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Exploring the molecular biology of ischemic cardiomyopathy based on ferroptosis‑related genes.

Authors :
Zhao ST
Qiu ZC
Zeng RY
Zou HX
Qiu RB
Peng HZ
Zhou LF
Xu ZQ
Lai SQ
Wan L
Source :
Experimental and therapeutic medicine [Exp Ther Med] 2024 Mar 22; Vol. 27 (5), pp. 221. Date of Electronic Publication: 2024 Mar 22 (Print Publication: 2024).
Publication Year :
2024

Abstract

Ischemic cardiomyopathy (ICM) is a serious cardiac disease with a very high mortality rate worldwide, which causes myocardial ischemia and hypoxia as the main damage. Further understanding of the underlying pathological processes of cardiomyocyte injury is key to the development of cardioprotective strategies. Ferroptosis is an iron-dependent form of regulated cell death characterized by the accumulation of lipid hydroperoxides to lethal levels, resulting in oxidative damage to the cell membrane. The current understanding of the role and regulation of ferroptosis in ICM is still limited, especially in the absence of evidence from large-scale transcriptomic data. Through comprehensive bioinformatics analysis of human ICM transcriptome data obtained from the Gene Expression Omnibus database, the present study identified differentially expressed ferroptosis-related genes (DEFRGs) in ICM. Subsequently, their potential biological mechanisms and cross-talk were analyzed, and hub genes were identified by constructing protein-protein interaction networks. Ferroptosis features such as reactive oxygen species generation, changes in ferroptosis marker proteins, iron ion aggregation and lipid oxidation, were identified in the H9c2 anoxic reoxygenation injury model. Finally, the diagnostic ability of Gap junction alpha-1 (GJA1), Solute carrier family 40 member 1 (SLC40A1), Alpha-synuclein (SNCA) were identified through receiver operating characteristic curves and the expression of DEFRGs was verified in an in vitro model. Furthermore, potential drugs (retinoic acid) that could regulate ICM ferroptosis were predicted based on key DEFRGs. The present article presents new insights into the role of ferroptosis in ICM, investigating the regulatory role of ferroptosis in the pathological process of ICM and advocating for ferroptosis as a potential novel therapeutic target for ICM based on evidence from the ICM transcriptome.<br />Competing Interests: The authors declare that they have no competing interests.<br /> (Copyright: © 2024 Zhao et al.)

Details

Language :
English
ISSN :
1792-1015
Volume :
27
Issue :
5
Database :
MEDLINE
Journal :
Experimental and therapeutic medicine
Publication Type :
Academic Journal
Accession number :
38590563
Full Text :
https://doi.org/10.3892/etm.2024.12509