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Resveratrol ameliorates endothelial dysfunction in diabetic and obese mice through sirtuin 1 and peroxisome proliferator-activated receptor δ Journal article
Pharmacological Research, 2019,Volume: 139,Page: 384-394
Authors:  Cheang W.S.;  Wong W.T.;  Wang L.;  Cheng C.K.;  Lau C.W.;  Ma R.C.W.;  Xu A.;  Wang N.;  Huang Y.;  Tian X.Y.
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Diet induced obesity  Endothelial dysfunction  PPARδ  SIRT1  
Effects of tetramethylpyrazine from Chinese black vinegar on antioxidant and hypolipidemia activities in HepG2 cells Journal article
Food and Chemical Toxicology, 2017,Volume: 109,Page: 930-940
Authors:  Chen J.;  Tian J.;  Ge H.;  Liu R.;  Xiao J.
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Anti-oxidation  Cholesterol efflux  Hypolipidemic  Liver X receptor  Peroxisome proliferator-activated receptor  Tetramethylpyrazine  
PPARδ is required for exercise to attenuate endoplasmic reticulum stress and endothelial dysfunction in diabetic mice Journal article
Diabetes, 2017,Volume: 66,Issue: 2,Page: 519-528
Authors:  Cheang W.S.;  Wong W.T.;  Zhao L.;  Xu J.;  Wang L.;  Lau C.W.;  Chen Z.Y.;  Ma R.C.W.;  Xu A.;  Wang N.;  Tian X.Y.;  Huang Y.
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Metformin protects endothelial function in diet-induced obese mice by inhibition of endoplasmic reticulum stress through 5′ adenosine monophosphate-Activated protein kinase-peroxisome proliferator-Activated receptor δ pathway Journal article
Arteriosclerosis, Thrombosis, and Vascular Biology, 2014,Volume: 34,Issue: 4,Page: 830-836
Authors:  Cheang W.S.;  Tian X.Y.;  Wong W.T.;  Lau C.W.;  Lee S.S.-T.;  Chen Z.Y.;  Yao X.;  Wang N.;  Huang Y.
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endothelium  nitric oxide  obesity  vasodilation  
Pleiotropic effects of peroxisome proliferator-activated receptor γ and δ in vascular diseases Journal article
Circulation Journal, 2013,Volume: 77,Issue: 11,Page: 2664-2671
Authors:  Cheang W.S.;  Fang X.;  Tian X.Y.
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Atherosclerosis  Endothelial function  Peroxisome proliferator-activated receptors  Vasculature  
T33, a novel peroxisome proliferator-activated receptor γ/α agonist, exerts neuroprotective action via its anti-inflammatory activities Journal article
Acta Pharmacologica Sinica, 2011,Volume: 32,Issue: 9,Page: 1100-1108
Authors:  Wang Y.;  Yang Y.-S.;  Tang X.-C.;  Zhang H.-Y.
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astrocytes  BV-2 cells  inflammation  middle cerebral artery occlusion  nuclear factorkappa B  oxygen-glucose deprivation  peroxisome proliferator-activated receptor γ  stroke  T33  
Peroxisome proliferator-activated receptors gamma reverses hepatic nutritional fibrosis in mice and suppresses activation of hepatic stellate cells in vitro Journal article
International Journal of Biochemistry and Cell Biology, 2010,Volume: 42,Issue: 6,Page: 948-957
Authors:  Yu J.;  Zhang S.;  Chu E.S.H.;  Go M.Y.Y.;  Lau R.H.Y.;  Zhao J.;  Wu C.-W.;  Tong L.;  Zhao J.;  Poon T.C.W.;  Sung J.J.Y.
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Fibrosis  Gene modulation  Genetic deficiency mouse model  Hepatic stellat cell  Nutritional steatohepatitis  PPARγ  
[Effects of yinian jiangya decoction contained serum on endothelial cell proliferation and PPAR gamma mRNA expression in spontaneously hypertensive rat]. Journal article
Zhongguo Zhong xi yi jie he za zhi Zhongguo Zhongxiyi jiehe zazhi = Chinese journal of integrated traditional and Western medicine / Zhongguo Zhong xi yi jie he xue hui, Zhongguo Zhong yi yan jiu yuan zhu ban, 2010,Volume: 30,Issue: 1,Page: 68-71
Authors:  Zhao Y.H.;  Liu Y.D.;  Liu N.W.
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Shear stress induces synthetic-to-contractile phenotypic modulation in smooth muscle cells via peroxisome proliferator-activated receptor α/δ activations by prostacyclin released by sheared endothelial cells Journal article
Circulation Research, 2009,Volume: 105,Issue: 5,Page: 471-480
Authors:  Tsai M.-C.;  Chen L.;  Zhou J.;  Tang Z.;  Hsu T.-F.;  Wang Y.;  Shih Y.-T.;  Peng H.-H.;  Wang N.;  Guan Y.;  Chien S.;  Chiu J.-J.
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Endothelial cell  Peroxisome proliferator-activated receptor  Prostacyclin  Shear stress  Smooth muscle cell  
Suppression of pro-inflammatory adhesion molecules by PPAR-δ in human vascular endothelial cells Journal article
Arteriosclerosis, Thrombosis, and Vascular Biology, 2008,Volume: 28,Issue: 2,Page: 315-321
Authors:  Fan Y.;  Wang Y.;  Tang Z.;  Zhang H.;  Qin X.;  Zhu Y.;  Guan Y.;  Wang X.;  Staels B.;  Chien S.;  Wang N.
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Adhesion molecules  Endothelium  Gene expression  Nuclear receptor  Reactive oxygen species