
| Title | Author | Year | SCOPUS | PUBMED | ISI | TCI | |
|---|---|---|---|---|---|---|---|
| 1. | Bacopa monnieri and its constituents is hypotensive in anaesthetized rats and vasodilator in various artery types | Ingkaninan, K. Maneesai, P. |
2011 | ||||
| 2. | Asiatic acid improves vascular functions in mesenteric vascular beds isolated from high-carbohydrate, high-fat diets-induced metabolic syndrome rats | P. Pakdeechote P. Maneesai U. Kukongviriyapan P. Prachaney P. Tangsucharit |
2014 | ||||
| 3. | Asiatic acid attenuates renin-angiotensin system activation and improves vascular function in high-carbohydrate, high-fat diet fed rats | Maneesai, P. Bunbupha, S. Kukongviriyapan, U. Prachaney, P. Tangsucharit, P. Kukongviriyapan, V. Pakdeechote, P. |
2016 | ||||
| 4. | Synergistic antihypertensive effect of carthamus tinctorius L. extract and captopril in L-NAME-induced hypertensive rats via restoration of eNOS and AT |
Maneesai, P. Bunbupha, S. Kukongviriyapan, U. Kukongviriyapan, V. Tangsucharit, P. Prachaney, P. Pakdeechote, P. |
2016 | ||||
| 5. | Effect of asiatic acid on the Ang II-AT |
Maneesai, P. Bunbupha, S. Kukongviriyapan, U. Senggunprai, L. Kukongviriyapan, V. Prachaney, P. Pakdeechote, P. |
2017 | ||||
| 6. | Carthamus tinctorius L. extract improves hemodynamic and vascular alterations in a rat model of renovascular hypertension through Ang II-AT |
Bunbupha, S. Maneesai, P. Berkban, T. Kukongviriyapan, U. Kukongviriyapan, V. Prachaney, P. Pakdeechote, P. |
2018 | ||||
| 7. | Hesperidin prevents nitric oxide deficiency-induced cardiovascular remodeling in rats via suppressing TGF-β1 and MMPsprotein expression | Maneesai, P. Bunbupha, S. Berkban, T. Kukongviriyapan, U. Kukongviriyapan, V. Prachaney, P. Pakdeechote, P. |
2018 | ||||
| 8. | Hesperidin Suppresses Renin-Angiotensin System Mediated NOX2 Over-Expression and Sympathoexcitation in 2K-1C Hypertensive Rats | Maneesai, P. Bunbupha, S. Prachaney, P. Kukongviriyapan, U. Kukongviriyapan, V. Pakdeechote, P. |
2018 | ||||
| 9. | Carthamus Tinctorius L. extract attenuates cardiac remodeling in L-NAME-induced hypertensive rats by inhibiting the NADPH oxidase-mediated TGF-β1 and MMP-9 pathway | Bunbupha, S. Pakdeechote, P. Maneesai, P. Prachaney, P. Boonprom, P. |
2019 | ||||
| 10. | Nobiletin alleviates vascular alterations through modulation of Nrf-2/HO-1 and MMP pathways in l-NAME induced hypertensive rats | Maneesai, P. Kukongviriyapan, U. Prachaney, P. Pakdeechote, P. |
2019 | ||||
| 11. | Cratoxylum Formosum extract exhibits antihypertensive effects via suppressing the renin-angiotensin cascade in hypertensive rats | Maneesai, P. Kukongviriyapan, U. Prachaney, P. Pakdeechote, P. |
2020 | ||||
| 12. | Nobiletin ameliorates high-fat diet-induced vascular and renal changes by reducing inflammation with modulating AdipoR1 and TGF-β1 expression in rats | Bunbupha, S. Maneesai, P. Pakdeechote, P. |
2020 | ||||
| 13. | Syzygium gratum extract alleviates vascular alterations in hypertensive rats | Pakdeechote, P. Sakonsinsiri, C. Phetcharaburanin, J. Bunbupha, S. Maneesai, P. |
2020 | ||||
| 14. | Tangeretin ameliorates erectile and testicular dysfunction in a rat model of hypertension | Maneesai, P. Kukongviriyapan, U. Tong-Un, T. Prachaney, P. Pakdeechote, P. |
2020 | ||||
| 15. | Tangeretin mitigates l-NAME-induced ventricular dysfunction and remodeling through the AT |
Maneesai, P. Bunbupha, S. Kukongviriyapan, U. Tong-Un, T. Pakdeechote, P. |
2020 | ||||
| 16. | Butterfly pea flower (Clitoria ternatea linn.) extract ameliorates cardiovascular dysfunction and oxidative stress in nitric oxide-deficient hypertensive rats | Maneesai, P. Potue, P. Bunbupha, S. Pakdeechote, P. |
2021 | ||||
| 17. | Cratoxylum formosum dyer extract alleviates testicular damage in hypertensive rats | Maneesai, P. Bunbupha, S. Settheetham-Ishida, W. Pakdeechote, P. |
2021 | ||||
| 18. | Diosmetin ameliorates vascular dysfunction and remodeling by modulation of nrf2/ho-1 and p-jnk/p-nf-κb expression in hypertensive rats | Meephat, S. Potue, P. Bunbupha, S. Pakdeechote, P. Maneesai, P. |
2021 | ||||
| 19. | Diosmetin attenuates metabolic syndrome and left ventricular alterations: Via the suppression of angiotensin II/AT 1 receptor/gp91 phox/p-NF-κB protein expression in high-fat diet fed rats | Bunbupha, S. Maneesai, P. Pakdeechote, P. |
2021 | ||||
| 20. | Galangin alleviates vascular dysfunction and remodelling through modulation of the TNF-R1, p-NF-κB and VCAM-1 pathways in hypertensive rats | Chaihongsa, N. Maneesai, P. Sangartit, W. Potue, P. Bunbupha, S. Pakdeechote, P. |
2021 | ||||
| 21. | Galangin resolves cardiometabolic disorders through modulation of adipor1, cox-2, and nf-κb expression in rats fed a high-fat diet | Khamseekaew, J. Bunbupha, S. Prachaney, P. Maneesai, P. Pakdeechote, P. |
2021 | ||||
| 22. | Genistein prevents nitric oxide deficiency-induced cardiac dysfunction and remodeling in rats | Maneesai, P. Bunbupha, S. Tong-Un, T. Pakdeechote, P. |
2021 | ||||
| 23. | Hesperidin ameliorates signs of the metabolic syndrome and cardiac dysfunction via IRS/Akt/GLUT4 signaling pathway in a rat model of diet-induced metabolic syndrome | Bunbupha, S. Prachaney, P. Maneesai, P. Pakdeechote, P. |
2021 | ||||
| 24. | Hesperidin inhibits L-NAME-induced vascular and renal alterations in rats by suppressing the renin–angiotensin system, transforming growth factor-β1, and oxidative stress | Bunbupha, S. Potue, Maneesai, P. Pakdeechote, P. |
2021 | ||||
| 25. | Imperatorin alleviates metabolic and vascular alterations in high-fat/high-fructose diet-fed rats by modulating adiponectin receptor 1, eNOS, and p47phox expression | Bunbupha, S. Maneesai, P. Pakdeechote, P. |
2021 | ||||
| 26. | Nobiletin alleviates high-fat diet-induced nonalcoholic fatty liver disease by modulating AdipoR1 and gp91phox expression in rats | Bunbupha, S. Pakdeechote, P. Maneesai, P. |
2021 | ||||
| 27. | Cardiorenal dysfunction and hypertrophy induced by renal artery occlusion are normalized by galangin treatment in rats | Chaihongsa, N. Maneesai, P. Sangartit, W. Rattanakanokchai, S. Potue, P. Khamseekaew, J. Bunbupha, S. Pakdeechote, P. |
2022 | ||||
| 28. | Clitoria ternatea (Linn.) flower extract attenuates vascular dysfunction and cardiac hypertrophy via modulation of Ang II/AT |
Maneesai, P. Chaihongsa, N. Iampanichakul, M. Meephat, S. Bunbupha, S. Wunpathe, C. Pakdeechote, P. |
2022 | ||||
| 29. | Effects of Thai native chicken breast meat consumption on serum uric acid level, biochemical parameters, and antioxidant activities in rats | Potue, P. Chiangsaen, P. Maneesai, P. Khamseekaew, J. Pakdeechote, P. |
2022 | ||||
| 30. | Genistein alleviates renin-angiotensin system mediated vascular and kidney alterations in renovascular hypertensive rats | Poasakate, A. Maneesai, P. Potue, P. Bunbupha, S. Tong-Un, T. Settheetham-Ishida, W. Khamseekaew, J. Pakdeechote, P. |
2022 | ||||
| 31. | Hesperidin alleviates vascular dysfunction and remodelling in high-fat/high-fructose diet-fed rats by modulating oxidative stress, inflammation, AdipoR1, and eNOS expression | Apaijit, K. | 2022 | ||||
| 32. | Imperatorin attenuates cardiac remodelling and dysfunction in high-fat/high-fructose diet-fed rats by modulating oxidative stress, inflammation, and Nrf-2 expression | Pakdeechote, P. Maneesai, P. Meephat, S. Rattanakanokchai, S. Wunpathe, C. Bunbupha, S. |
2022 | ||||
| 33. | Nobiletin resolves left ventricular and renal changes in 2K-1C hypertensive rats | Iampanichakul, M. Poasakate, A. Potue, P. Rattanakanokchai, S. Maneesai, P. Prachaney, P. Settheetham-Ishida, W. Pakdeechote, P. |
2022 | ||||
| 34. | Cardiovascular complications are resolved by tuna protein hydrolysate supplementation in rats fed with a high-fat diet | Maneesai, P. | 2023 | ||||
| 35. | Kaempferol protects against cardiovascular abnormalities induced by nitric oxide deficiency in rats by suppressing the TNF-α pathway | Maneesai, P. Potue, P. Khamseekaew, J. Sangartit, W. Rattanakanokchai, S. Poasakate, A. Pakdeechote, P. |
2023 | ||||
| 36. | Limonin ameliorates cardiovascular dysfunction and remodeling in hypertensive rats | Iampanichakul, M. Potue, P. Rattanakanokchai, S. Maneesai, P. Khamseekaew, J. Settheetham-Ishida, W. Pakdeechote, P. |
2023 | ||||
| 37. | Limonin mitigates cardiometabolic complications in rats with metabolic syndrome through regulation of the IRS-1/GLUT4 signalling pathway | Maneesai, P. Jan-o, B. Poasakate, A. Rattanakanokchai, S. Tong-Un, T. Phuthong, S. Pakdeechote, P. |
2023 | ||||
| 38. | Mitigation effect of galangin against aortic dysfunction and hypertrophy in rats with metabolic syndrome | Pakdeechote, P. Poasakate, A. Prasatthong, P. Potue, P. Khamseekaew, J. Maneesai, P. |
2023 | ||||
| 39. | Kaempferol Ameliorates Renal Remodelling by Inhibiting the Renin-Angiotensin System Cascade in Hypertensive Rats | Maneesai, P. Iampanichakul, M. Potue, P. Khamseekaew, J. Tong-Un, T. Prachaney, P. Settheetham-Ishida, W. Pakdeechote, P. |
2024 | ||||
| 40. | Cannabis sativa L. Leaf Oil Displays Cardiovascular Protective Effects in Hypertensive Rats | Khamseekaew, J. Duangjinda, M. Maneesai, P. Labjit, C. Rattanakanokchai, S. |
2025 | ||||
| 41. | Diosmin Prevents L-NAME-Induced Vascular Dysfunction and Remodeling in Rats via Suppressing the TGF-β1 Downstream Signaling Pathway | Saengnak, B. Samrid, R. Berkban, T. Maneesai, P. Pakdeechote, P. Mothong, W. Prachaney, P. |
2025 | ||||
| 42. | Luteolin Relieves Metabolic Dysfunction-Associated Fatty Liver Disease Caused by a High-Fat Diet in Rats Through Modulating the AdipoR1/AMPK/PPARγ Signaling Pathway | Taweesap, P. Potue, P. Khamseekaew, J. Iampanichakul, M. Jan-O, B. Pakdeechote, P. Maneesai, P. |
2025 | ||||
| 43. | Tangeretin Unravels Metabolic Dysfunction-Associated Fatty Liver Disease in Rats by Enhancing the IRS/Akt Pathway | Yuenyong, I. Potue, P. Maneesai, P. Khamseekaew, J. Manimmanakorn, A. Iampanichakul, M. Pakdeechote, P. |
2025 | ||||
| 44. | The Alleviative Effect of Naringin Against Cardiovascular Dysfunction and Remodeling in Hypertensive Rats by Suppressing the Angiotensin II Pathway | Khamseekaew, J. Iampanichakul, M. Potue, P. Maneesai, P. Tangsucharit, P. Rattanakanokchai, S. Pakdeechote, P. |
2025 | ||||
| 45. | Unveiling the molecular mechanism of diosmin to resolve cardiovascular dysfunction and remodeling in hypertension | Iampanichakul, M. Mowong, C. Rachiwong, N. Potue, P. Khamseekaew, J. Rattanakanokchai, S. Maneesai, P. Pocasap, P. Pakdeechote, P. |
2025 | Count | 44 | 0 | 1 | 0 |
| Title | Authors | Year | Publication name | Cited count | ||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| < 2020 | 2021 | 2022 | 2023 | 2024 | 2025 | Total | ||||||
| 1. | Bacopa monnieri and its constituents is hypotensive in anaesthetized rats and vasodilator in various artery types | Ingkaninan, K. Maneesai, P. |
2011 |
Journal of Ethnopharmacology 1 (137), pp. 790-795 |
||||||||
| 2. | Asiatic acid attenuates renin-angiotensin system activation and improves vascular function in high-carbohydrate, high-fat diet fed rats | Maneesai, P. Bunbupha, S. Kukongviriyapan, U. Prachaney, P. Tangsucharit, P. Kukongviriyapan, V. Pakdeechote, P. |
2016 |
BMC Complementary and Alternative Medicine 1 (16), pp. |
||||||||
| 3. | Synergistic antihypertensive effect of carthamus tinctorius L. extract and captopril in L-NAME-induced hypertensive rats via restoration of eNOS and AT<inf>1</inf>R expression | Maneesai, P. Bunbupha, S. Kukongviriyapan, U. Kukongviriyapan, V. Tangsucharit, P. Prachaney, P. Pakdeechote, P. |
2016 |
Nutrients 3 (8), pp. |
||||||||
| 4. | Effect of asiatic acid on the Ang II-AT<inf>1</inf>R-NADPH oxidase-NF-κB pathway in renovascular hypertensive rats | Maneesai, P. Bunbupha, S. Kukongviriyapan, U. Senggunprai, L. Kukongviriyapan, V. Prachaney, P. Pakdeechote, P. |
2017 |
Naunyn-Schmiedeberg's Archives of Pharmacology 10 (390), pp. 1073-1083 |
||||||||
| 5. | Carthamus tinctorius L. extract improves hemodynamic and vascular alterations in a rat model of renovascular hypertension through Ang II-AT<inf>1</inf>R-NADPH oxidase pathway | Bunbupha, S. Maneesai, P. Berkban, T. Kukongviriyapan, U. Kukongviriyapan, V. Prachaney, P. Pakdeechote, P. |
2018 |
Annals of Anatomy (216), pp. 82-89 |
||||||||
| 6. | Hesperidin prevents nitric oxide deficiency-induced cardiovascular remodeling in rats via suppressing TGF-β1 and MMPsprotein expression | Maneesai, P. Bunbupha, S. Berkban, T. Kukongviriyapan, U. Kukongviriyapan, V. Prachaney, P. Pakdeechote, P. |
2018 |
Nutrients 10 (10), pp. |
||||||||
| 7. | Hesperidin Suppresses Renin-Angiotensin System Mediated NOX2 Over-Expression and Sympathoexcitation in 2K-1C Hypertensive Rats | Maneesai, P. Bunbupha, S. Prachaney, P. Kukongviriyapan, U. Kukongviriyapan, V. Pakdeechote, P. |
2018 |
American Journal of Chinese Medicine 4 (46), pp. 751-767 |
||||||||
| 8. | Carthamus Tinctorius L. extract attenuates cardiac remodeling in L-NAME-induced hypertensive rats by inhibiting the NADPH oxidase-mediated TGF-β1 and MMP-9 pathway | Bunbupha, S. Pakdeechote, P. Maneesai, P. Prachaney, P. Boonprom, P. |
2019 |
Annals of Anatomy (222), pp. 120-128 |
||||||||
| 9. | Nobiletin alleviates vascular alterations through modulation of Nrf-2/HO-1 and MMP pathways in l-NAME induced hypertensive rats | Maneesai, P. Kukongviriyapan, U. Prachaney, P. Pakdeechote, P. |
2019 |
Food and Function 4 (10), pp. 1880-1892 |
||||||||
| 10. | Cratoxylum Formosum extract exhibits antihypertensive effects via suppressing the renin-angiotensin cascade in hypertensive rats | Maneesai, P. Kukongviriyapan, U. Prachaney, P. Pakdeechote, P. |
2020 |
Journal of Functional Foods (73), pp. |
||||||||
| 11. | Nobiletin ameliorates high-fat diet-induced vascular and renal changes by reducing inflammation with modulating AdipoR1 and TGF-β1 expression in rats | Bunbupha, S. Maneesai, P. Pakdeechote, P. |
2020 |
Life Sciences (260), pp. |
||||||||
| 12. | Syzygium gratum extract alleviates vascular alterations in hypertensive rats | Pakdeechote, P. Sakonsinsiri, C. Phetcharaburanin, J. Bunbupha, S. Maneesai, P. |
2020 |
Medicina (Lithuania) 10 (56), pp. 1-12 |
||||||||
| 13. | Tangeretin ameliorates erectile and testicular dysfunction in a rat model of hypertension | Maneesai, P. Kukongviriyapan, U. Tong-Un, T. Prachaney, P. Pakdeechote, P. |
2020 |
Reproductive Toxicology (96), pp. 1-10 |
||||||||
| 14. | Tangeretin mitigates l-NAME-induced ventricular dysfunction and remodeling through the AT<inf>1</inf>R/pERK1/2/pJNK signaling pathway in rats | Maneesai, P. Bunbupha, S. Kukongviriyapan, U. Tong-Un, T. Pakdeechote, P. |
2020 |
Food and Function 2 (11), pp. 1322-1333 |
||||||||
| 15. | Butterfly pea flower (Clitoria ternatea linn.) extract ameliorates cardiovascular dysfunction and oxidative stress in nitric oxide-deficient hypertensive rats | Maneesai, P. Potue, P. Bunbupha, S. Pakdeechote, P. |
2021 |
Antioxidants 4 (10), pp. |
||||||||
| 16. | Cratoxylum formosum dyer extract alleviates testicular damage in hypertensive rats | Maneesai, P. Bunbupha, S. Settheetham-Ishida, W. Pakdeechote, P. |
2021 |
Andrologia 2 (53), pp. |
||||||||
| 17. | Diosmetin ameliorates vascular dysfunction and remodeling by modulation of nrf2/ho-1 and p-jnk/p-nf-κb expression in hypertensive rats | Meephat, S. Potue, P. Bunbupha, S. Pakdeechote, P. Maneesai, P. |
2021 |
Antioxidants 9 (10), pp. |
||||||||
| 18. | Diosmetin attenuates metabolic syndrome and left ventricular alterations: Via the suppression of angiotensin II/AT 1 receptor/gp<sup>91 phox</sup>/p-NF-κB protein expression in high-fat diet fed rats | Bunbupha, S. Maneesai, P. Pakdeechote, P. |
2021 |
Food and Function 4 (12), pp. 1469-1481 |
||||||||
| 19. | Galangin alleviates vascular dysfunction and remodelling through modulation of the TNF-R1, p-NF-κB and VCAM-1 pathways in hypertensive rats | Chaihongsa, N. Maneesai, P. Sangartit, W. Potue, P. Bunbupha, S. Pakdeechote, P. |
2021 |
Life Sciences (285), pp. |
||||||||
| 20. | Galangin resolves cardiometabolic disorders through modulation of adipor1, cox-2, and nf-κb expression in rats fed a high-fat diet | Khamseekaew, J. Bunbupha, S. Prachaney, P. Maneesai, P. Pakdeechote, P. |
2021 |
Antioxidants 5 (10), pp. |
||||||||
| 21. | Genistein prevents nitric oxide deficiency-induced cardiac dysfunction and remodeling in rats | Maneesai, P. Bunbupha, S. Tong-Un, T. Pakdeechote, P. |
2021 |
Antioxidants 2 (10), pp. 1-17 |
||||||||
| 22. | Hesperidin ameliorates signs of the metabolic syndrome and cardiac dysfunction via IRS/Akt/GLUT4 signaling pathway in a rat model of diet-induced metabolic syndrome | Bunbupha, S. Prachaney, P. Maneesai, P. Pakdeechote, P. |
2021 |
European Journal of Nutrition 2 (60), pp. 833-848 |
||||||||
| 23. | Hesperidin inhibits L-NAME-induced vascular and renal alterations in rats by suppressing the renin–angiotensin system, transforming growth factor-β1, and oxidative stress | Bunbupha, S. Potue, Maneesai, P. Pakdeechote, P. |
2021 |
Clinical and Experimental Pharmacology and Physiology 3 (48), pp. 412-421 |
||||||||
| 24. | Imperatorin alleviates metabolic and vascular alterations in high-fat/high-fructose diet-fed rats by modulating adiponectin receptor 1, eNOS, and p47<sup>phox</sup> expression | Bunbupha, S. Maneesai, P. Pakdeechote, P. |
2021 |
European Journal of Pharmacology (899), pp. |
||||||||
| 25. | Nobiletin alleviates high-fat diet-induced nonalcoholic fatty liver disease by modulating AdipoR1 and gp91<sup>phox</sup> expression in rats | Bunbupha, S. Pakdeechote, P. Maneesai, P. |
2021 |
Journal of Nutritional Biochemistry (87), pp. |
||||||||
| 26. | Cardiorenal dysfunction and hypertrophy induced by renal artery occlusion are normalized by galangin treatment in rats | Chaihongsa, N. Maneesai, P. Sangartit, W. Rattanakanokchai, S. Potue, P. Khamseekaew, J. Bunbupha, S. Pakdeechote, P. |
2022 |
Biomedicine and Pharmacotherapy (152), pp. |
||||||||
| 27. | Clitoria ternatea (Linn.) flower extract attenuates vascular dysfunction and cardiac hypertrophy via modulation of Ang II/AT<inf>1</inf>R/TGF-β1 cascade in hypertensive rats | Maneesai, P. Chaihongsa, N. Iampanichakul, M. Meephat, S. Bunbupha, S. Wunpathe, C. Pakdeechote, P. |
2022 |
Journal of the Science of Food and Agriculture 6 (102), pp. 2253-2261 |
||||||||
| 28. | Effects of Thai native chicken breast meat consumption on serum uric acid level, biochemical parameters, and antioxidant activities in rats | Potue, P. Chiangsaen, P. Maneesai, P. Khamseekaew, J. Pakdeechote, P. |
2022 |
Scientific Reports 1 (12), pp. |
||||||||
| 29. | Genistein alleviates renin-angiotensin system mediated vascular and kidney alterations in renovascular hypertensive rats | Poasakate, A. Maneesai, P. Potue, P. Bunbupha, S. Tong-Un, T. Settheetham-Ishida, W. Khamseekaew, J. Pakdeechote, P. |
2022 |
Biomedicine and Pharmacotherapy (146), pp. |
||||||||
| 30. | Hesperidin alleviates vascular dysfunction and remodelling in high-fat/high-fructose diet-fed rats by modulating oxidative stress, inflammation, AdipoR1, and eNOS expression | Apaijit, K. | 2022 |
Tissue and Cell (78), pp. |
||||||||
| 31. | Imperatorin attenuates cardiac remodelling and dysfunction in high-fat/high-fructose diet-fed rats by modulating oxidative stress, inflammation, and Nrf-2 expression | Pakdeechote, P. Maneesai, P. Meephat, S. Rattanakanokchai, S. Wunpathe, C. Bunbupha, S. |
2022 |
Tissue and Cell (75), pp. |
||||||||
| 32. | Nobiletin resolves left ventricular and renal changes in 2K-1C hypertensive rats | Iampanichakul, M. Poasakate, A. Potue, P. Rattanakanokchai, S. Maneesai, P. Prachaney, P. Settheetham-Ishida, W. Pakdeechote, P. |
2022 |
Scientific Reports 1 (12), pp. |
||||||||
| 33. | Cardiovascular complications are resolved by tuna protein hydrolysate supplementation in rats fed with a high-fat diet | Maneesai, P. | 2023 |
Scientific Reports 1 (13), pp. |
||||||||
| 34. | Kaempferol protects against cardiovascular abnormalities induced by nitric oxide deficiency in rats by suppressing the TNF-α pathway | Maneesai, P. Potue, P. Khamseekaew, J. Sangartit, W. Rattanakanokchai, S. Poasakate, A. Pakdeechote, P. |
2023 |
European Journal of Pharmacology (960), pp. |
||||||||
| 35. | Limonin ameliorates cardiovascular dysfunction and remodeling in hypertensive rats | Iampanichakul, M. Potue, P. Rattanakanokchai, S. Maneesai, P. Khamseekaew, J. Settheetham-Ishida, W. Pakdeechote, P. |
2023 |
Life Sciences (327), pp. |
||||||||
| 36. | Limonin mitigates cardiometabolic complications in rats with metabolic syndrome through regulation of the IRS-1/GLUT4 signalling pathway | Maneesai, P. Jan-o, B. Poasakate, A. Rattanakanokchai, S. Tong-Un, T. Phuthong, S. Pakdeechote, P. |
2023 |
Biomedicine and Pharmacotherapy (161), pp. |
||||||||
| 37. | Mitigation effect of galangin against aortic dysfunction and hypertrophy in rats with metabolic syndrome | Pakdeechote, P. Poasakate, A. Prasatthong, P. Potue, P. Khamseekaew, J. Maneesai, P. |
2023 |
Heliyon 5 (9), pp. |
||||||||
| 38. | Kaempferol Ameliorates Renal Remodelling by Inhibiting the Renin-Angiotensin System Cascade in Hypertensive Rats | Maneesai, P. Iampanichakul, M. Potue, P. Khamseekaew, J. Tong-Un, T. Prachaney, P. Settheetham-Ishida, W. Pakdeechote, P. |
2024 |
Journal of Food Biochemistry (2024), pp. |
||||||||
| 39. | Cannabis sativa L. Leaf Oil Displays Cardiovascular Protective Effects in Hypertensive Rats | Khamseekaew, J. Duangjinda, M. Maneesai, P. Labjit, C. Rattanakanokchai, S. |
2025 |
International Journal of Molecular Sciences 5 (26), pp. |
||||||||
| 40. | Diosmin Prevents L-NAME-Induced Vascular Dysfunction and Remodeling in Rats via Suppressing the TGF-β1 Downstream Signaling Pathway | Saengnak, B. Samrid, R. Berkban, T. Maneesai, P. Pakdeechote, P. Mothong, W. Prachaney, P. |
2025 |
Journal of Food Biochemistry 1 (2025), pp. |
||||||||
| 41. | Luteolin Relieves Metabolic Dysfunction-Associated Fatty Liver Disease Caused by a High-Fat Diet in Rats Through Modulating the AdipoR1/AMPK/PPARγ Signaling Pathway | Taweesap, P. Potue, P. Khamseekaew, J. Iampanichakul, M. Jan-O, B. Pakdeechote, P. Maneesai, P. |
2025 |
International Journal of Molecular Sciences 8 (26), pp. |
||||||||
| 42. | Tangeretin Unravels Metabolic Dysfunction-Associated Fatty Liver Disease in Rats by Enhancing the IRS/Akt Pathway | Yuenyong, I. Potue, P. Maneesai, P. Khamseekaew, J. Manimmanakorn, A. Iampanichakul, M. Pakdeechote, P. |
2025 |
Life 3 (15), pp. |
||||||||
| 43. | The Alleviative Effect of Naringin Against Cardiovascular Dysfunction and Remodeling in Hypertensive Rats by Suppressing the Angiotensin II Pathway | Khamseekaew, J. Iampanichakul, M. Potue, P. Maneesai, P. Tangsucharit, P. Rattanakanokchai, S. Pakdeechote, P. |
2025 |
Food Science and Nutrition 6 (13), pp. |
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| 44. | Unveiling the molecular mechanism of diosmin to resolve cardiovascular dysfunction and remodeling in hypertension | Iampanichakul, M. Mowong, C. Rachiwong, N. Potue, P. Khamseekaew, J. Rattanakanokchai, S. Maneesai, P. Pocasap, P. Pakdeechote, P. |
2025 |
Biomedicine and Pharmacotherapy (190), pp. |
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| Title | Authors | Year | Journal title |
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| Title | Authors | Year | Journal title | Cited count | ||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| < 2020 | 2021 | 2022 | 2023 | 2024 | 2025 | Total | ||||||
| 1. | Asiatic acid improves vascular functions in mesenteric vascular beds isolated from high-carbohydrate, high-fat diets-induced metabolic syndrome rats | P. Pakdeechote P. Maneesai U. Kukongviriyapan P. Prachaney P. Tangsucharit |
2014 |
ACTA PHYSIOLOGICA (211.0), pp. 134.0-135.0 |
0 | 0 | 0 | 0 | 0 | 0 | 0 | |
| Title | Authors | Year | Journal title |
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| Title | Authors | NRIIS type | Year | NRIIS Scholarship |
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