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ผศ.ดร. ศริญญา คงเพชร

ผศ.ดร. ศริญญา คงเพชร

ภาควิชาเภสัชวิทยา,
คณะแพทยศาสตร์,
มหาวิทยาลัยขอนแก่น
36100336000: H-INDEX 19

บทความ

TCI อ้างอิงจาก http://www.tci-thaijo.org/

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SCOPUS

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PUBMED

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ISI

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TCI

Title Author Year SCOPUS PUBMED ISI TCI
1. Redox modulation and human bile duct cancer inhibition by curcumin. Suphim, B
Prawan, A
Kukongviriyapan, U
Kongpetch, S
Buranrat, B
Kukongviriyapan, V
0
2. Dicoumarol enhances gemcitabine-induced cytotoxicity in high NQ01-expressing cholangiocarcinoma cells Benjaporn Buranrat
Auemduan Prawan
Upa Kukongviriyapan
Sarinya Kongpetch
Veerapol Kukongviriyapan
2010
3. Dicoumarol enhances gemcitabine-induced cytotoxicity in high NQO1-expressing cholangiocarcinoma cells. Buranrat, B.
Prawan, A.
Kukongviriyapan, U.
Kongpetch, S.
Kukongviriyapan, V.
2010
4. Redox modulation and human bile duct cancer inhibition by curcumin Suphim, B.
Prawan, A.
Kukongviriyapan, U.
Kongpetch, S.
Buranrat, B.
Kukongviriyapan, V.
2010
5. Crucial Role of Heme Oxygenase-1 on the Sensitivity of Cholangiocarcinoma Cells to Chemotherapeutic Agents Kongpetch, S.
Kukongviriyapan, V.
Prawan, A.
Senggunprai, L.
Kukongviriyapan, U.
Buranrat, B.
2012
6. Heme oxygenase-1 as a potential target for anticancer treatments in cholangiocarcinoma S. Kongpetch
V. Kukongviriyapan
A. Prawan
L. Senggunprai
U. Kukongviriyapan
O. C. Kiat
W. Chan-On
S. E. Yan
T. B. Tean
2012
7. Inhibition of Heme Oxygenase-1 Enhanced Antitumor Effect of Gemcitabine in Cholangiocarcinoma Sarinya Kongpetch 2013
8. Luteolin arrests cell cycling, induces apoptosis and inhibits the JAK/STAT3 pathway in human cholangiocarcinoma cells. Ploypailin Aneknan
Veerapol Kukongviriyapan
Auemduan Prawan
Sarinya Kongpetch
Banchob Sripa
Laddawan Senggunprai
2014
9. Fumarate Hydratase-deficient Cell Line NCCFH1 as a New In Vitro Model of Hereditary Papillary Renal Cell Carcinoma Type 2 Perrier-Trudova, V
Huimin, BW
Kongpetch, S
Huang, D
Ong, P
LE Formal, A
Poon, SL
Siew, EY
Myint, SS
Gad, S
Gardie, B
Couvé, S
Foong, YM
Choudhury, Y
Poh, J
Ong, CK
Toh, CK
Ooi, A
Richard, S
Tan, MH
Teh, BT
2015
10. Genetics of Opisthorchis viverrini-related cholangiocarcinoma. Jusakul, A.
Kongpetch, S.
2015
11. Pathogenesis of cholangiocarcinoma: From genetics to signalling pathways Kongpetch, S
Jusakul, A
Ong, CK
Lim, WK
Rozen, SG
Tan, P
Teh, BT
2015
12. Haem oxygenase 1 expression is associated with prognosis in cholangiocarcinoma patients and with drug sensitivity in xenografted mice Kongpetch, S
Puapairoj, A
Ong, CK
Senggunprai, L
Prawan, A
Kukongviriyapan, U
Chan-On, W
Siew, EY
Khuntikeo, N
Teh, BT
Kukongviriyapan, V
2016
13. Downregulation of NAD(P)H:quinone oxidoreductase 1 inhibits proliferation, cell cycle and migration of cholangiocarcinoma cells. Kukongviriyapan, V.
Senggunprai, L.
Kongpetch, S.
Zeekpudsa, P.
Prawan, A.
2017
14. Establishment of cholangiocarcinoma cell lines from patients in the endemic area of liver fluke infection in Thailand Senggunprai, L.
Namwat, N.
Kongpetch, S.
Chamgramol, Y.
Loilome, W.
Khansaard, W.
Jusakul, A.
Prawan, A.
Pairojkul, C.
Yongvanit, P.
Kukongviriyapan, V.
2017
15. SILENCING OF NAD(P) H: QUINONE OXIDOREDUCTASE 1 DECREASES THE CELL GROWTH AND MIGRATION OF CHOLANGIOCARCINOMA CELLS Auemduan Prawan
Siriwoot Butsri
Veerapol Kukongviriyapan
Laddawan Senggunprai
Sarinya Kongpetch
2017
16. Whole-Genome and Epigenomic Landscapes of Etiologically Distinct Subtypes of Cholangiocarcinoma. Jusakul, A.
Cutcutache, I.
Kongpetch, S.
Myint, S.S.
Thanan, R.
Ng, C.C.Y.
Rajasegaran, V.
McPherson, J.R.
Khuntikeo, N.
Bhudhisawasdi, V.
Yongvanit, P.
Dima, S.O.L.
Shibata, T.
Pairojkul, C.
2017
17. Antitumor effects of candidone, a natural flavanone derivative, in cholangiocarcinoma cells Sarinya Kongpetch
Benjawan Kurasug
Veerapol Kukongviriyapan
Auemduan Prawan
Laddawan Senggunprai
Chavi Yenjai
2018
18. Antitumor effects of candidone extracted from Derris indica (Lamk) Bennet in cholangiocarcinoma cells Kukongviriyapan, V.
Prawan, A.
Yenjai, C.
Kongpetch, S.
2018
19. Cucurbitacin B induces apoptosis in human cholangiocarcinoma cells by modulation of apoptotic-related proteins Sirinapha Klungsaeng
Laddawan Senggunprai
Veerapol Kukongviriyapan
Auemduan Prawan
Sarinya Kongpetch
2018
20. Metformin enhances cisplatin induced inhibition of cholangiocarcinoma cells via AMPK-mTOR pathway Wandee, J
Prawan, A
Senggunprai, L
Kongpetch, S
Tusskorn, O
Kukongviriyapan, V
2018
21. Migration of Pancreatic Cancer cell BxPC-3 is suppressed by ROS Jaroon Wandee
Auemduan Prawan
Laddawan Senggunprai
Sarinya Kongpetch
Veerapol Kukongviriyapan
2018
22. Whole-Genome and Epigenomic Landscapes of Etiologically Distinct Subtypes of Cholangiocarcinoma Apinya Jusakul
Ioana Cutcutache
Chern Han Yong
Jing Quan Lim
Mi Ni Huang
Nisha Padmanabhan
Vishwa Nellore
Sarinya Kongpetch
Alvin Wei Tian Ng
Ley Moy Ng
Su Pin Choo
Swe Swe Myint
Raynoo Thanan
Sanjanaa Nagarajan
Weng Khong Lim
Cedric Chuan Young Ng
Arnoud Boot
Mo Liu
Choon Kiat Ong
Vikneswari Rajasegaran
Stefanus Lie
Alvin Soon Tiong Lim
Tse Hui Lim
Jing Tan
Jia Liang Loh
John R. McPherson
Narong Khuntikeo
Vajaraphongsa Bhudhisawasdi
Puangrat Yongvanit
Sopit Wongkham
Yasushi Totoki
Hiromi Nakamura
Yasuhito Arai
Satoshi Yamasaki
Pierce Kah-Hoe Chow
Alexander Yaw Fui Chung
London Lucien Peng Jin Ooi
Kiat Hon Lim
Simona Dima
Dan G. Duda
Irinel Popescu
Philippe Broet
Sen-Yung Hsieh
Ming-Chin Yu
Aldo Scarpa
Jiaming Lai
Di-Xian Luo
Andre Lopes Carvalho
Andre Luiz Vettore
Hyungjin Rhee
Young Nyun Park
Ludmil B. Alexandrov
Raluca Gordan
Steven G. Rozen
Tatsuhiro Shibata
Chawalit Pairojkul
Bin Tean Teh
Patrick Tan
2018
23. Cucurbitacin B induces mitochondrial-mediated apoptosis pathway in cholangiocarcinoma cells via suppressing focal adhesion kinase signaling Sirinapha Klungsaeng
Veerapol Kukongviriyapan
Auemduan Prawan
Sarinya Kongpetch
Laddawan Senggunprai
2019
24. Metformin sensitizes cholangiocarcinoma cell to cisplatin-induced cytotoxicity through oxidative stress mediated mitochondrial pathway. Prawan, A.
Senggunprai, L.
Kongpetch, S.
Kukongviriyapan, V.
2019
25. Myricetin ameliorates cytokine-induced migration and invasion of cholangiocarcinoma cells via suppression of STAT3 pathway. Pattarapon Tuponchai
Veerapol Kukongviriyapan
Auemduan Prawan
Sarinya Kongpetch
Laddawan Senggunprai
2019
26. Lack of targetable FGFR2 fusions in endemic fluke-associated cholangiocarcinoma Sarinya Kongpetch
Apinya Jusakul
Jing Quan Lim
Cedric Chuan Young Ng
Jason Yongsheng Chan
Vikneswari Rajasegaran
Tse Hui Lim
Kiat Hon Lim
Su Pin Choo
Simona Dima
Irinel Popescu
Dan G. Duda
Veerapol Kukongviriyapan
Narong Khuntikeo
Chawalit Pairojkul
Steven G. Rozen
Patrick Tan
Bin Tean Teh
2020
27. Phenformin inhibits proliferation, invasion, and angiogenesis of cholangiocarcinoma cells via AMPK-mTOR and HIF-1A pathways. Kongpetch, S.
Senggunprai, L.
Prawan, A.
Kukongviriyapan, U.
Kukongviriyapan, V.
2020
28. Rice bran hydrolysates induce immunomodulatory effects by suppression of chemotaxis, and modulation of cytokine release and cell-mediated cytotoxicity Suphanthip Phusrisom
Laddawan Senggunprai
Auemduan Prawan
Sarinya Kongpetch
Upa Kukongviriyapan
Supawan Thawornchinsombut
Ronnachai Changsri
Veerapol Kukongviriyapan
2020
29. Targeted modulation of FAK/PI3K/PDK1/AKT and FAK/p53 pathways by cucurbitacin B for the antiproliferation effect against human cholangiocarcinoma cells Klungsaeng, S
Kukongviriyapan, V
Prawan, A
Kongpetch, S
Senggunprai, L
2020
30. Anti-tumor activity of rice bran hydrolysates on migration, invasion and angiogenesis Suphanthip Phusrisom
Laddawan Senggunprai
Auemduan Prawan
Sarinya Kongpetch
Upa Kukongviriyapan
Supawan Thawornchinsombut
Sirithon Siriamornpun
Theeraphan Chumroenphat
Ronnachai Changsri
Veerapol Kukongviriyapan
2021
31. Arctigenin inhibits cholangiocarcinoma progression by regulating cell migration and cell viability via the N-cadherin and apoptosis pathway Jusakul, A.
Kongpetch, S.
Kimawaha, P.
Klanrit, P.
Loilome, W.
Namwat, N.
Techasen, A.
2021
32. Cucurbitacin B Diminishes Metastatic Behavior of Cholangiocarcinoma Cells by Suppressing Focal Adhesion Kinase Kaewmeesri, P
Kukongviriyapan, V
Prawan, A
Kongpetch, S
Senggunprai, L
2021
33. Derrischalcone suppresses cholangiocarcinoma cells through targeting ROS-mediated mitochondrial cell death, Akt/mTOR, and FAK pathways. Prawan, A.
Senggunprai, L.
Kongpetch, S.
Yenjai, C.
Kukongviriyapan, V.
2021
34. Diagnostic and Prognostic Value of Circulating Cell-Free DNA for Cholangiocarcinoma Preawwalee Wintachai
Jing Quan Lim
Anchalee Techasen
Worachart Lert-Itthiporn
Sarinya Kongpetch
Watcharin Loilome
Jarin Chindaprasirt
Attapol Titapun
Nisana Namwat
Narong Khuntikeo
Apinya Jusakul
2021
35. Diagnostic and prognostic value of circulating cell‐free dna for cholangiocarcinoma Wintachai, P.
Techasen, A.
Lert-Itthiporn, W.
Kongpetch, S.
Loilome, W.
Titapun, A.
Namwat, N.
Khuntikeo, N.
Jusakul, A.
2021
36. Targeting FGFR inhibition in cholangiocarcinoma Kongpetch, S. 2021
37. All--retinoic acid induces RARB-dependent apoptosis via ROS induction and enhances cisplatin sensitivity by NRF2 downregulation in cholangiocarcinoma cells. Butsri, S
Kukongviriyapan, V
Senggunprai, L
Kongpetch, S
Prawan, A
2022
38. All-trans-retinoic acid induces RARB-dependent apoptosis via ROS induction and enhances cisplatin sensitivity by NRF2 downregulation in cholangiocarcinoma cells Butsri, S.
Kukongviriyapan, V.
Senggunprai, L.
Kongpetch, S.
Prawan, A.
2022
39. Anti-metastatic Potential of Natural Triterpenoid Cucurbitacin B Against Cholangiocarcinoma Cells by Targeting Src Protein. Kaewmeesri, P.
Pocasap, P.
Kukongviriyapan, V.
Prawan, A.
Kongpetch, S.
Senggunprai, L.
2022
40. Epidermal growth factor receptor as a potential target of momordin Ic to promote apoptosis of cholangiocarcinoma cells. Senggunprai, L.
Kukongviriyapan, V.
Prawan, A.
Kongpetch, S.
2022
41. Inhibition of FGFR2 enhances chemosensitivity to gemcitabine in cholangiocarcinoma through the AKT/mTOR and EMT signaling pathways Jaidee, R
Kukongviriyapan, V
Senggunprai, L
Prawan, A
Jusakul, A
Laphanuwat, P
Kongpetch, S
2022
42. Licochalcone A Induces Cholangiocarcinoma Cell Death Via Suppression of Nrf2 and NF-κB Signaling Pathways Laphanuwat, P
Kongpetch, S
Senggunprai, L
Prawan, A
Kukongviriyapan, V
2022
43. Therapeutic targeting of ARID1A and PI3K/AKT pathway alterations in cholangiocarcinoma Tessiri, S
Techasen, A
Kongpetch, S
Namjan, A
Loilome, W
Chan-On, W
Thanan, R
Jusakul, A
2022
44. 13-cis-retinoic acid inhibits the self-renewal, migration, invasion and adhesion of cholangiocarcinoma cells Butsri, S.
Kukongviriyapan, V.
Senggunprai, L.
Kongpetch, S.
Prawan, A.
2023
45. Alteration of STK11 Expression Associated With Cholangiocarcinoma Progression. Sirithawat, P
Jusakul, A
Kongpetch, S
Thanee, M
Srichanchara, P
Panjaroensak, S
Kimawaha, P
Janthamala, S
Aphivatanasiri, C
Techasen, A
2023
46. FGF10/FGFR2 Signaling: Therapeutically Targetable Vulnerability in Ligand-responsive Cholangiocarcinoma Cells. Oeurn, K
Jusakul, A
Jaidee, R
Kukongviriyapan, V
Senggunprai, L
Prawan, A
Kongpetch, S
2023
47. Anticancer properties and metabolomic profiling of Shorea roxburghii extracts toward gastrointestinal cancer cell lines Janthamala, S
Promraksa, B
Thanee, M
Duenngai, K
Jusakul, A
Kongpetch, S
Kraiklang, R
Thanee, K
Pinlaor, P
Namwat, N
Saya, H
Techasen, A
2024
48. Dual blockage of PI3K-mTOR and FGFR induced autophagic cell death in cholangiocarcinoma cells. Mahaamnad, N
Pocasap, P
Kukongviriyapan, V
Senggunprai, L
Prawan, A
Kongpetch, S
2024
49. Integrative multiomics enhancer activity profiling identifies therapeutic vulnerabilities in cholangiocarcinoma of different etiologies. Hong, JH
Yong, CH
Heng, HL
Chan, JY
Lau, MC
Chen, J
Lee, JY
Lim, AH
Li, Z
Guan, P
Chu, PL
Boot, A
Ng, SR
Yao, X
Wee, FYT
Lim, JCT
Liu, W
Wang, P
Xiao, R
Zeng, X
Sun, Y
Koh, J
Kwek, XY
Ng, CCY
Klanrit, P
Zhang, Y
Lai, J
Tai, DWM
Pairojkul, C
Dima, S
Popescu, I
Hsieh, SY
Yu, MC
Yeong, J
Kongpetch, S
Jusakul, A
Loilome, W
Tan, P
Tan, J
Teh, BT
2024
50. Network pharmacology- and cell-based assessments identify the FAK/Src pathway as a molecular target for the antimetastatic effect of momordin Ic against cholangiocarcinoma. Pocasap, P
Prawan, A
Kongpetch, S
Senggunprai, L
2024
51. Establishment and genomic profiling of cholangiocarcinoma cells with functional characterization. Jaidee, R
Jusakul, A
Pocasap, P
Kukongviriyapan, V
Senggunprai, L
Prawan, A
Loilome, W
Titapun, A
Jareanrat, A
Thanasukarn, V
Khuntikeo, N
Namwat, N
Chamgramol, Y
Thanee, M
Wichian, P
Hong, JH
Guan, P
Heng, HL
Pairojkul, C
Teh, BT
Kongpetch, S
2025
52. Expression and Prognostic Implication of the Nuclear Receptors Farnesoid X Receptor and Pregnane X Receptor in Human Cholangiocarcinoma. Sa-Ngiamwibool, P
Yoshinari, K
Shizu, R
Kongpetch, S
Prawan, A
Senggunprai, L
2025
53. Mutations in Cholangiocarcinoma: Prevalence, Prognostic Value, and G12/G13 Detection in Cell-Free DNA. Thongyoo, P
Chindaprasirt, J
Aphivatanasiri, C
Intarawichian, P
Kunprom, W
Kongpetch, S
Techasen, A
Loilome, W
Namwat, N
Titapun, A
Jusakul, A
2025
54. Synergistic suppression of cholangiocarcinoma cells via DNA damage response and cell cycle arrest by dual targeting PARP and ATM in DNA damage repair pathway. Jaidee, R
Pocasap, P
Jusakul, A
Senggunprai, L
Prawan, A
Hong, JH
Heng, HL
Kukongviriyapan, V
Teh, BT
Kongpetch, S
2025
Count 33 37 29 1

Title Authors Year Publication name Cited count
< 2020 2021 2022 2023 2024 2025 รวม
1. Dicoumarol enhances gemcitabine-induced cytotoxicity in high NQO1-expressing cholangiocarcinoma cells Buranrat, B.
Prawan, A.
Kukongviriyapan, U.
Kongpetch, S.
Kukongviriyapan, V.
2010 World Journal of Gastroenterology
19 (16), pp. 2362-2370
2. Redox modulation and human bile duct cancer inhibition by curcumin Suphim, B.
Prawan, A.
Kukongviriyapan, U.
Kongpetch, S.
Buranrat, B.
Kukongviriyapan, V.
2010 Food and Chemical Toxicology
8-9 (48), pp. 2265-2272
3. Crucial role of heme oxygenase-1 on the sensitivity of cholangiocarcinoma cells to chemotherapeutic agents Kongpetch, S.
Kukongviriyapan, V.
Prawan, A.
Senggunprai, L.
Kukongviriyapan, U.
Buranrat, B.
2012 PLoS ONE
4 (7), pp.
4. Luteolin arrests cell cycling, induces apoptosis and inhibits the JAK/STAT3 pathway in human cholangiocarcinoma cells Aneknan, P.
Kukongviriyapan, V.
Prawan, A.
Kongpetch, S.
Sripa, B.
Senggunprai, L.
2014 Asian Pacific Journal of Cancer Prevention
12 (15), pp. 5071-5076
5. Genetics of Opisthorchis viverrini -related cholangiocarcinoma Jusakul, A.
Kongpetch, S.
2015 Current Opinion in Gastroenterology
3 (31), pp. 258-263
6. Pathogenesis of cholangiocarcinoma: From genetics to signalling pathways Kongpetch, S.
Jusakul, A.
Ong, C.
Lim, W.
2015 Best Practice and Research: Clinical Gastroenterology
2 (29), pp. 233-244
7. Haem oxygenase 1 expression is associated with prognosis in cholangiocarcinoma patients and with drug sensitivity in xenografted mice Kongpetch, S.
Puapairoj, A.
Senggunprai, L.
Prawan, A.
Kukongviriyapan, U.
Chan-On, W.
Khuntikeo, N.
Kukongviriyapan, V.
2016 Cell Proliferation
1 (49), pp. 90-101
8. Downregulation of NAD(P)H:Quinone oxidoreductase 1 inhibits proliferation, cell cycle and migration of cholangiocarcinoma cells Kukongviriyapan, V.
Senggunprai, L.
Kongpetch, S.
Zeekpudsa, P.
Prawan, A.
2017 Oncology Letters
6 (13), pp. 4540-4548
9. Establishment of cholangiocarcinoma cell lines from patients in the endemic area of liver fluke infection in Thailand Senggunprai, L.
Namwat, N.
Kongpetch, S.
Chamgramol, Y.
Loilome, W.
Khansaard, W.
Jusakul, A.
Prawan, A.
Pairojkul, C.
Yongvanit, P.
Kukongviriyapan, V.
2017 Tumor Biology
11 (39), pp.
10. Whole-genome and epigenomic landscapes of etiologically distinct subtypes of cholangiocarcinoma Jusakul, A.
Cutcutache, I.
Kongpetch, S.
Myint, S.S.
Thanan, R.
Ng, C.C.Y.
Rajasegaran, V.
McPherson, J.R.
Khuntikeo, N.
Bhudhisawasdi, V.
Yongvanit, P.
Dima, S.O.L.
Shibata, T.
Pairojkul, C.
2017 Cancer Discovery
10 (7), pp. 1116-1135
11. Antitumor effects of candidone extracted from Derris indica (Lamk) Bennet in cholangiocarcinoma cells Kukongviriyapan, V.
Prawan, A.
Yenjai, C.
Kongpetch, S.
2018 Tropical Journal of Pharmaceutical Research
7 (17), pp. 1337-1343
12. Metformin enhances cisplatin induced inhibition of cholangiocarcinoma cells via AMPK-mTOR pathway Prawan, A.
Senggunprai, L.
Kongpetch, S.
Tusskorn, O.
Kukongviriyapan, V.
2018 Life Sciences
(207), pp. 172-183
13. Cucurbitacin B induces mitochondrial-mediated apoptosis pathway in cholangiocarcinoma cells via suppressing focal adhesion kinase signaling Kukongviriyapan, V.
Prawan, A.
Kongpetch, S.
Senggunprai, L.
2019 Naunyn-Schmiedeberg's Archives of Pharmacology
3 (392), pp. 271-278
14. Metformin sensitizes cholangiocarcinoma cell to cisplatin-induced cytotoxicity through oxidative stress mediated mitochondrial pathway Prawan, A.
Senggunprai, L.
Kongpetch, S.
Kukongviriyapan, V.
2019 Life Sciences
(217), pp. 155-163
15. Myricetin ameliorates cytokine-induced migration and invasion of cholangiocarcinoma cells via suppression of STAT3 pathway Kukongviriyapan, V.
Prawan, A.
Kongpetch, S.
Senggunprai, L.
2019 Journal of Cancer Research and Therapeutics
1 (15), pp. 157-163
16. Lack of targetable FGFR2 fusions in endemic fluke-associated cholangiocarcinoma Kongpetch, S.
Jusakul, A.
Ng, C.C.Y.
Rajasegaran, V.
Dima, S.O.L.
Kukongviriyapan, V.
Khuntikeo, N.
Pairojkul, C.
2020 JCO Global Oncology
(6), pp. 628-638
17. Phenformin inhibits proliferation, invasion, and angiogenesis of cholangiocarcinoma cells via AMPK-mTOR and HIF-1A pathways Kongpetch, S.
Senggunprai, L.
Prawan, A.
Kukongviriyapan, U.
Kukongviriyapan, V.
2020 Naunyn-Schmiedeberg's Archives of Pharmacology
9 (393), pp. 1681-1690
18. Rice bran hydrolysates induce immunomodulatory effects by suppression of chemotaxis, and modulation of cytokine release and cell-mediated cytotoxicity Senggunprai, L.
Prawan, A.
Kongpetch, S.
Kukongviriyapan, U.
Thawornchinsombut, S.
Kukongviriyapan, V.
2020 Asian Pacific Journal of Tropical Biomedicine
10 (10), pp. 470-478
19. Targeted modulation of FAK/PI3K/PDK1/AKT and FAK/p53 pathways by cucurbitacin B for the antiproliferation effect against human cholangiocarcinoma cells Kukongviriyapan, V.
Prawan, A.
Kongpetch, S.
Senggunprai, L.
2020 American Journal of Chinese Medicine
6 (48), pp. 1475-1489
20. Anti-tumor activity of rice bran hydrolysates on migration, invasion and angiogenesis Phusrisom, S.
Senggunprai, L.
Prawan, A.
Kongpetch, S.
Kukongviriyapan, U.
Thawornchinsombut, S.
Changsri, R.
Kukongviriyapan, V.
2021 Asian Pacific Journal of Tropical Biomedicine
7 (11), pp. 317-326
21. Arctigenin inhibits cholangiocarcinoma progression by regulating cell migration and cell viability via the N-cadherin and apoptosis pathway Jusakul, A.
Kongpetch, S.
Kimawaha, P.
Klanrit, P.
Loilome, W.
Namwat, N.
Techasen, A.
2021 Naunyn-Schmiedeberg's Archives of Pharmacology
10 (394), pp. 2049-2059
22. Cucurbitacin B Diminishes Metastatic Behavior of Cholangiocarcinoma Cells by Suppressing Focal Adhesion Kinase Kukongviriyapan, V.
Prawan, A.
Kongpetch, S.
Senggunprai, L.
2021 Asian Pacific Journal of Cancer Prevention
1 (22), pp. 219-225
23. Derrischalcone suppresses cholangiocarcinoma cells through targeting ROS-mediated mitochondrial cell death, Akt/mTOR, and FAK pathways Prawan, A.
Senggunprai, L.
Kongpetch, S.
Yenjai, C.
Kukongviriyapan, V.
2021 Naunyn-Schmiedeberg's Archives of Pharmacology
9 (394), pp. 1929-1940
24. Diagnostic and prognostic value of circulating cell‐free dna for cholangiocarcinoma Wintachai, P.
Techasen, A.
Lert-Itthiporn, W.
Kongpetch, S.
Loilome, W.
Titapun, A.
Namwat, N.
Khuntikeo, N.
Jusakul, A.
2021 Diagnostics
6 (11), pp.
25. Targeting FGFR inhibition in cholangiocarcinoma Kongpetch, S. 2021 Cancer Treatment Reviews
(95), pp.
26. All-trans-retinoic acid induces RARB-dependent apoptosis via ROS induction and enhances cisplatin sensitivity by NRF2 downregulation in cholangiocarcinoma cells Butsri, S.
Kukongviriyapan, V.
Senggunprai, L.
Kongpetch, S.
Prawan, A.
2022 Oncology Letters
6 (23), pp.
27. Anti-metastatic Potential of Natural Triterpenoid Cucurbitacin B Against Cholangiocarcinoma Cells by Targeting Src Protein Kaewmeesri, P.
Pocasap, P.
Kukongviriyapan, V.
Prawan, A.
Kongpetch, S.
Senggunprai, L.
2022 Integrative Cancer Therapies
(21), pp.
28. Epidermal growth factor receptor as a potential target of momordin Ic to promote apoptosis of cholangiocarcinoma cells Senggunprai, L.
Kukongviriyapan, V.
Prawan, A.
Kongpetch, S.
2022 Journal of Pharmacy and Pharmacology
7 (74), pp. 996-1005
29. Inhibition of FGFR2 enhances chemosensitivity to gemcitabine in cholangiocarcinoma through the AKT/mTOR and EMT signaling pathways Jaidee, R.
Kukongviriyapan, V.
Senggunprai, L.
Prawan, A.
Jusakul, A.
Laphanuwat, P.
Kongpetch, S.
2022 Life Sciences
(296), pp.
30. Licochalcone A Induces Cholangiocarcinoma Cell Death Via Suppression of Nrf2 and NF-κB Signaling Pathways Laphanuwat, P.
Kongpetch, S.
Senggunprai, L.
Prawan, A.
Kukongviriyapan, V.
2022 Asian Pacific Journal of Cancer Prevention
1 (23), pp. 115-123
31. Therapeutic targeting of ARID1A and PI3K/AKT pathway alterations in cholangiocarcinoma Techasen, A.
Kongpetch, S.
Namjan, A.
Loilome, W.
Chan-On, W.
Thanan, R.
Jusakul, A.
2022 PeerJ
(10), pp.
32. 13-cis-retinoic acid inhibits the self-renewal, migration, invasion and adhesion of cholangiocarcinoma cells Butsri, S.
Kukongviriyapan, V.
Senggunprai, L.
Kongpetch, S.
Prawan, A.
2023 International Journal of Molecular Medicine
3 (51), pp.
33. Anticancer properties and metabolomic profiling of Shorea roxburghii extracts toward gastrointestinal cancer cell lines Janthamala, S.
Promraksa, B.
Thanee, M.
Duenngai, K.
Jusakul, A.
Kongpetch, S.
Kraiklang, R.
Thanee, K.
Pinlaor, P.
Namwat, N.
Saya, H.
Techasen, A.
2024 BMC Complementary Medicine and Therapies
1 (24), pp.

Title Authors Year Journal title
1. Dicoumarol enhances gemcitabine-induced cytotoxicity in high NQO1-expressing cholangiocarcinoma cells. Buranrat, B
Prawan, A
Kukongviriyapan, U
Kongpetch, S
Kukongviriyapan, V
2010 World journal of gastroenterology : WJG
19 (16), pp. 2362-70
2. Crucial role of heme oxygenase-1 on the sensitivity of cholangiocarcinoma cells to chemotherapeutic agents. Kongpetch, S
Kukongviriyapan, V
Prawan, A
Senggunprai, L
Kukongviriyapan, U
Buranrat, B
2012 PloS one
4 (7), pp. e34994
3. Luteolin arrests cell cycling, induces apoptosis and inhibits the JAK/STAT3 pathway in human cholangiocarcinoma cells. Aneknan, P
Kukongviriyapan, V
Prawan, A
Kongpetch, S
Sripa, B
Senggunprai, L
2014 Asian Pacific journal of cancer prevention : APJCP
12 (15), pp. 5071-6
4. Fumarate Hydratase-deficient Cell Line NCCFH1 as a New In Vitro Model of Hereditary Papillary Renal Cell Carcinoma Type 2. Perrier-Trudova, V
Huimin, BW
Kongpetch, S
Huang, D
Ong, P
LE Formal, A
Poon, SL
Siew, EY
Myint, SS
Gad, S
Gardie, B
Couvé, S
Foong, YM
Choudhury, Y
Poh, J
Ong, CK
Toh, CK
Ooi, A
Richard, S
Tan, MH
Teh, BT
2015 Anticancer research
12 (35), pp. 6639-53
5. Pathogenesis of cholangiocarcinoma: From genetics to signalling pathways. Kongpetch, S
Jusakul, A
Ong, CK
Lim, WK
Rozen, SG
Tan, P
Teh, BT
2015 Best practice & research. Clinical gastroenterology
2 (29), pp. 233-44
6. Genetics of Opisthorchis viverrini-related cholangiocarcinoma. Jusakul, A
Kongpetch, S
Teh, BT
2015 Current opinion in gastroenterology
3 (31), pp. 258-63
7. Haem oxygenase 1 expression is associated with prognosis in cholangiocarcinoma patients and with drug sensitivity in xenografted mice. Kongpetch, S
Puapairoj, A
Ong, CK
Senggunprai, L
Prawan, A
Kukongviriyapan, U
Chan-On, W
Siew, EY
Khuntikeo, N
Teh, BT
Kukongviriyapan, V
2016 Cell proliferation
1 (49), pp. 90-101
8. Whole-Genome and Epigenomic Landscapes of Etiologically Distinct Subtypes of Cholangiocarcinoma. Jusakul, A
Cutcutache, I
Yong, CH
Lim, JQ
Huang, MN
Padmanabhan, N
Nellore, V
Kongpetch, S
Ng, AWT
Ng, LM
Choo, SP
Myint, SS
Thanan, R
Nagarajan, S
Lim, WK
Ng, CCY
Boot, A
Liu, M
Ong, CK
Rajasegaran, V
Lie, S
Lim, AST
Lim, TH
Tan, J
Loh, JL
McPherson, JR
Khuntikeo, N
Bhudhisawasdi, V
Yongvanit, P
Wongkham, S
Totoki, Y
Nakamura, H
Arai, Y
Yamasaki, S
Chow, PK
Chung, AYF
Ooi, LLPJ
Lim, KH
Dima, S
Duda, DG
Popescu, I
Broet, P
Hsieh, SY
Yu, MC
Scarpa, A
Lai, J
Luo, DX
Carvalho, AL
Vettore, AL
Rhee, H
Park, YN
Alexandrov, LB
Gordân, R
Rozen, SG
Shibata, T
Pairojkul, C
Teh, BT
Tan, P
2017 Cancer discovery
10 (7), pp. 1116-1135
9. Downregulation of NAD(P)H:quinone oxidoreductase 1 inhibits proliferation, cell cycle and migration of cholangiocarcinoma cells. Butsri, S
Kukongviriyapan, V
Senggunprai, L
Kongpetch, S
Zeekpudsa, P
Prawan, A
2017 Oncology letters
6 (13), pp. 4540-4548
10. Metformin enhances cisplatin induced inhibition of cholangiocarcinoma cells via AMPK-mTOR pathway. Wandee, J
Prawan, A
Senggunprai, L
Kongpetch, S
Tusskorn, O
Kukongviriyapan, V
2018 Life sciences
(207), pp. 172-183
11. Myricetin ameliorates cytokine-induced migration and invasion of cholangiocarcinoma cells via suppression of STAT3 pathway. Tuponchai, P
Kukongviriyapan, V
Prawan, A
Kongpetch, S
Senggunprai, L
2019 Journal of cancer research and therapeutics
1 (15), pp. 157-163
12. Metformin sensitizes cholangiocarcinoma cell to cisplatin-induced cytotoxicity through oxidative stress mediated mitochondrial pathway. Wandee, J
Prawan, A
Senggunprai, L
Kongpetch, S
Kukongviriyapan, V
2019 Life sciences
(217), pp. 155-163
13. Cucurbitacin B induces mitochondrial-mediated apoptosis pathway in cholangiocarcinoma cells via suppressing focal adhesion kinase signaling. Klungsaeng, S
Kukongviriyapan, V
Prawan, A
Kongpetch, S
Senggunprai, L
2019 Naunyn-Schmiedeberg's archives of pharmacology
3 (392), pp. 271-278
14. Lack of Targetable FGFR2 Fusions in Endemic Fluke-Associated Cholangiocarcinoma. Kongpetch, S
Jusakul, A
Lim, JQ
Ng, CCY
Chan, JY
Rajasegaran, V
Lim, TH
Lim, KH
Choo, SP
Dima, S
Popescu, I
Duda, DG
Kukongviriyapan, V
Khuntikeo, N
Pairojkul, C
Rozen, SG
Tan, P
Teh, BT
2020 JCO global oncology
(6), pp. 628-638
15. Phenformin inhibits proliferation, invasion, and angiogenesis of cholangiocarcinoma cells via AMPK-mTOR and HIF-1A pathways. Jaidee, R
Kongpetch, S
Senggunprai, L
Prawan, A
Kukongviriyapan, U
Kukongviriyapan, V
2020 Naunyn-Schmiedeberg's archives of pharmacology
9 (393), pp. 1681-1690
16. Targeted Modulation of FAK/PI3K/PDK1/AKT and FAK/p53 Pathways by Cucurbitacin B for the Antiproliferation Effect Against Human Cholangiocarcinoma Cells. Klungsaeng, S
Kukongviriyapan, V
Prawan, A
Kongpetch, S
Senggunprai, L
2020 The American journal of Chinese medicine
(), pp. 1-15
17. Arctigenin inhibits cholangiocarcinoma progression by regulating cell migration and cell viability via the N-cadherin and apoptosis pathway. Janthamala, S
Jusakul, A
Kongpetch, S
Kimawaha, P
Klanrit, P
Loilome, W
Namwat, N
Techasen, A
2021 Naunyn-Schmiedeberg's archives of pharmacology
10 (394), pp. 2049-2059
18. Derrischalcone suppresses cholangiocarcinoma cells through targeting ROS-mediated mitochondrial cell death, Akt/mTOR, and FAK pathways. Wandee, J
Srinontong, P
Prawan, A
Senggunprai, L
Kongpetch, S
Yenjai, C
Kukongviriyapan, V
2021 Naunyn-Schmiedeberg's archives of pharmacology
9 (394), pp. 1929-1940
19. Targeting FGFR inhibition in cholangiocarcinoma. Goyal, L
Kongpetch, S
Crolley, VE
Bridgewater, J
2021 Cancer treatment reviews
(95), pp. 102170
20. Cucurbitacin B Diminishes Metastatic Behavior of Cholangiocarcinoma Cells by Suppressing Focal Adhesion Kinase. Kaewmeesri, P
Kukongviriyapan, V
Prawan, A
Kongpetch, S
Senggunprai, L
2021 Asian Pacific journal of cancer prevention : APJCP
1 (22), pp. 219-225
21. Anti-metastatic Potential of Natural Triterpenoid Cucurbitacin B Against Cholangiocarcinoma Cells by Targeting Src Protein. Kaewmeesri, P
Pocasap, P
Kukongviriyapan, V
Prawan, A
Kongpetch, S
Senggunprai, L
2022 Integrative cancer therapies
(21), pp. 15347354221124861
22. Therapeutic targeting of ARID1A and PI3K/AKT pathway alterations in cholangiocarcinoma. Tessiri, S
Techasen, A
Kongpetch, S
Namjan, A
Loilome, W
Chan-On, W
Thanan, R
Jusakul, A
2022 PeerJ
(10), pp. e12750
23. Licochalcone A Induces Cholangiocarcinoma Cell Death Via Suppression of Nrf2 and NF-κB Signaling Pathways. Laphanuwat, P
Kongpetch, S
Senggunprai, L
Prawan, A
Kukongviriyapan, V
2022 Asian Pacific journal of cancer prevention : APJCP
1 (23), pp. 115-123
24. Inhibition of FGFR2 enhances chemosensitivity to gemcitabine in cholangiocarcinoma through the AKT/mTOR and EMT signaling pathways. Jaidee, R
Kukongviriyapan, V
Senggunprai, L
Prawan, A
Jusakul, A
Laphanuwat, P
Kongpetch, S
2022 Life sciences
(), pp. 120427
25. All--retinoic acid induces RARB-dependent apoptosis via ROS induction and enhances cisplatin sensitivity by NRF2 downregulation in cholangiocarcinoma cells. Butsri, S
Kukongviriyapan, V
Senggunprai, L
Kongpetch, S
Prawan, A
2022 Oncology letters
6 (23), pp. 179
26. Epidermal growth factor receptor as a potential target of momordin Ic to promote apoptosis of cholangiocarcinoma cells. Senggunprai, L
Kukongviriyapan, V
Prawan, A
Kongpetch, S
2022 The Journal of pharmacy and pharmacology
7 (74), pp. 996-1005
27. FGF10/FGFR2 Signaling: Therapeutically Targetable Vulnerability in Ligand-responsive Cholangiocarcinoma Cells. Oeurn, K
Jusakul, A
Jaidee, R
Kukongviriyapan, V
Senggunprai, L
Prawan, A
Kongpetch, S
2023 In vivo (Athens, Greece)
4 (37), pp. 1628-1637
28. Alteration of STK11 Expression Associated With Cholangiocarcinoma Progression. Sirithawat, P
Jusakul, A
Kongpetch, S
Thanee, M
Srichanchara, P
Panjaroensak, S
Kimawaha, P
Janthamala, S
Aphivatanasiri, C
Techasen, A
2023 In vivo (Athens, Greece)
4 (37), pp. 1638-1648
29. Integrative multiomics enhancer activity profiling identifies therapeutic vulnerabilities in cholangiocarcinoma of different etiologies. Hong, JH
Yong, CH
Heng, HL
Chan, JY
Lau, MC
Chen, J
Lee, JY
Lim, AH
Li, Z
Guan, P
Chu, PL
Boot, A
Ng, SR
Yao, X
Wee, FYT
Lim, JCT
Liu, W
Wang, P
Xiao, R
Zeng, X
Sun, Y
Koh, J
Kwek, XY
Ng, CCY
Klanrit, P
Zhang, Y
Lai, J
Tai, DWM
Pairojkul, C
Dima, S
Popescu, I
Hsieh, SY
Yu, MC
Yeong, J
Kongpetch, S
Jusakul, A
Loilome, W
Tan, P
Tan, J
Teh, BT
2024 Gut
6 (73), pp. 966-984
30. Anticancer properties and metabolomic profiling of Shorea roxburghii extracts toward gastrointestinal cancer cell lines. Janthamala, S
Promraksa, B
Thanee, M
Duenngai, K
Jusakul, A
Kongpetch, S
Kraiklang, R
Thanee, K
Pinlaor, P
Namwat, N
Saya, H
Techasen, A
2024 BMC complementary medicine and therapies
1 (24), pp. 178
31. Network pharmacology- and cell-based assessments identify the FAK/Src pathway as a molecular target for the antimetastatic effect of momordin Ic against cholangiocarcinoma. Pocasap, P
Prawan, A
Kongpetch, S
Senggunprai, L
2024 Heliyon
11 (10), pp. e32352
32. Dual blockage of PI3K-mTOR and FGFR induced autophagic cell death in cholangiocarcinoma cells. Mahaamnad, N
Pocasap, P
Kukongviriyapan, V
Senggunprai, L
Prawan, A
Kongpetch, S
2024 Heliyon
10 (10), pp. e31112
33. Expression and Prognostic Implication of the Nuclear Receptors Farnesoid X Receptor and Pregnane X Receptor in Human Cholangiocarcinoma. Sa-Ngiamwibool, P
Yoshinari, K
Shizu, R
Kongpetch, S
Prawan, A
Senggunprai, L
2025 Cancer diagnosis & prognosis
4 (5), pp. 529-541
34. Synergistic suppression of cholangiocarcinoma cells via DNA damage response and cell cycle arrest by dual targeting PARP and ATM in DNA damage repair pathway. Jaidee, R
Pocasap, P
Jusakul, A
Senggunprai, L
Prawan, A
Hong, JH
Heng, HL
Kukongviriyapan, V
Teh, BT
Kongpetch, S
2025 Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie
(189), pp. 118273
35. Establishment and genomic profiling of cholangiocarcinoma cells with functional characterization. Jaidee, R
Jusakul, A
Pocasap, P
Kukongviriyapan, V
Senggunprai, L
Prawan, A
Loilome, W
Titapun, A
Jareanrat, A
Thanasukarn, V
Khuntikeo, N
Namwat, N
Chamgramol, Y
Thanee, M
Wichian, P
Hong, JH
Guan, P
Heng, HL
Pairojkul, C
Teh, BT
Kongpetch, S
2025 Scientific reports
1 (15), pp. 8621
36. Mutations in Cholangiocarcinoma: Prevalence, Prognostic Value, and G12/G13 Detection in Cell-Free DNA. Thongyoo, P
Chindaprasirt, J
Aphivatanasiri, C
Intarawichian, P
Kunprom, W
Kongpetch, S
Techasen, A
Loilome, W
Namwat, N
Titapun, A
Jusakul, A
2025 Cancer genomics & proteomics
1 (22), pp. 112-126
37. Redox modulation and human bile duct cancer inhibition by curcumin. Suphim, B
Prawan, A
Kukongviriyapan, U
Kongpetch, S
Buranrat, B
Kukongviriyapan, V
Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association
8 (48), pp. 2265-72

Title Authors Year Journal title Cited count
< 2020 2021 2022 2023 2024 2025 รวม
1. Dicoumarol enhances gemcitabine-induced cytotoxicity in high NQ01-expressing cholangiocarcinoma cells Benjaporn Buranrat
Auemduan Prawan
Upa Kukongviriyapan
Sarinya Kongpetch
Veerapol Kukongviriyapan
2010 WORLD JOURNAL OF GASTROENTEROLOGY
19.0 (16.0), pp. 2362.0-2370.0
53 0 0 0 0 0 53
2. Redox modulation and human bile duct cancer inhibition by curcumin Bunliang Suphim
Auemduan Prawan
Upa Kukongviriyapan
Sarinya Kongpetch
Benjaporn Buranrat
Veerapol Kukongviriyapan
2010 FOOD AND CHEMICAL TOXICOLOGY
8-9 (48.0), pp. 2265.0-2272.0
34 0 0 0 0 0 34
3. Crucial Role of Heme Oxygenase-1 on the Sensitivity of Cholangiocarcinoma Cells to Chemotherapeutic Agents Sarinya Kongpetch
Veerapol Kukongviriyapan
Auemduan Prawan
Laddawan Senggunprai
Upa Kukongviriyapan
Benjaporn Buranrat
2012 PLOS ONE
4.0 (7.0), pp.
73 0 0 0 0 0 73
4. Heme oxygenase-1 as a potential target for anticancer treatments in cholangiocarcinoma S. Kongpetch
V. Kukongviriyapan
A. Prawan
L. Senggunprai
U. Kukongviriyapan
O. C. Kiat
W. Chan-On
S. E. Yan
T. B. Tean
2012 FEBS JOURNAL
(279.0), pp. 102.0-102.0
0 0 0 0 0 0 0
5. Luteolin Arrests Cell Cycling, Induces Apoptosis and Inhibits the JAK/STAT3 Pathway in Human Cholangiocarcinoma Cells Ploypailin Aneknan
Veerapol Kukongviriyapan
Auemduan Prawan
Sarinya Kongpetch
Banchob Sripa
Laddawan Senggunprai
2014 ASIAN PACIFIC JOURNAL OF CANCER PREVENTION
12.0 (15.0), pp. 5071.0-5076.0
70 0 0 0 0 0 70
6. Fumarate Hydratase-deficient Cell Line NCCFH1 as a New In Vitro Model of Hereditary Papillary Renal Cell Carcinoma Type 2 Victoria Perrier-Trudova
Bernice Wong Huimin
Sarinya Kongpetch
Dachuan Huang
Pauline Ong
Audrey Le Formal
Song Ling Poon
Ee Yan Siew
Swe Swe Myint
Sophie Gad
Betty Gardie
Sophie Couve
Yu Miin Foong
Yukti Choudhury
Jonathan Poh
Choon Kiat Ong
Chee Keong Toh
Aikseng Ooi
Stephane Richard
Min-Han Tan
Bin Tean Teh
2015 ANTICANCER RESEARCH
12.0 (35.0), pp. 6639.0-6653.0
16 0 0 0 0 0 16
7. Genetics of Opisthorchis viverrini-related cholangiocarcinoma Apinya Jusakul
Sarinya Kongpetch
Bin Tean Teh
2015 CURRENT OPINION IN GASTROENTEROLOGY
3.0 (31.0), pp. 258.0-263.0
38 0 0 0 0 0 38
8. Pathogenesis of cholangiocarcinoma: From genetics to signalling pathways Sarinya Kongpetch
Apinya Jusakul
Choon Kiat Ong
Weng Khong Lim
Steven G. Rozen
Patrick Tan
Bin Tean Teh
2015 BEST PRACTICE & RESEARCH CLINICAL GASTROENTEROLOGY
2.0 (29.0), pp. 233.0-244.0
36 0 0 0 0 0 36
9. Haem oxygenase 1 expression is associated with prognosis in cholangiocarcinoma patients and with drug sensitivity in xenografted mice S. Kongpetch
A. Puapairoj
C. K. Ong
L. Senggunprai
A. Prawan
U. Kukongviriyapan
W. Chan-On
E. Y. Siew
N. Khuntikeo
B. T. Teh
V. Kukongviriyapan
2016 CELL PROLIFERATION
1.0 (49.0), pp. 90.0-101.0
19 0 0 0 0 0 19
10. Downregulation of NAD(P)H:quinone oxidoreductase 1 inhibits proliferation, cell cycle and migration of cholangiocarcinoma cells Siriwoot Butsri
Veerapol Kukongviriyapan
Laddawan Senggunprai
Sarinya Kongpetch
Ponsilp Zeekpudsa
Auemduan Prawan
2017 ONCOLOGY LETTERS
6.0 (13.0), pp. 4540.0-4548.0
32 0 0 0 0 0 32
11. SILENCING OF NAD(P) H: QUINONE OXIDOREDUCTASE 1 DECREASES THE CELL GROWTH AND MIGRATION OF CHOLANGIOCARCINOMA CELLS Auemduan Prawan
Siriwoot Butsri
Veerapol Kukongviriyapan
Laddawan Senggunprai
Sarinya Kongpetch
2017 DRUG METABOLISM AND PHARMACOKINETICS
1.0 (32.0), pp. S84-S84
0 0 0 0 0 0 0
12. Antitumor effects of candidone, a natural flavanone derivative, in cholangiocarcinoma cells Sarinya Kongpetch
Benjawan Kurasug
Veerapol Kukongviriyapan
Auemduan Prawan
Laddawan Senggunprai
Chavi Yenjai
2018 CANCER SCIENCE
(109.0), pp. 558.0-558.0
0 0 0 0 0 0 0
13. Antitumor effects of candidone extracted from Derris indica (Lamk) Bennet in cholangiocarcinoma cells Benjawan Kurasug
Veerapol Kukongviriyapan
Auemduan Prawan
Chavi Yenjai
Sarinya Kongpetch
2018 TROPICAL JOURNAL OF PHARMACEUTICAL RESEARCH
7.0 (17.0), pp. 1337.0-1343.0
1 0 0 0 0 0 1
14. Cucurbitacin B induces apoptosis in human cholangiocarcinoma cells by modulation of apoptotic-related proteins Sirinapha Klungsaeng
Laddawan Senggunprai
Veerapol Kukongviriyapan
Auemduan Prawan
Sarinya Kongpetch
2018 CANCER SCIENCE
(109.0), pp. 1047.0-1047.0
0 0 0 0 0 0 0
15. Metformin enhances cisplatin induced inhibition of cholangiocarcinoma cells via AMPK-mTOR pathway Jaroon Wandee
Auemduan Prawan
Laddawan Senggunprai
Sarinya Kongpetch
Ornanong Tusskorn
Veerapol Kukongviriyapan
2018 LIFE SCIENCES
(207.0), pp. 172.0-183.0
33 0 0 0 0 0 33
16. Migration of Pancreatic Cancer cell BxPC-3 is suppressed by ROS Jaroon Wandee
Auemduan Prawan
Laddawan Senggunprai
Sarinya Kongpetch
Veerapol Kukongviriyapan
2018 CANCER SCIENCE
(109.0), pp. 246.0-246.0
0 0 0 0 0 0 0
17. Whole-Genome and Epigenomic Landscapes of Etiologically Distinct Subtypes of Cholangiocarcinoma Apinya Jusakul
Ioana Cutcutache
Chern Han Yong
Jing Quan Lim
Mi Ni Huang
Nisha Padmanabhan
Vishwa Nellore
Sarinya Kongpetch
Alvin Wei Tian Ng
Ley Moy Ng
Su Pin Choo
Swe Swe Myint
Raynoo Thanan
Sanjanaa Nagarajan
Weng Khong Lim
Cedric Chuan Young Ng
Arnoud Boot
Mo Liu
Choon Kiat Ong
Vikneswari Rajasegaran
Stefanus Lie
Alvin Soon Tiong Lim
Tse Hui Lim
Jing Tan
Jia Liang Loh
John R. McPherson
Narong Khuntikeo
Vajaraphongsa Bhudhisawasdi
Puangrat Yongvanit
Sopit Wongkham
Yasushi Totoki
Hiromi Nakamura
Yasuhito Arai
Satoshi Yamasaki
Pierce Kah-Hoe Chow
Alexander Yaw Fui Chung
London Lucien Peng Jin Ooi
Kiat Hon Lim
Simona Dima
Dan G. Duda
Irinel Popescu
Philippe Broet
Sen-Yung Hsieh
Ming-Chin Yu
Aldo Scarpa
Jiaming Lai
Di-Xian Luo
Andre Lopes Carvalho
Andre Luiz Vettore
Hyungjin Rhee
Young Nyun Park
Ludmil B. Alexandrov
Raluca Gordan
Steven G. Rozen
Tatsuhiro Shibata
Chawalit Pairojkul
Bin Tean Teh
Patrick Tan
2018 CANCER SCIENCE
(109.0), pp. 720.0-720.0
243 0 0 0 0 0 243
18. Cucurbitacin B induces mitochondrial-mediated apoptosis pathway in cholangiocarcinoma cells via suppressing focal adhesion kinase signaling Sirinapha Klungsaeng
Veerapol Kukongviriyapan
Auemduan Prawan
Sarinya Kongpetch
Laddawan Senggunprai
2019 NAUNYN-SCHMIEDEBERGS ARCHIVES OF PHARMACOLOGY
3.0 (392.0), pp. 271.0-278.0
8 0 0 0 0 0 8
19. Metformin sensitizes cholangiocarcinoma cell to cisplatin-induced cytotoxicity through oxidative stress mediated mitochondrial pathway Jaroon Wandee
Auemduan Prawan
Laddawan Senggunprai
Sarinya Kongpetch
Veerapol Kukongviriyapan
2019 LIFE SCIENCES
(217.0), pp. 155.0-163.0
22 0 0 0 0 0 22
20. Myricetin ameliorates cytokine-induced migration and invasion of cholangiocarcinoma cells via suppression of STAT3 pathway Pattarapon Tuponchai
Veerapol Kukongviriyapan
Auemduan Prawan
Sarinya Kongpetch
Laddawan Senggunprai
2019 JOURNAL OF CANCER RESEARCH AND THERAPEUTICS
1.0 (15.0), pp. 157.0-163.0
15 0 0 0 0 0 15
21. Lack of Targetable FGFR2 Fusions in Endemic Fluke-Associated Cholangiocarcinoma Sarinya Kongpetch
Apinya Jusakul
Jing Quan Lim
Cedric Chuan Young Ng
Jason Yongsheng Chan
Vikneswari Rajasegaran
Tse Hui Lim
Kiat Hon Lim
Su Pin Choo
Simona Dima
Irinel Popescu
Dan G. Duda
Veerapol Kukongviriyapan
Narong Khuntikeo
Chawalit Pairojkul
Steven G. Rozen
Patrick Tan
Bin Tean Teh
2020 JCO GLOBAL ONCOLOGY
(6.0), pp. 628.0-638.0
7 0 0 0 0 0 7
22. Phenformin inhibits proliferation, invasion, and angiogenesis of cholangiocarcinoma cells via AMPK-mTOR and HIF-1A pathways Rattanaporn Jaidee
Sarinya Kongpetch
Laddawan Senggunprai
Auemduan Prawan
Upa Kukongviriyapan
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2020 NAUNYN-SCHMIEDEBERGS ARCHIVES OF PHARMACOLOGY
9.0 (393.0), pp. 1681.0-1690.0
4 0 0 0 0 0 4
23. Rice bran hydrolysates induce immunomodulatory effects by suppression of chemotaxis, and modulation of cytokine release and cell-mediated cytotoxicity Suphanthip Phusrisom
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Auemduan Prawan
Sarinya Kongpetch
Upa Kukongviriyapan
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Ronnachai Changsri
Veerapol Kukongviriyapan
2020 ASIAN PACIFIC JOURNAL OF TROPICAL BIOMEDICINE
10.0 (10.0), pp. 470.0-478.0
0 0 0 0 0 0 0
24. Targeted Modulation of FAK/PI3K/PDK1/AKT and FAK/p53 Pathways by Cucurbitacin B for the Antiproliferation Effect Against Human Cholangiocarcinoma Cells Sirinapha Klungsaeng
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Auemduan Prawan
Sarinya Kongpetch
Laddawan Senggunprai
2020 AMERICAN JOURNAL OF CHINESE MEDICINE
6.0 (48.0), pp. 1475.0-1489.0
2 0 0 0 0 0 2
25. Anti-tumor activity of rice bran hydrolysates on migration, invasion and angiogenesis Suphanthip Phusrisom
Laddawan Senggunprai
Auemduan Prawan
Sarinya Kongpetch
Upa Kukongviriyapan
Supawan Thawornchinsombut
Sirithon Siriamornpun
Theeraphan Chumroenphat
Ronnachai Changsri
Veerapol Kukongviriyapan
2021 ASIAN PACIFIC JOURNAL OF TROPICAL BIOMEDICINE
7.0 (11.0), pp. 317.0-326.0
0 0 0 0 0 0 0
26. Arctigenin inhibits cholangiocarcinoma progression by regulating cell migration and cell viability via the N-cadherin and apoptosis pathway Sutthiwan Janthamala
Apinya Jusakul
Sarinya Kongpetch
Phongsaran Kimawaha
Poramate Klanrit
Watcharin Loilome
Nisana Namwat
Anchalee Techasen
2021 NAUNYN-SCHMIEDEBERGS ARCHIVES OF PHARMACOLOGY
10.0 (394.0), pp. 2049.0-2059.0
0 0 0 0 0 0 0
27. Derrischalcone suppresses cholangiocarcinoma cells through targeting ROS-mediated mitochondrial cell death, Akt/mTOR, and FAK pathways Jaroon Wandee
Piyarat Srinontong
Auemduan Prawan
Laddawan Senggunprai
Sarinya Kongpetch
Chavi Yenjai
Veerapol Kukongviriyapan
2021 NAUNYN-SCHMIEDEBERGS ARCHIVES OF PHARMACOLOGY
9.0 (394.0), pp. 1929.0-1940.0
1 0 0 0 0 0 1
28. Diagnostic and Prognostic Value of Circulating Cell-Free DNA for Cholangiocarcinoma Preawwalee Wintachai
Jing Quan Lim
Anchalee Techasen
Worachart Lert-Itthiporn
Sarinya Kongpetch
Watcharin Loilome
Jarin Chindaprasirt
Attapol Titapun
Nisana Namwat
Narong Khuntikeo
Apinya Jusakul
2021 DIAGNOSTICS
6.0 (11.0), pp.
0 0 0 0 0 0 0
29. Targeting FGFR inhibition in cholangiocarcinoma Lipika Goyal
Sarinya Kongpetch
Valerie E. Crolley
John Bridgewater
2021 CANCER TREATMENT REVIEWS
(95.0), pp.
9 0 0 0 0 0 9

Title Authors Year Journal title
1. Inhibition of Heme Oxygenase-1 Enhanced Antitumor Effect of Gemcitabine in Cholangiocarcinoma Sarinya Kongpetch 2013 Srinagarind Medical Journal
(28 No 4), pp. 202

ชื่อโครงการ Authors ประเภทโครงการ ปีงบประมาณ ทุนวิจับ
1. Retinoid X receptor และ retinoic acid receptor: บทบาทและศักยภาพในการเป็นเป้าหมายของการรักษามะเร็งท่อน้ำดี. ผศ.ดร. เอื้อมเดือน ประวาฬ
ศ.ดร. วีรพล คู่คงวิริยพันธุ์
รศ.ดร. ลัดดาวัลย์ เส็งกันไพร
ผศ.ดร. ศริญญา คงเพชร
โครงการย่อย ภายใต้ชุดโครงการวิจัย 2561 ทุนงบประมาณแผ่นดินประจำปี 2561 (งบบูรณาการวิจัยและนวัตกรรม)
2. การปรับเปลี่ยนภาวะรีดอกซ์ภายในเซลล์ต่อการอยู่รอดและฟื้นฟูตัวเองเซลล์มะเร็งท่อน้ำดี ศ.ดร. วีรพล คู่คงวิริยพันธุ์
รศ.ดร. ลัดดาวัลย์ เส็งกันไพร
ผศ.ดร. ศริญญา คงเพชร
ผศ.ดร. เอื้อมเดือน ประวาฬ
โครงการย่อย ภายใต้ชุดโครงการวิจัย 2561 ทุนงบประมาณแผ่นดินประจำปี 2561 (งบบูรณาการวิจัยและนวัตกรรม)
3. ผลของสารสกัดจากClausena harmandianaในการยับยั้งยีนในวิถีantioxidant-response-elementที่ก่อมะเร็งท่อน้ำดี ผศ.ดร. ศริญญา คงเพชร
ผศ.ดร. เอื้อมเดือน ประวาฬ
ศ.ดร. วีรพล คู่คงวิริยพันธุ์
รศ.ดร. ลัดดาวัลย์ เส็งกันไพร
โครงการย่อย ภายใต้ชุดโครงการวิจัย 2561 ทุนงบประมาณแผ่นดินประจำปี 2561 (งบบูรณาการวิจัยและนวัตกรรม)
4. สารสกัดจาก Momordicacharantia Linn. มีเคมีบำบัดฤทธิ์สูงยับยั้ง transcription factor ก่อมะเร็งในมะเร็งท่อน้ำดี. รศ.ดร. ลัดดาวัลย์ เส็งกันไพร
ผศ.ดร. ศริญญา คงเพชร
ผศ.ดร. เอื้อมเดือน ประวาฬ
ศ.ดร. วีรพล คู่คงวิริยพันธุ์
โครงการย่อย ภายใต้ชุดโครงการวิจัย 2561 ทุนงบประมาณแผ่นดินประจำปี 2561 (งบบูรณาการวิจัยและนวัตกรรม)
5. การบำบัดทางเภสัชวิทยาโดยมีเป้าหมายที่วิถีสัญญาณก่อมะเร็ง: กลยุทธ์การรักษาที่มีคุณค่าสำหรับมะเร็งท่อน้ำดี ผศ.ดร. ศริญญา คงเพชร
รศ.ดร. ลัดดาวัลย์ เส็งกันไพร
ผศ.ดร. เอื้อมเดือน ประวาฬ
ชุดโครงการวิจัย 2562 ทุนงบประมาณแผ่นดินประจำปี 2562 (งบบูรณาการวิจัยและนวัตกรรม)

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