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Frontiers in Pharmacology|May 16, 2022
The Double-Edged Sword of SIRT3 in Cancer and Its Therapeutic ApplicationsShumin Ouyang, Qiyi Zhang, Linlin Lou, et al.Ecotoxicology and Environmental Safety|December 28, 2020
Antifungal activity of liquiritin in Phytophthora capsici comprises not only membrane-damage-mediated autophagy, apoptosis, and Ca<sup>2+</sup> reduction but also an induced defense responses in pepperPeiqing Liu, Yushan Cai, Jinzhu Zhang, et al.Frontiers in Pharmacology|September 5, 2022
Simultaneous absolute protein quantification of seven cytochrome P450 isoforms in rat liver microsomes by LC-MS/MS-based isotope internal standard methodFulin Jiang, Chang Zhang, Zihan Lu, et al.Redox Biology|March 12, 2023
SIRT3 improved peroxisomes-mitochondria interplay and prevented cardiac hypertrophy via preserving PEX5 expressionMinghui Wang, Yanqing Ding, Yuehuai Hu, et al.Journal of Cancer|July 15, 2024
Exosomal miRNA-146a-5p Derived from Senescent Hepatocellular Carcinoma Cells Promotes Aging and Inhibits Aerobic Glycolysis in Liver Cells via Targeting IRF7Sijia Yang, Ang Li, Lihong Lv, et al.Free Radical Biology & Medicine|July 30, 2013
Sirt1 resists advanced glycation end products-induced expressions of fibronectin and TGF-β1 by activating the Nrf2/ARE pathway in glomerular mesangial cellsKaipeng Huang, Juan Huang, Xi Xie, et al.Biomedicine & Pharmacotherapy = Biomedecine & Pharmacotherapie|July 3, 2023
Cryptotanshinone alleviates lipopolysaccharide and cigarette smoke-induced chronic obstructive pulmonary disease in mice via the Keap1/Nrf2 axisHongjia Song, Lujing Jiang, Wanchun Yang, et al.European Journal of Pharmacology|December 18, 2019
Discovery of a novel niacin-lipoic acid dimer N2L attenuating atherosclerosis and dyslipidemia with non-flushing effectsYiming Jiang, Minghua Jin, Jingkao Chen, et al.Cell Biology International|December 2, 2021
MiRNA-339-5p promotes isoproterenol-induced cardiomyocyte hypertrophy by targeting VCP to activate the mTOR signalingXueying Bi, Yuhong Zhang, Youhui Yu, et al.Frontiers in Plant Science|October 31, 2022
Three amino acid residues are required for the recognition of <i>Ralstonia solanacearum</i> RipTPS in <i>Nicotiana tabacum</i>Yuyan An, Jialan Chen, Zhangyan Xu, et al.Pageof 30