内容
Search
condition:
clear condition

Branched-chain amino acids deficiency promotes diabetic cardiomyopathy by activating autophagy of cardiac fibroblasts

Zhou ZY, Song K, Liu ZY, Ke YF, Shi Y, Cai K, Zhao R, Sun X, Tao H, Zhao JY. Branched-chain amino acids deficiency promotes diabetic cardiomyopathy by activating autophagy of cardiac fibroblasts. Theranostics. 2024 Oct 28;14(19):7333-7348. doi: 10.7150/thno.102708.

Curcumin attenuates myocardial ischemia-reperfusion-induced autophagy-dependent ferroptosis via Sirt1/AKT/FoxO3a signaling

Zhao ST, Qiu ZC, Xu ZQ, Tao ED, Qiu RB, Peng HZ, Zhou LF, Zeng RY, Lai SQ, Wan L. Curcumin attenuates myocardial ischemia‑reperfusion‑induced autophagy‑dependent ferroptosis via Sirt1/AKT/FoxO3a signaling. Int J Mol Med. 2025 Mar;55(3):51. doi: 10.3892/ijmm.2025.5492. Epub 2025 Jan 24. PMID: 39930816; PMCID: PMC11781526.

Magnoflorine attenuates Ang II-induced cardiac remodeling via promoting AMPK-regulated autophagy

Zhu M, Hu J, Pan Y, Jiang Q, Shu C. Magnoflorine attenuates Ang II-induced cardiac remodeling via promoting AMPK-regulated autophagy. Cardiovasc Diagn Ther. 2024 Aug 31;14(4):576-588. doi: 10.21037/cdt-24-130. Epub 2024 Aug 14.

Momordica charantia L.-derived exosome-like nanovesicles stabilize p62 expression to ameliorate doxorubicin cardiotoxicity

Ye C, Yan C, Bian SJ, Li XR, Li Y, Wang KX, Zhu YH, Wang L, Wang YC, Wang YY, Li TS, Qi SH, Luo L. Momordica charantia L.-derived exosome-like nanovesicles stabilize p62 expression to ameliorate doxorubicin cardiotoxicity. J Nanobiotechnology. 2024 Aug 2;22(1):464. doi: 10.1186/s12951-024-02705-z.

Sacubitril/Valsartan partially alleviates myocardial infarction injury by activating the FGF21 signaling pathway via PPARs

Wei W, Xu G, Gao J, Wang G, Wang Y, Li C, Zheng J, Lu H, Lu Y, Wang K, Xu H, Wang C, Pan X. Sacubitril/Valsartan partially alleviates myocardial infarction injury by activating the FGF21 signaling pathway via PPARs. Cardiovasc Diabetol. 2025 Feb 22;24(1):89. doi: 10.1186/s12933-025-02627-6.

N6-Methyladenosine-mediated phase separation suppresses NOTCH1 expression and promotes mitochondrial fission in diabetic cardiac fibrosis

Liu ZY, Lin LC, Liu ZY, Song K, Tu B, Sun H, Zhou Y, Mao S, Zhang Y, Li R, Yang JJ, Zhao JY, Tao H. N6-Methyladenosine-mediated phase separation suppresses NOTCH1 expression and promotes mitochondrial fission in diabetic cardiac fibrosis. Cardiovasc Diabetol. 2024 Sep 28;23(1):347. doi: 10.1186/s12933-024-02444-3.