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Cardiovascular Research|November 9, 2018
C1q-tumour necrosis factor-related protein-3 exacerbates cardiac hypertrophy in miceZhen-Guo Ma, Yu-Pei Yuan, Xin Zhang, et al.
Basic Research in Cardiology|March 23, 2018
T-bet deficiency attenuates cardiac remodelling in ratsZhen-Guo Ma, Jia Dai, Yu-Pei Yuan, et al.
International Journal of Biological Sciences|June 18, 2016
Asiatic Acid Protects against Cardiac Hypertrophy through Activating AMPKα Signalling PathwayZhen-Guo Ma, Jia Dai, Wen-Ying Wei, et al.
Journal of the American Heart Association|May 10, 2024
S100a8/9 (S100 Calcium Binding Protein a8/9) Promotes Cardiac Hypertrophy Via Upregulation of FGF23 (Fibroblast Growth Factor 23) in MiceYu-Pei Yuan, Zhuo-Yu Shen, Teng Teng, et al.
Journal of Pharmacological Sciences|November 8, 2017
Arctiin protects against cardiac hypertrophy through inhibiting MAPKs and AKT signaling pathwaysJing Li, Yu-Pei Yuan, Si-Chi Xu, et al.
Cell Death & Disease|January 26, 2018
Rosmarinic acid attenuates cardiac fibrosis following long-term pressure overload via AMPKα/Smad3 signalingXin Zhang, Zhen-Guo Ma, Yu-Pei Yuan, et al.
Cell Biology and Toxicology|January 20, 2021
Endothelial ERG alleviates cardiac fibrosis via blocking endothelin-1-dependent paracrine mechanismXin Zhang, Can Hu, Yu-Pei Yuan, et al.
Aging Cell|February 15, 2022
Fibronectin type III domain-containing 5 improves aging-related cardiac dysfunction in miceCan Hu, Xin Zhang, Min Hu, et al.
Cell Death and Differentiation|June 19, 2019
FNDC5 alleviates oxidative stress and cardiomyocyte apoptosis in doxorubicin-induced cardiotoxicity via activating AKTXin Zhang, Can Hu, Chun-Yan Kong, et al.
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