Intermittent Fasting Improves High-Fat Diet-Induced Obesity Cardiomyopathy via Alleviating Lipid Deposition and Apoptosis and Decreasing m6A Methylation in the Heart
Xu Z, Qin Y, Lv B, Tian Z, Zhang B. Intermittent Fasting Improves High-Fat Diet-Induced Obesity Cardiomyopathy via Alleviating Lipid Deposition and Apoptosis and Decreasing m6A Methylation in the Heart. Nutrients. 2022 Jan 7;14(2):251.
Mouse
Cardiovascular Diseases
2022
Diminished α7 nicotinic acetylcholine receptor (α7nAChR) rescues amyloid-β induced atrial remodeling by oxi-CaMKII/MAPK/AP-1 axis-mediated mitochondrial oxidative stress
Zhao J, Yu L, Xue X, Xu Y, Huang T, Xu D, Wang Z, Luo L, Wang H. Diminished α7 nicotinic acetylcholine receptor (α7nAChR) rescues amyloid-β induced atrial remodeling by oxi-CaMKII/MAPK/AP-1 axis-mediated mitochondrial oxidative stress. Redox Biol. 2023 Feb;59:102594.
Mouse
Neurological Diseases
2023
MARCH5 restores endothelial cell function against ischaemic/hypoxia injury via Akt/eNOS pathway
Lei W, Li J, Li C, Chen L, Huang F, Xiao D, Zhang J, Zhao J, Li G, Qu T, Zhou H, Liao Y, Chen M. MARCH5 restores endothelial cell function against ischaemic/hypoxia injury via Akt/eNOS pathway. J Cell Mol Med. 2021 Apr;25(7):3182-3193.
Rat
Cardiovascular Diseases
2021
Betulinic Acid Improves Cardiac-Renal Dysfunction Caused by Hypertrophy through Calcineurin-NFATc3 Signaling
Hong MH, Na SW, Jang YJ, Yoon JJ, Lee YJ, Lee HS, Kim HY, Kang DG. Betulinic Acid Improves Cardiac-Renal Dysfunction Caused by Hypertrophy through Calcineurin-NFATc3 Signaling. Nutrients. 2021 Sep 30;13(10):3484. doi: 10.3390/nu13103484.
Rat
Cardiovascular Diseases
2021
Legumain is a predictor of all-cause mortality and potential therapeutic target in acute myocardial infarction
Yang H, He Y, Zou P, Hu Y, Li X, Tang L, Zhu Z, Tai S, Tu T, Xiao Y, Chen M, Wu C, Zhou S. Legumain is a predictor of all-cause mortality and potential therapeutic target in acute myocardial infarction. Cell Death Dis. 2020 Nov 26;11(11):1014.
Mouse
Cardiovascular Diseases
2020
Intermittent short-duration reoxygenation relieves high-altitude pulmonary hypertension via NOX4/H2O2/PPAR-γ axis
Li S, Lyu Q, Shi Q, Bai Y, Ren X, Ma J. Intermittent short-duration reoxygenation relieves high-altitude pulmonary hypertension via NOX4/H2O2/PPAR-γ axis. Clin Sci (Lond). 2024 Feb 7;138(3):103-115.
Mouse
Cardiovascular Diseases
2024