast Asian Journal of Tropical Medicine and Public Health 3 (50), pp. 514-521 |
||||||||
75. | Temporal proteomic profiling reveals changes that support Burkholderia biofilms | Sermswan, R.W. | 2019 |
Pathogens and Disease 2 (77), pp. |
Title | Authors | Year | Journal title | ||
---|---|---|---|---|---|
1. | Isolation and characterization of Opisthorchis viverrini specific DNA probe. | Sermswan, R Mongkolsuk, S Panyim, S Sirisinha, S |
1991 |
Molecular and cellular probes 6 (5), pp. 399-407 |
|
2. | Detection of Opisthorchis viverrini by monoclonal antibody-based ELISA and DNA hybridization. | Sirisinha, S Chawengkirttikul, R Sermswan, R Amornpant, S Mongkolsuk, S Panyim, S |
1991 |
The American journal of tropical medicine and hygiene 2 (44), pp. 140-5 |
|
3. | Characterization of the Opisthorchis viverrini genome. | Sermswan, R Mongkolsuk, S Sirisinha, S |
1991 |
Journal of helminthology 1 (65), pp. 51-4 |
|
4. | Immunodiagnosis of opisthorchiasis. | Sirisinha, S Chawengkirttikul, R Sermswan, R |
1991 |
The Southeast Asian journal of tropical medicine and public health (22), pp. 179-83 |
|
5. | Characterization of Pseudomonas pseudomallei antigens by SDS-polyacrylamide gel electrophoresis and western blot. | Wongratanacheewin, S Tattawasart, U Lulitanond, V Wongwajana, S Sermswan, RW Sookpranee, M Nuntirooj, K |
1993 |
The Southeast Asian journal of tropical medicine and public health 1 (24), pp. 107-13 |
|
6. | Construction of a specific DNA probe for diagnosis of melioidosis and use as an epidemiological marker of Pseudomonas pseudomallei. | Sermswan, RW Wongratanacheewin, S Tattawasart, U Wongwajana, S |
1994 |
Molecular and cellular probes 1 (8), pp. 1-9 |
|
7. | Use of culture-filtrated antigen in an ELISA and a dot immunoassay for the diagnosis of melioidosis. | Wongratanacheewin, S Amornpunt, S Sermswan, RW Tattawasart, U Wongwajana, S |
1995 |
The Southeast Asian journal of tropical medicine and public health 2 (26), pp. 329-34 |
|
8. | Detection of Burkholderia pseudomallei in blood samples using polymerase chain reaction. | Rattanathongkom, A Sermswan, RW Wongratanacheewin, S |
1997 |
Molecular and cellular probes 1 (11), pp. 25-31 |
|
9. | Comparison of three PCR primer sets for diagnosis of septicemic melioidosis. | Kunakorn, M Raksakait, K Sethaudom, C Sermswan, RW Dharakul, T |
2000 |
Acta tropica 2 (74), pp. 247-51 |
|
10. | Use of multiplex PCR patterns as genetic markers for Burkholderia pseudomallei. | Wongratanacheewin, S Komutrin, K Sermswan, RW |
2000 |
Acta tropica 2 (74), pp. 193-9 |
|
11. | Ribotyping of Burkholderia pseudomallei from clinical and soil isolates in Thailand. | Sermswan, RW Wongratanacheewin, S Trakulsomboon, S Thamlikitkul, V |
2001 |
Acta tropica 3 (80), pp. 237-44 |
|
12. | Development of a PCR-based method for the detection of Opisthorchis viverrini in experimentally infected hamsters. | Wongratanacheewin, S Pumidonming, W Sermswan, RW Maleewong, W |
2001 |
Parasitology 0 (122), pp. 175-80 |
|
13. | Retrospective study on the diagnostic value of IgG ELISA, dot immunoassay and indirect hemagglutination in septicemic melioidosis. | Wongratanacheewi, S Sermswan, RW Anuntagool, N Sirisinha, S |
2001 |
Asian Pacific journal of allergy and immunology / launched by the Allergy and Immunology Society of Thailand 2 (19), pp. 129-33 |
|
14. | Immunology and molecular biology of Opisthorchis viverrini infection. | Wongratanacheewin, S Sermswan, RW Sirisinha, S |
2003 |
Acta tropica 3 (88), pp. 195-207 |
|
15. | Immunostimulatory CpG oligodeoxynucleotide confers protection in a murine model of infection with Burkholderia pseudomallei. | Wongratanacheewin, S Kespichayawattana, W Intachote, P Pichyangkul, S Sermswan, RW Krieg, AM Sirisinha, S |
2004 |
Infection and immunity 8 (72), pp. 4494-502 |
|
16. | Lipopolysaccharide heterogeneity among Burkholderia pseudomallei from different geographic and clinical origins. | Anuntagool, N Wuthiekanun, V White, NJ Currie, BJ Sermswan, RW Wongratanacheewin, S Taweechaisupapong, S Chaiyaroj, SC Sirisinha, S |
2006 |
The American journal of tropical medicine and hygiene 3 (74), pp. 348-52 |
|
17. | Isolation of fetal nucleated red blood cell from maternal blood using immunomagnetic beads for prenatal diagnosis. | Pongsritasana, T Wongratanacheewin, S Prasertcharoensuk, V Sermswan, RW |
2006 |
Asian Pacific journal of allergy and immunology / launched by the Allergy and Immunology Society of Thailand 1 (24), pp. 65-71 |
|
18. | A horizontal gene transfer event defines two distinct groups within Burkholderia pseudomallei that have dissimilar geographic distributions. | Tuanyok, A Auerbach, RK Brettin, TS Bruce, DC Munk, AC Detter, JC Pearson, T Hornstra, H Sermswan, RW Wuthiekanun, V Peacock, SJ Currie, BJ Keim, P Wagner, DM |
2007 |
Journal of bacteriology 24 (189), pp. 9044-9 |
|
19. | Fine-scale genetic diversity among Burkholderia pseudomallei soil isolates in northeast Thailand. | U'ren, JM Hornstra, H Pearson, T Schupp, JM Leadem, B Georgia, S Sermswan, RW Keim, P |
2007 |
Applied and environmental microbiology 20 (73), pp. 6678-81 |
|
20. | Cytokine expression in hamsters experimentally infected with Opisthorchis viverrini. | Jittimanee, J Sermswan, RW Puapairoj, A Maleewong, W Wongratanacheewin, S |
2007 |
Parasite immunology 3 (29), pp. 159-67 |
|
21. | Differential response of cytokines induced by Leptospira interrogans, serogroup Pomona, serovar Pomona, in mouse and human cell lines. | Jongyota, W Wigraipat, C Nontapa, S Taweechaisupapong, S Wara-Aswapati, NC Wongratanacheewin, S Sermswan, RW |
2008 |
Asian Pacific journal of allergy and immunology / launched by the Allergy and Immunology Society of Thailand 4 (26), pp. 229-36 |
|
22. | Analyses of vaccination protocols for Leptospira interrogans serovar autumnalis in hamsters. | Srikram, A Wongratanacheewin, S Puapairoj, A Wuthiekanun, V Sermswan, RW |
2008 |
The American journal of tropical medicine and hygiene 5 (79), pp. 779-86 |
|
23. | Soil physicochemical properties related to the presence of Burkholderia pseudomallei. | Palasatien, S Lertsirivorakul, R Royros, P Wongratanacheewin, S Sermswan, RW |
2008 |
Transactions of the Royal Society of Tropical Medicine and Hygiene (102), pp. S5-9 |
|
24. | TBK1 does not play a role in the control of in vitro Burkholderia pseudomallei growth. | Panomket, P Splitter, G Harms, J Sermswan, RW Chedchotisakd, P Wongratanacheewin, S |
2008 |
Transactions of the Royal Society of Tropical Medicine and Hygiene (102), pp. S95-100 |
|
25. | Leptospira interrogans requires heme oxygenase for disease pathogenesis. | Murray, GL Srikram, A Henry, R Puapairoj, A Sermswan, RW Adler, B |
2009 |
Microbes and infection / Institut Pasteur 2 (11), pp. 311-4 |
|
26. | Genome-wide transposon mutagenesis in pathogenic Leptospira species. | Murray, GL Morel, V Cerqueira, GM Croda, J Srikram, A Henry, R Ko, AI Dellagostin, OA Bulach, DM Sermswan, RW Adler, B Picardeau, M |
2009 |
Infection and immunity 2 (77), pp. 810-6 |
|
27. | Use of a low-dose steroid as an adjunct in the treatment, in mice, of severe sepsis caused by Burkholderia pseudomallei. | Panomket, P Chetchotisakd, P Sermswan, RW Pannengpetch, P Wongratanacheewin, S |
2009 |
Annals of tropical medicine and parasitology 7 (103), pp. 635-46 |
|
28. | Major surface protein LipL32 is not required for either acute or chronic infection with Leptospira interrogans. | Murray, GL Srikram, A Hoke, DE Wunder, EA Henry, R Lo, M Zhang, K Sermswan, RW Ko, AI Adler, B |
2009 |
Infection and immunity 3 (77), pp. 952-8 |
|
29. | Growing Burkholderia pseudomallei in biofilm stimulating conditions significantly induces antimicrobial resistance. | Sawasdidoln, C Taweechaisupapong, S Sermswan, RW Tattawasart, U Tungpradabkul, S Wongratanacheewin, S |
2010 |
PloS one 2 (5), pp. e9196 |
|
30. | Use of luminescent Leptospira interrogans for enumeration in biological assays. | Murray, GL King, AM Srikram, A Sermswan, RW Adler, B |
2010 |
Journal of clinical microbiology 6 (48), pp. 2037-42 |
|
31. | Mutations affecting Leptospira interrogans lipopolysaccharide attenuate virulence. | Murray, GL Srikram, A Henry, R Hartskeerl, RA Sermswan, RW Adler, B |
2010 |
Molecular microbiology 3 (78), pp. 701-9 |
|
32. | Bacterial loads and antibody responses in BALB/c mice infected with low and high doses of Burkholderia pseudomallei. | Srisurat, N Sermswan, RW Tatawasart, U Wongratanacheewin, S |
2010 |
The American journal of tropical medicine and hygiene 6 (82), pp. 1102-5 |
|
33. | Novel lytic bacteriophages from soil that lyse Burkholderia pseudomallei. | Yordpratum, U Tattawasart, U Wongratanacheewin, S Sermswan, RW |
2011 |
FEMS microbiology letters 1 (314), pp. 81-8 |
|
34. | Cross-protective immunity against leptospirosis elicited by a live, attenuated lipopolysaccharide mutant. | Srikram, A Zhang, K Bartpho, T Lo, M Hoke, DE Sermswan, RW Adler, B Murray, GL |
2011 |
The Journal of infectious diseases 6 (203), pp. 870-9 |
|
35. | Recombinant LipL32 and LigA from Leptospira are unable to stimulate protective immunity against leptospirosis in the hamster model. | Lucas, DS Cullen, PA Lo, M Srikram, A Sermswan, RW Adler, B |
2011 |
Vaccine 18 (29), pp. 3413-8 |
|
36. | FlaA proteins in Leptospira interrogans are essential for motility and virulence but are not required for formation of the flagellum sheath. | Lambert, A Picardeau, M Haake, DA Sermswan, RW Srikram, A Adler, B Murray, GA |
2012 |
Infection and immunity 6 (80), pp. 2019-25 |
|
37. | Protective immunization of hamsters against Opisthorchis viverrini infection is associated with the reduction of TGF-β expression. | Jittimanee, J Sermswan, RW Kaewraemruaen, C Barta, JR Macinnes, JI Maleewong, W Wongratanacheewin, S |
2012 |
Acta tropica 2 (122), pp. 189-95 |
|
38. | Cationic liposomes extend the immunostimulatory effect of CpG oligodeoxynucleotide against Burkholderia pseudomallei infection in BALB/c mice. | Puangpetch, A Anderson, R Huang, YY Sermswan, RW Chaicumpa, W Sirisinha, S Wongratanacheewin, S |
2012 |
Clinical and vaccine immunology : CVI 5 (19), pp. 675-83 |
|
39. | Genomic islands as a marker to differentiate between clinical and environmental Burkholderia pseudomallei. | Bartpho, T Wongsurawat, T Wongratanacheewin, S Talaat, AM Karoonuthaisiri, N Sermswan, RW |
2012 |
PloS one 6 (7), pp. e37762 |
|
40. | Development of a multiplex PCR assay for rapid identification of Burkholderia pseudomallei, Burkholderia thailandensis, Burkholderia mallei and Burkholderia cepacia complex. | Koh, SF Tay, ST Sermswan, R Wongratanacheewin, S Chua, KH Puthucheary, SD |
2012 |
Journal of microbiological methods 3 (90), pp. 305-8 |
|
41. | Leptospira interrogans catalase is required for resistance to H2O2 and for virulence. | Eshghi, A Lourdault, K Murray, GL Bartpho, T Sermswan, RW Picardeau, M Adler, B Snarr, B Zuerner, RL Cameron, CE |
2012 |
Infection and immunity 11 (80), pp. 3892-9 |
|
42. | Leptospiral LruA is required for virulence and modulates an interaction with mammalian apolipoprotein AI. | Zhang, K Murray, GL Seemann, T Srikram, A Bartpho, T Sermswan, RW Adler, B Hoke, DE |
2013 |
Infection and immunity 10 (81), pp. 3872-9 |
|
43. | Use of a high-throughput screen to identify Leptospira mutants unable to colonize the carrier host or cause disease in the acute model of infection. | Marcsisin, RA Bartpho, T Bulach, DM Srikram, A Sermswan, RW Adler, B Murray, GL |
2013 |
Journal of medical microbiology 0 (62), pp. 1601-8 |
|
44. | Leptospiral outer membrane protein LipL41 is not essential for acute leptospirosis but requires a small chaperone protein, lep, for stable expression. | King, AM Bartpho, T Sermswan, RW Bulach, DM Eshghi, A Picardeau, M Adler, B Murray, GL |
2013 |
Infection and immunity 8 (81), pp. 2768-76 |
|
45. | Evaluation of 238 antigens of Leptospira borgpetersenii serovar Hardjo for protection against kidney colonisation. | Murray, GL Lo, M Bulach, DM Srikram, A Seemann, T Quinsey, NS Sermswan, RW Allen, A Adler, B |
2013 |
Vaccine 3 (31), pp. 495-9 |
|
46. | Environmental management procedures following fatal melioidosis in a captive chimpanzee (Pan troglodytes). | Sommanustweechai, A Kasantikul, T Somsa, W Wongratanacheewin, S Sermswan, RW Kongmakee, P Thomas, W Kamolnorranath, S Siriaroonrat, B Bush, M Banlunara, W |
2013 |
Journal of zoo and wildlife medicine : official publication of the American Association of Zoo Veterinarians 2 (44), pp. 475-9 |
|
47. | High-temperature protein G is an essential virulence factor of Leptospira interrogans. | King, AM Pretre, G Bartpho, T Sermswan, RW Toma, C Suzuki, T Eshghi, A Picardeau, M Adler, B Murray, GL |
2014 |
Infection and immunity 3 (82), pp. 1123-31 |
|
48. | LYTIC CAPABILITY OF BACTERIOPHAGES (FAMILY MYOVIRIDAE) ON BURKHOLDERIA PSEUDOMALLEI. | Kulsuwan, R Wongratanacheewin, S Wongratanacheewin, RS Yordpratum, U Tattawasart, U |
2014 |
The Southeast Asian journal of tropical medicine and public health 6 (45), pp. 1344-53 |
|
49. | High HMGB1 level is associated with poor outcome of septicemic melioidosis. | Charoensup, J Sermswan, RW Paeyao, A Promakhejohn, S Punasee, S Chularari, C Krabkraikaew, S Lertanekawattana, S Wongratanacheewin, S |
2014 |
International journal of infectious diseases : IJID : official publication of the International Society for Infectious Diseases (28), pp. 111-6 |
|
50. | Comparison of the protective effects of killed Burkholderia pseudomallei and CpG oligodeoxynucleotide against live challenge. | Puangpetch, A Anderson, R Huang, YY Saengsot, R Sermswan, RW Wongratanacheewin, S |
2014 |
Vaccine 45 (32), pp. 5983-8 |
|
51. | Characterization of BPSS1521 (bprD), a regulator of Burkholderia pseudomallei virulence gene expression in the mouse model. | Chirakul, S Bartpho, T Wongsurawat, T Taweechaisupapong, S Karoonutaisiri, N Talaat, AM Wongratanacheewin, S Ernst, RK Sermswan, RW |
2014 |
PloS one 8 (9), pp. e104313 |
|
52. | Drug susceptibility and biofilm formation of Burkholderia pseudomallei in nutrient-limited condition. | Anutrakunchai, C Sermswan, RW Wongratanacheewin, S Puknun, A Taweechaisupapong, S |
2015 |
Tropical biomedicine 2 (32), pp. 300-9 |
|
53. | Transcription level analysis of intracellular Burkholderia pseudomallei illustrates the role of BPSL1502 during bacterial interaction with human lung epithelial cells. | Techawiwattanaboon, T Bartpho, T Sermswan, RW Chareonsudjai, S |
2015 |
Journal of microbiology (Seoul, Korea) 2 (53), pp. 134-40 |
|
54. | Direct detection of Burkholderia pseudomallei and biological factors in soil. | Sermswan, RW Royros, P Khakhum, N Wongratanacheewin, S Tuanyok, A |
2015 |
Transactions of the Royal Society of Tropical Medicine and Hygiene 7 (109), pp. 462-8 |
|
55. | THE CONTRIBUTION OF SOIL PHYSICOCHEMICAL PROPERTIES TO THE PRESENCE AND GENETIC DIVERSITY OF BURKHOLDERIA PSEUDOMALLEI. | Ngamsang, R Potisap, C Boonmee, A Lawongsa, P Chaianunporn, T Wongratanacheewin, S Rodrigues, JL Sermswan, RW |
2015 |
The Southeast Asian journal of tropical medicine and public health 1 (46), pp. 38-50 |
|
56. | A PCR-BASED DETECTION OF BURKHOLDERIA PSEUDOMALLEI DIVERSITY USING MYOVIRIDAE PROPHAGE TYPING. | Nakornpakdee, Y Sermswan, RW Tattawasart, U Yordpratum, U Wongratanacheewin, S |
2015 |
The Southeast Asian journal of tropical medicine and public health 1 (46), pp. 30-7 |
|
57. | Induction of regulatory T cells by Opisthorchis viverrini. | Kaewraemruaen, C Sermswan, RW Wongratanacheewin, S |
2016 |
Parasite immunology 11 (38), pp. 688-697 |
|
58. | Burkholderia pseudomallei resistance to antibiotics in biofilm-induced conditions is related to efflux pumps. | Sirijant, N Sermswan, RW Wongratanacheewin, S |
2016 |
Journal of medical microbiology 11 (65), pp. 1296-1306 |
|
59. | Retrospective Study on Fatal Melioidosis in Captive Zoo Animals in Thailand. | Kasantikul, T Sommanustweechai, A Polsrila, K Kongkham, W Chaisongkram, C Sanannu, S Kongmakee, P Narongwanichgarn, W Bush, M Sermswan, RW Banlunara, W |
2016 |
Transboundary and emerging diseases 5 (63), pp. e389-94 |
|
60. | CpG oligodeoxynucleotides with crude parasite antigens reduce worm recovery in Opisthorchis viverrini infected hamsters. | Kaewraemruaen, C Sermswan, RW Wongratanacheewin, S |
2016 |
Acta tropica (164), pp. 395-401 |
|
61. | Cloning, expression, and characterization of a peptidoglycan hydrolase from the Burkholderia pseudomallei phage ST79. | Khakhum, N Yordpratum, U Boonmee, A Tattawasart, U Rodrigues, JL Sermswan, RW |
2016 |
AMB Express 1 (6), pp. 77 |
|
62. | Induction of regulatory T cells by Opisthorchis viverrini. | Kaewraemruaen, C Sermswan, RW Wongratanacheewin, S |
2016 |
Parasite immunology 11 (38), pp. 688-697 |
|
63. | Identification of the Burkholderia pseudomallei bacteriophage ST79 lysis gene cassette. | Khakhum, N Yordpratum, U Boonmee, A Tattawasart, U Rodrigues, JL Sermswan, RW |
2016 |
Journal of applied microbiology 2 (121), pp. 364-72 |
|
64. | Secondary metabolites from Bacillus amyloliquefaciens isolated from soil can kill Burkholderia pseudomallei. | Boottanun, P Potisap, C Hurdle, JG Sermswan, RW |
2017 |
AMB Express 1 (7), pp. 16 |
|
65. | Hydrological connectivity and Burkholderia pseudomallei prevalence in wetland environments: investigating rice-farming community's risk of exposure to melioidosis in North-East Thailand. | Chuah, CJ Tan, EKH Sermswan, RW Ziegler, AD |
2017 |
Environmental monitoring and assessment 6 (189), pp. 287 |
|
66. | Heterologous protection elicited by a live, attenuated, Leptospira vaccine. | Murray, GL Simawaranon, T Kaewraemruaen, C Adler, B Sermswan, RW |
2018 |
Veterinary microbiology (223), pp. 47-50 |
|
67. | Burkholderia pseudomallei-absent soil bacterial community results in secondary metabolites that kill this pathogen. | Potisap, C Khan, MAW Boonmee, A Rodrigues, JLM Wongratanacheewin, S Sermswan, RW |
2018 |
AMB Express 1 (8), pp. 136 |
|
68. | Melioidosis in Thailand: Present and Future. | Hinjoy, S Hantrakun, V Kongyu, S Kaewrakmuk, J Wangrangsimakul, T Jitsuronk, S Saengchun, W Bhengsri, S Akarachotpong, T Thamthitiwat, S Sangwichian, O Anunnatsiri, S Sermswan, RW Lertmemongkolchai, G Tharinjaroen, CS Preechasuth, K Udpaun, R Chuensombut, P Waranyasirikul, N Anudit, C Narenpitak, S Jutrakul, Y Teparrukkul, P Teerawattanasook, N Thanvisej, K Suphan, A Sukbut, P Ploddi, K Sirichotirat, P Chiewchanyon, B Rukseree, K Hongsuwan, M Wongsuwan, G Sunthornsut, P Wuthiekanun, V Sachaphimukh, S Wannapinij, P Chierakul, W Chewapreecha, C Thaipadungpanit, J Chantratita, N Korbsrisate, S Taunyok, A Dunachie, S Palittapongarnpim, P Sirisinha, S Kitphati, R Iamsirithaworn, S Chaowagul, W Chetchotisak, P Whistler, T Wongratanacheewin, S Limmathurotsakul, D |
2018 |
Tropical medicine and infectious disease 2 (3), pp. 38 |
|
69. | A new cytotoxic plumbagin derivative from roots of . | Suchaichit, N Suchaichit, NP Kanokmedhakul, K Boottanun, P Sermswan, RW Moosophon, P Kanokmedhakul, S |
2019 |
Natural product research (), pp. 1-8 |
|
70. | Comparison of the polymerase chain reaction and serologic tests for diagnosis of septicemic melioidosis. | Sermswan, RW Wongratanacheewin, S Anuntagool, N Sirisinha, S |
The American journal of tropical medicine and hygiene 3 (63), pp. 146-9 |
Title | Authors | Year | Journal title | Cited count | ||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
< 2015 | 2016 | 2017 | 2018 | 2019 | 2020 | รวม | ||||||
1. | Development of a PCR-based method for the detection of Opisthorchis viverrini in experimentally infected hamsters | S Wongratanacheewin W Pumidonming RW Sermswan W Maleewong |
2001 |
PARASITOLOGY (122.0), pp. 175.0-180.0 |
135 | 0 | 0 | 0 | 0 | 0 | 135 | |
2. | Retrospective study on the diagnostic value of IgG ELISA, dot immunoassay and indirect hemagglutination in septicemic melioidosis | S Wongratanacheewin RW Sermswan N Anuntagool S Sirisinha |
2001 |
ASIAN PACIFIC JOURNAL OF ALLERGY AND IMMUNOLOGY 2.0 (19.0), pp. 129.0-133.0 |
15 | 0 | 0 | 0 | 0 | 0 | 15 | |
3. | Ribotyping of Burkholderia pseudomallei from clinical and soil isolates in Thailand | RW Sermswan S Wongratanacheewin S Trakulsomboon V Thamlikitkul |
2001 |
ACTA TROPICA 3.0 (80.0), pp. 237.0-244.0 |
22 | 0 | 0 | 0 | 0 | 0 | 22 | |
4. | Detection of Opisthorchis viverrini in human stool specimens by PCR | S Wongratanacheewin W Pumidonming RW Sermswan V Pipitgool W Maleewong |
2002 |
JOURNAL OF CLINICAL MICROBIOLOGY 10.0 (40.0), pp. 3879.0-3880.0 |
127 | 0 | 0 | 0 | 0 | 0 | 127 | |
5. | Immunology and molecular biology of Opisthorchis viverrini infection | S Wongratanacheewin RW Sermswan S Sirisinha |
2003 |
ACTA TROPICA 3.0 (88.0), pp. 195.0-207.0 |
59 | 0 | 0 | 0 | 0 | 0 | 59 | |
6. | Immunostimulatory CpG oligodeoxynucleotide confers protection in a murine model of infection with Burkholderia pseudomallei | S Wongratanacheewin W Kespichayawattana P Intachote S Pichyangkul RW Sermswan AM Krieg S Sirisinha |
2004 |
INFECTION AND IMMUNITY 8.0 (72.0), pp. 4494.0-4502.0 |
86 | 0 | 0 | 0 | 0 | 0 | 86 | |
7. | Isolation of fetal nucleated red blood cell from maternal blood using immunomagnetic beads for prenatal diagnosis | T. Pongsritasana S. Wongratanacheewin V. Prasertcharoensuk R. W. Sermswan |
2006 |
ASIAN PACIFIC JOURNAL OF ALLERGY AND IMMUNOLOGY 1.0 (24.0), pp. 65.0-71.0 |
4 | 0 | 0 | 0 | 0 | 0 | 4 | |
8. | Short report: Lipopolysaccharide heterogeneity among Burkholderia pseudomallei from different geographic and clinical origins | N Anuntagool V Wuthiekanun NJ White BJ Currie RW Sermswan S Wongratanacheewin S Taweechaisupapong SC Chaiyaroj S Strisinha |
2006 |
AMERICAN JOURNAL OF TROPICAL MEDICINE AND HYGIENE 3.0 (74.0), pp. 348.0-352.0 |
69 | 0 | 0 | 0 | 0 | 0 | 69 | |
9. | Toxicity of the entomopathogenic bacteria Photorhabdus and Xenorhabdus to the mushroom mite (Luciaphorus sp.; Acari : Pygmephoridae) | P Bussaman RW Sermswan PS Grewal |
2006 |
BIOCONTROL SCIENCE AND TECHNOLOGY 3.0 (16.0), pp. 245.0-256.0 |
21 | 0 | 0 | 0 | 0 | 0 | 21 | |
10. | A horizontal gene transfer event defines two distinct groups within Burkholderia pseudomallei that have dissimilar geographic distributions | Apichai Tuanyok Raymond K. Auerbach Thomas S. Brettin David C. Bruce A. Christine Munk J. Chris Detter Talima Pearson Heidie Hornstra Rasana W. Sermswan Vanaporn Wuthiekanun Sharon J. Peacock Bart J. Currie Paul Keim David M. Wagner |
2007 |
JOURNAL OF BACTERIOLOGY 24.0 (189.0), pp. 9044.0-9049.0 |
86 | 0 | 0 | 0 | 0 | 0 | 86 | |
11. | Cytokine expression in hamsters experimentally infected with Opisthorchis viverrini | J. Jittimanee R. W. Sermswan A. Puapairoj W. Maleewong S. Wongratanacheewin |
2007 |
PARASITE IMMUNOLOGY 3.0 (29.0), pp. 159.0-167.0 |
44 | 0 | 0 | 0 | 0 | 0 | 44 | |
12. | Fine-scale genetic diversity among Burkholderia pseudomallei soil isolates in northeast Thailand | Jana M. U'Ren Heidie Hornstra Talima Pearson James M. Schupp Benjamin Leadem Shalamar Georgia Rasana W. Sermswan Paul Keim |
2007 |
APPLIED AND ENVIRONMENTAL MICROBIOLOGY 20.0 (73.0), pp. 6678.0-6681.0 |
30 | 0 | 0 | 0 | 0 | 0 | 30 | |
13. | Analyses of Vaccination Protocols for Leptospira interrogans Serovar Autumnalis in Hamsters | Amporn Srikram Surasakdi Wongratanacheewin Anucha Puapairoj Vanaporn Wuthiekanun Rasana W. Sermswan |
2008 |
AMERICAN JOURNAL OF TROPICAL MEDICINE AND HYGIENE 5.0 (79.0), pp. 779.0-786.0 |
12 | 0 | 0 | 0 | 0 | 0 | 12 | |
14. | Differential Response of Cytokines Induced by Leptospira interrogans, Serogroup Pomona, Serovar Pomona, in Mouse and Human Cell Lines | Woranart Jongyota Chantiwa Wigraipat Suwanna Nontapa Suwimol Taweechaisupapong Nawarat C. Wara-aswapati Surasakdi Wongratanacheewin Rasana W. Sermswan |
2008 |
ASIAN PACIFIC JOURNAL OF ALLERGY AND IMMUNOLOGY 4.0 (26.0), pp. 229.0-236.0 |
16 | 0 | 0 | 0 | 0 | 0 | 16 | |
15. | Genome-Wide Transposon Mutagenesis in Pathogenic Leptospira Species | Gerald L. Murray Viviane Morel Gustavo M. Cerqueira Julio Croda Amporn Srikram Rebekah Henry Albert I. Ko Odir A. Dellagostin Dieter M. Bulach Rasana W. Sermswan Ben Adler Mathieu Picardeau |
2009 |
INFECTION AND IMMUNITY 2.0 (77.0), pp. 810.0-816.0 |
126 | 0 | 0 | 0 | 0 | 0 | 126 | |
16. | Leptospira interrogans requires heme oxygenase for disease pathogenesis | Gerald L. Murray Arnporn Srikram Rebekah Henry Anucha Puapairoj Rasana W. Sermswan Ben Adler |
2009 |
MICROBES AND INFECTION 2.0 (11.0), pp. 311.0-314.0 |
82 | 0 | 0 | 0 | 0 | 0 | 82 | |
17. | Major Surface Protein LipL32 Is Not Required for Either Acute or Chronic Infection with Leptospira interrogans | Gerald L. Murray Amporn Srikram David E. Hoke Elsio A. Wunder Rebekah Henry Miranda Lo Kunkun Zhang Rasana W. Sermswan Albert I. Ko Ben Adler |
2009 |
INFECTION AND IMMUNITY 3.0 (77.0), pp. 952.0-958.0 |
132 | 0 | 0 | 0 | 0 | 0 | 132 | |
18. | Use of a low-dose steroid as an adjunct in the treatment, in mice, of severe sepsis caused by Burkholderia pseudomallei | P. Panomket P. Chetchotisakd R. W. Sermswan P. Pannengpetch S. Wongratanacheewin |
2009 |
ANNALS OF TROPICAL MEDICINE AND PARASITOLOGY 7.0 (103.0), pp. 635.0-646.0 |
10 | 0 | 0 | 0 | 0 | 0 | 10 | |
19. | Growing Burkholderia pseudomallei in Biofilm Stimulating Conditions Significantly Induces Antimicrobial Resistance | Chakrit Sawasdidoln Suwimol Taweechaisupapong Rasana W. Sermswan Unchalee Tattawasart Sumalee Tungpradabkul Surasakdi Wongratanacheewin |
2010 |
PLOS ONE 2.0 (5.0), pp. |
75 | 0 | 0 | 0 | 0 | 0 | 75 | |
20. | Mutations affecting Leptospira interrogans lipopolysaccharide attenuate virulence | Gerald L. Murray Amporn Srikram Rebekah Henry Rudy A. Hartskeerl Rasana W. Sermswan Ben Adler |
2010 |
MOLECULAR MICROBIOLOGY 3.0 (78.0), pp. 701.0-709.0 |
62 | 0 | 0 | 0 | 0 | 0 | 62 | |
21. | Short Report: Bacterial Loads and Antibody Responses in BALB/c Mice Infected with Low and High Doses of Burkholderia pseudomallei | Nuttiya Srisurat Rasana W. Sermswan Unchalee Tatawasart Surasakdi Wongratanacheewin |
2010 |
AMERICAN JOURNAL OF TROPICAL MEDICINE AND HYGIENE 6.0 (82.0), pp. 1102.0-1105.0 |
9 | 0 | 0 | 0 | 0 | 0 | 9 | |
22. | Use of Luminescent Leptospira interrogans for Enumeration in Biological Assays | Gerald L. Murray Amy M. King Amporn Srikram Rasana W. Sermswan Ben Adler |
2010 |
JOURNAL OF CLINICAL MICROBIOLOGY 6.0 (48.0), pp. 2037.0-2042.0 |
16 | 0 | 0 | 0 | 0 | 0 | 16 | |
23. | Cross-protective Immunity Against Leptospirosis Elicited by a Live, Attenuated Lipopolysaccharide Mutant | Amporn Srikram Kunkun Zhang Thanatchaporn Bartpho Miranda Lo David E. Hoke Rasana W. Sermswan Ben Adler Gerald L. Murray |
2011 |
JOURNAL OF INFECTIOUS DISEASES 6.0 (203.0), pp. 870.0-879.0 |
39 | 0 | 0 | 0 | 0 | 0 | 39 | |
24. | Genetic diversity of mushroom mite (Luciaphorus sp.) infesting cultivated mushrooms in the Northeast of Thailand | Prapassorn Bussaman Rasana W. Sermswan Angsuman Chandrapatya |
2011 |
AFRICAN JOURNAL OF AGRICULTURAL RESEARCH 24.0 (6.0), pp. 5438.0-5445.0 |
1 | 0 | 0 | 0 | 0 | 0 | 1 | |
25. | Novel lytic bacteriophages from soil that lyse Burkholderia pseudomallei | Umaporn Yordpratum Unchalee Tattawasart Surasakdi Wongratanacheewin Rasana W. Sermswan |
2011 |
FEMS MICROBIOLOGY LETTERS 1.0 (314.0), pp. 81.0-88.0 |
17 | 0 | 0 | 0 | 0 | 0 | 17 | |
26. | Recombinant LipL32 and LigA from Leptospira are unable to stimulate protective immunity against leptospirosis in the hamster model | Deanna S. Deveson Lucas Paul A. Cullen Miranda Lo Amporn Srikram Rasana W. Sermswan Ben Adler |
2011 |
VACCINE 18.0 (29.0), pp. 3413.0-3418.0 |
49 | 0 | 0 | 0 | 0 | 0 | 49 | |
27. | Cationic Liposomes Extend the Immunostimulatory Effect of CpG Oligodeoxynucleotide against Burkholderia pseudomallei Infection in BALB/c Mice | Apichaya Puangpetch Robert Anderson Yan Y. Huang Rasana W. Sermswan Wanpen Chaicumpa Stitaya Sirisinha Surasakdi Wongratanacheewin |
2012 |
CLINICAL AND VACCINE IMMUNOLOGY 5.0 (19.0), pp. 675.0-683.0 |
19 | 0 | 0 | 0 | 0 | 0 | 19 | |
28. | Development of a multiplex PCR assay for rapid identification of Burkholderia pseudomallei, Burkholderia thailandensis, Burkholderia mallei and Burkholderia cepacia complex | Seng Fook Koh Sun Tee Tay Rasana Sermswan Surasakdi Wongratanacheewin Kek Heng Chua Savithri D. Puthucheary |
2012 |
JOURNAL OF MICROBIOLOGICAL METHODS 3.0 (90.0), pp. 305.0-308.0 |
18 | 0 | 0 | 0 | 0 | 0 | 18 | |
29. | FlaA Proteins in Leptospira interrogans Are Essential for Motility and Virulence but Are Not Required for Formation of the Flagellum Sheath | Ambroise Lambert Mathieu Picardeau David A. Haake Rasana W. Sermswan Amporn Srikram Ben Adler Gerald A. Murray |
2012 |
INFECTION AND IMMUNITY 6.0 (80.0), pp. 2019.0-2025.0 |
86 | 0 | 0 | 0 | 0 | 0 | 86 | |
30. | Genomic Islands as a Marker to Differentiate between Clinical and Environmental Burkholderia pseudomallei | Thanatchaporn Bartpho Thidathip Wongsurawat Surasakdi Wongratanacheewin Adel M. Talaat Nitsara Karoonuthaisiri Rasana W. Sermswan |
2012 |
PLOS ONE 6.0 (7.0), pp. |
10 | 0 | 0 | 0 | 0 | 0 | 10 | |
31. | Leptospira interrogans Catalase Is Required for Resistance to H2O2 and for Virulence | Azad Eshghi Kristel Lourdault Gerald L. Murray Thanatchaporn Bartpho Rasana W. Sermswan Mathieu Picardeau Ben Adler Brendan Snarr Richard L. Zuerner Caroline E. Cameron |
2012 |
INFECTION AND IMMUNITY 11.0 (80.0), pp. 3892.0-3899.0 |
63 | 0 | 0 | 0 | 0 | 0 | 63 | |
32. | Protective immunization of hamsters against Opisthorchis viverrini infection is associated with the reduction of TGF-beta expression | Jutharat Jittimanee Rasana W. Sermswan Chamraj Kaewraemruaen John R. Barta Janet I. MacInnes Wanchai Maleewong Surasakdi Wongratanacheewin |
2012 |
ACTA TROPICA 2.0 (122.0), pp. 189.0-195.0 |
9 | 0 | 0 | 0 | 0 | 0 | 9 | |
33. | ENVIRONMENTAL MANAGEMENT PROCEDURES FOLLOWING FATAL MELIOIDOSIS IN A CAPTIVE CHIMPANZEE (PAN TROGLODYTES) | Angkana Sommanustweechai Tanit Kasantikul Wachirawit Somsa Surasakdi Wongratanacheewin Rasana W. Sermswan Piyaporn Kongmakee Warissara Thomas Sumate Kamolnorranath Boripat Siriaroonrat Mitchell Bush Wijit Banlunara |
2013 |
JOURNAL OF ZOO AND WILDLIFE MEDICINE 2.0 (44.0), pp. 475.0-479.0 |
4 | 0 | 0 | 0 | 0 | 0 | 4 | |
34. | Evaluation of 238 antigens of Leptospira borgpetersenii serovar Hardjo for protection against kidney colonisation | Gerald L. Murray Miranda Lo Dieter M. Bulach Amporn Srikram Torsten Seemann Noelene S. Quinsey Rasana W. Sermswan Andy Allen Ben Adler |
2013 |
VACCINE 3.0 (31.0), pp. 495.0-499.0 |
32 | 0 | 0 | 0 | 0 | 0 | 32 | |
35. | Leptospiral LruA Is Required for Virulence and Modulates an Interaction with Mammalian Apolipoprotein AI | Kunkun Zhang Gerald L. Murray Torsten Seemann Amporn Srikram Thanatchaporn Bartpho Rasana W. Sermswan Ben Adler David E. Hoke |
2013 |
INFECTION AND IMMUNITY 10.0 (81.0), pp. 3872.0-3879.0 |
21 | 0 | 0 | 0 | 0 | 0 | 21 | |
36. | Leptospiral Outer Membrane Protein LipL41 Is Not Essential for Acute Leptospirosis but Requires a Small Chaperone Protein, Lep, for Stable Expression | Amy M. King Thanatchaporn Bartpho Rasana W. Sermswan Dieter M. Bulach Azad Eshghi Mathieu Picardeau Ben Adler Gerald L. Murray |
2013 |
INFECTION AND IMMUNITY 8.0 (81.0), pp. 2768.0-2776.0 |
28 | 0 | 0 | 0 | 0 | 0 | 28 | |
37. | Use of a high-throughput screen to identify Leptospira mutants unable to colonize the carrier host or cause disease in the acute model of infection | Renee A. Marcsisin Thanatchaporn Bartpho Dieter M. Bulach Amporn Srikram Rasana W. Sermswan Ben Adler Gerald L. Murray |
2013 |
JOURNAL OF MEDICAL MICROBIOLOGY (62.0), pp. 1601.0-1608.0 |
29 | 0 | 0 | 0 | 0 | 0 | 29 | |
38. | Characterization of BPSS1521 (bprD), a Regulator of Burkholderia pseudomallei Virulence Gene Expression in the Mouse Model | Sunisa Chirakul Thanatchaporn Bartpho Thidathip Wongsurawat Suwimol Taweechaisupapong Nitsara Karoonutaisiri Adel M. Talaat Surasakdi Wongratanacheewin Robert K. Ernst Rasana W. Sermswan |
2014 |
PLOS ONE 8.0 (9.0), pp. |
12 | 0 | 0 | 0 | 0 | 0 | 12 | |
39. | Comparison of the protective effects of killed Burkholderia pseudomallei and CpG oligodeoxynucleotide against live challenge | Apichaya Puangpetch Robert Anderson Yan Y. Huang Rojana Saengsot Rasana W. Sermswan Surasakdi Wongratanacheewin |
2014 |
VACCINE 45.0 (32.0), pp. 5983.0-5988.0 |
8 | 0 | 0 | 0 | 0 | 0 | 8 | |
40. | High HMGB1 level is associated with poor outcome of septicemic melioidosis | Jaruek Charoensup Rasana W. Sermswan Arunee Paeyao Sairavee Promakhejohn Sirilak Punasee Charanya Chularari Sukunya Krabkraikaew Sujet Lertanekawattana Surasakdi Wongratanacheewin |
2014 |
INTERNATIONAL JOURNAL OF INFECTIOUS DISEASES (28.0), pp. 111.0-116.0 |
27 | 0 | 0 | 0 | 0 | 0 | 27 | |
41. | High-Temperature Protein G Is an Essential Virulence Factor of Leptospira interrogans | Amy M. King Gabriela Pretre Thanatchaporn Bartpho Rasana W. Sermswan Claudia Toma Toshihiko Suzuki Azad Eshghi Mathieu Picardeau Ben Adler Gerald L. Murray |
2014 |
INFECTION AND IMMUNITY 3.0 (82.0), pp. 1123.0-1131.0 |
56 | 0 | 0 | 0 | 0 | 0 | 56 | |
42. | LYTIC CAPABILITY OF BACTERIOPHAGES (FAMILY MYOVIRIDAE) ON BURKHOLDERIA PSEUDOMALLEI | Ratchadaporn Kulsuwan Surasak Wongratanacheewin Rasana Sermswan Wongratanacheewin Umaporn Yordpratum Unchalee Tattawasart |
2014 |
SOUTHEAST ASIAN JOURNAL OF TROPICAL MEDICINE AND PUBLIC HEALTH 6.0 (45.0), pp. 1344.0-1353.0 |
4 | 0 | 0 | 0 | 0 | 0 | 4 | |
43. | A PCR-BASED DETECTION OF BURKHOLDERIA PSEUDOMALLEI DIVERSITY USING MYOVIRIDAE PROPHAGE TYPING | Yaowarin Nakornpakdee Rasana W. Sermswan Unchalee Tattawasart Umaporn Yordpratum Surasakdi Wongratanacheewin |
2015 |
SOUTHEAST ASIAN JOURNAL OF TROPICAL MEDICINE AND PUBLIC HEALTH 1.0 (46.0), pp. 30.0-37.0 |
3 | 0 | 0 | 0 | 0 | 0 | 3 | |
44. | Direct detection of Burkholderia pseudomallei and biological factors in soil | Rasana W. Sermswan Phairat Royrosa Nittaya Khakhum Surasakdi Wongratanacheewin Apichai Tuanyok |
2015 |
TRANSACTIONS OF THE ROYAL SOCIETY OF TROPICAL MEDICINE AND HYGIENE 7.0 (109.0), pp. 462.0-468.0 |
25 | 1 | 0 | 0 | 0 | 0 | 26 | |
45. | Drug susceptibility and biofilm formation of Burkholderia pseudomallei in nutrient-limited condition | C. Anutrakunchai R. W. Sermswan S. Wongratanacheewin A. Puknun S. Taweechaisupapong |
2015 |
TROPICAL BIOMEDICINE 2.0 (32.0), pp. 300.0-309.0 |
18 | 2 | 0 | 0 | 0 | 0 | 20 | |
46. | THE CONTRIBUTION OF SOIL PHYSICOCHEMICAL PROPERTIES TO THE PRESENCE AND GENETIC DIVERSITY OF BURKHOLDERIA PSEUDOMALLEI | Rinrapee Ngamsang Chotima Potisap Atcha Boonmee Phrueksa Lawongsa Thotsapol Chaianunporn Surasakdi Wongratanacheewin Jorge L. M. Rodrigues Rasana W. Sermswan |
2015 |
SOUTHEAST ASIAN JOURNAL OF TROPICAL MEDICINE AND PUBLIC HEALTH 1.0 (46.0), pp. 38.0-50.0 |
16 | 0 | 0 | 0 | 0 | 0 | 16 | |
47. | Transcription level analysis of intracellular Burkholderia pseudomallei illustrates the role of BPSL1502 during bacterial interaction with human lung epithelial cells | Teerasit Techawiwattanaboon Tanachaporn Bartpho Rasana Wongratanacheewin Sermswan Sorujsiri Chareonsudjai |
2015 |
JOURNAL OF MICROBIOLOGY 2.0 (53.0), pp. 134.0-140.0 |
12 | 0 | 0 | 0 | 0 | 0 | 12 | |
48. | Burkholderia pseudomallei resistance to antibiotics in biofilm-induced conditions is related to efflux pumps | Nopphasul Sirijant Rasana W. Sermswan Surasakdi Wongratanacheewin |
2016 |
JOURNAL OF MEDICAL MICROBIOLOGY (65.0), pp. 1296.0-1306.0 |
14 | 0 | 0 | 0 | 0 | 0 | 14 | |
49. | Cloning, expression, and characterization of a peptidoglycan hydrolase from the Burkholderia pseudomallei phage ST79 | Nittaya Khakhum Umaporn Yordpratum Atcha Boonmee Unchalee Tattawasart Jorge L. M. Rodrigues Rasana W. Sermswan |
2016 |
AMB EXPRESS (6.0), pp. |
5 | 0 | 0 | 0 | 0 | 0 | 5 | |
50. | CpG oligodeoxynucleotides with crude parasite antigens reduce worm recovery in Opisthorchis viverrini infected hamsters | Chamraj Kaewraemruaen Rasana W. Sermswan Surasakdi Wongratanacheewin |
2016 |
ACTA TROPICA (164.0), pp. 395.0-401.0 |
4 | 0 | 0 | 0 | 0 | 0 | 4 | |
51. | Identification of the Burkholderia pseudomallei bacteriophage ST79 lysis gene cassette | N. Khakhum U. Yordpratum A. Boonmee U. Tattawasart J. L. M. Rodrigues R. W. Sermswan |
2016 |
JOURNAL OF APPLIED MICROBIOLOGY 2.0 (121.0), pp. 364.0-372.0 |
8 | 0 | 0 | 0 | 0 | 0 | 8 | |
52. | Induction of regulatory T cells by Opisthorchis viverrini | C. Kaewraemruaen R. W. Sermswan S. Wongratanacheewin |
2016 |
PARASITE IMMUNOLOGY 11.0 (38.0), pp. 688.0-697.0 |
11 | 0 | 0 | 0 | 0 | 0 | 11 | |
53. | Retrospective Study on Fatal Melioidosis in Captive Zoo Animals in Thailand | T. Kasantikul A. Sommanustweechai K. Polsrila W. Kongkham C. Chaisongkram S. Sanannu P. Kongmakee W. Narongwanichgarn M. Bush R. W. Sermswan W. Banlunara |
2016 |
TRANSBOUNDARY AND EMERGING DISEASES 5.0 (63.0), pp. E389-E394 |
7 | 0 | 0 | 0 | 0 | 0 | 7 | |
54. | Role of RelA and SpoT in Burkholderia pseudomallei survival, biofilm formation and ceftazidime tolerance during nutritional stress | C. Anutrakunchai C. M. Hemsley R. W. Sermswan R. W. Titball S. Chareonsudjai S. Taweechaisupapong |
2016 |
TROPICAL BIOMEDICINE 4.0 (33.0), pp. 786.0-798.0 |
4 | 0 | 0 | 0 | 0 | 0 | 4 | |
55. | Hydrological connectivity and Burkholderia pseudomallei prevalence in wetland environments: investigating rice-farming community's risk of exposure to melioidosis in North-East Thailand | C. Joon Chuah Esther K. H. Tan Rasana W. Sermswan Alan D. Ziegler |
2017 |
ENVIRONMENTAL MONITORING AND ASSESSMENT 6.0 (189.0), pp. |
10 | 0 | 0 | 0 | 0 | 0 | 10 | |
56. | Secondary metabolites from Bacillus amyloliquefaciens isolated from soil can kill Burkholderia pseudomallei | Patcharaporn Boottanun Chotima Potisap Julian G. Hurdle Rasana W. Sermswan |
2017 |
AMB EXPRESS (7.0), pp. |
15 | 0 | 0 | 0 | 0 | 0 | 15 | |
57. | Burkholderia pseudomallei-absent soil bacterial community results in secondary metabolites that kill this pathogen | Chotima Potisap Md Abdul Wadud Khan Atcha Boonmee Jorge L. M. Rodrigues Surasakdi Wongratanacheewin Rasana W. Sermswan |
2018 |
AMB EXPRESS (8.0), pp. |
0 | 0 | 0 | 0 | 0 | 0 | 0 | |
58. | Hamster IFN-gamma(+)CD4(+) and IL-4(+)CD4(+) T cell responses against leptospires are significantly higher than those of mice | Yaowarin Nakornpakdee Rasana W. Sermswan Santi Maneewatchararangsri Surasakdi Wongratanacheewin |
2018 |
ASIAN PACIFIC JOURNAL OF ALLERGY AND IMMUNOLOGY 4.0 (36.0), pp. 265.0-272.0 |
0 | 0 | 0 | 0 | 0 | 0 | 0 | |
59. | Heterologous protection elicited by a live, attenuated, Leptospira vaccine | Gerald L. Murray Theeraya Simawaranon Chamraj Kaewraemruaen Ben Adler Rasana W. Sermswan |
2018 |
VETERINARY MICROBIOLOGY (223.0), pp. 47.0-50.0 |
2 | 0 | 0 | 0 | 0 | 0 | 2 | |
60. | A new cytotoxic plumbagin derivative from roots of Diospyros undulata | Nattawut Suchaichit Natcha P. Suchaichit Kwanjai Kanokmedhakul Patcharaporn Boottanun Rasana W. Sermswan Panawan Moosophon Somdej Kanokmedhakul |
2019 |
NATURAL PRODUCT RESEARCH (), pp. |
1 | 0 | 0 | 0 | 0 | 0 | 1 | |
61. | IRON CHELATOR EFFECT ON BIOFILM-PRODUCING BURKHOLDERIA PSEUDOMALLEI ANTIBIOTIC SUSCEPTIBILITY IN A MICROFLUIDIC CULTURE SYSTEM | Supaksorn Chattagul Surasakdi Wongratanacheewin Rasana W. Sermswan |
2019 |
SOUTHEAST ASIAN JOURNAL OF TROPICAL MEDICINE AND PUBLIC HEALTH 3.0 (50.0), pp. 514.0-521.0 |
0 | 0 | 0 | 0 | 0 | 0 | 0 | |
62. | Temporal proteomic profiling reveals changes that support Burkholderia biofilms | Mohd M. Khan Supaksorn Chattagul Bao Q. Tran Jeffrey A. Freiberg Aleksandra Nita-Lazar Mark E. Shirtliff Rasana W. Sermswan Robert K. Ernst David R. Goodlett |
2019 |
PATHOGENS AND DISEASE 2.0 (77.0), pp. |
2 | 0 | 0 | 0 | 0 | 0 | 2 |
Title | Authors | Year | Journal title | ||
---|---|---|---|---|---|
1. | Search for specific antigens of Pseudomonas pseudomallei : I. An analysis of sonic extracted antigens of P.pseudomallei by SDS-PAGE and immunoblot | Suwin Wongwajana supatra Ratanatragooldecha Surasakdi Wongratanacheewin Unchalee Tattawasart Kanokrut Nuntirooj Rasana Wongratanacheewin Chatri Settasatian |
1991 |
Srinagarind Medical Journal (6 No 3), pp. 177-190 |
|
2. | Genetic Engineering and Diagnosis of Genetic Diseases in 21st Century | Rasana Wongratanacheewin | 2003 |
Srinagarind Medical Journal (18 No 4), pp. 241-245 |
|
3. | Bacteriophages and their Medical Applications | Nittaya Khakhum Umaporn Yordpratum Rasana Wongratanacheewin |
2010 |
Srinagarind Medical Journal (25 No 1), pp. 47-53 |
|
4. | Metagenomics | Chotima Potisap Rasana Wongratanacheewin |
2010 |
Srinagarind Medical Journal (25 No 1), pp. 54-58 |
ชื่อโครงการ | Authors | ประเภทโครงการ | ปีงบประมาณ | ทุนวิจับ |
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