Research Article
miR-432-5p Inhibits the Ferroptosis in Cardiomyocytes Induced by Hypoxia/Reoxygenation via Activating Nrf2/SLC7A11 Axis by Degrading Keap1
Figure 3
miRNA-432-5p attenuates ferroptosis in cardiomyocytes under H/R: (a and b) miR-432-5p was significantly decreased in the cardiomyocytes after RSL3 stimulation (a) and under H/R (b); (c) miR-432-5p decreased in MI tissue compared with control tissue (sham); (d) expressions of miR-432-5p in two GSE datasets, GSE24548 and GSE31568, that were also downregulated in patients with acute MI compared with normal control; (e–i) to measure the effect of miRNA-432-5p in ferroptosis caused by RSL3, plasmid-harboring miRNA-432-5p was transfected to cardiomyocytes under H/R. Upregulation of miRNA-432-5p improves cell viability, decreases MDA level, increases SOD, and GSH/GSSG ratio of cardiomyocytes after RSL3 stimulation. , ; N = 3.
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