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Functional Changes in Mitochondrial Subpopulations of Left Ventricular Cardiomyocytes in Post-Infarction Rats During the Subacute Stage of Remodeling.

Functional Changes in Mitochondrial Subpopulations of Left Ventricular Cardiomyocytes in Post-Infarction Rats During the Subacute Stage of Remodeling.

期刊: Frontiers in bioscience (Landmark edition) 日期: 2026-06-04 PMID: 42411500 DOI: 10.31083/FBL47046 浏览: 25
作者: Fedotov SA, Stepanov AV, Sakuta GA, Vorobev ML, Baidyuk EV
SA, F., AV, S., GA, S., ML, V., & EV, B. (2026). Functional Changes in Mitochondrial Subpopulations of Left Ventricular Cardiomyocytes in Post-Infarction Rats During the Subacute Stage of Remodeling.. Frontiers in bioscience (Landmark edition). https://doi.org/10.31083/FBL47046
SA F, AV S, GA S, ML V, EV B. Functional Changes in Mitochondrial Subpopulations of Left Ventricular Cardiomyocytes in Post-Infarction Rats During the Subacute Stage of Remodeling.. Frontiers in bioscience (Landmark edition). 2026; doi: 10.31083/FBL47046
SA F, AV S, GA S, et al. Functional Changes in Mitochondrial Subpopulations of Left Ventricular Cardiomyocytes in Post-Infarction Rats During the Subacute Stage of Remodeling.[J]. Frontiers in bioscience (Landmark edition). 2026. DOI: 10.31083/FBL47046.
@article{sa2026,
  author = {Fedotov SA and Stepanov AV and Sakuta GA and Vorobev ML and Baidyuk EV},
  title = {Functional Changes in Mitochondrial Subpopulations of Left Ventricular Cardiomyocytes in Post-Infarction Rats During the Subacute Stage of Remodeling.},
  journal = {Frontiers in bioscience (Landmark edition)},
  year = {2026},
  doi = {10.31083/FBL47046},
  note = {PMID: 42411500},
}
TY  - JOUR
AU  - Fedotov SA
AU  - Stepanov AV
AU  - Sakuta GA
AU  - Vorobev ML
AU  - Baidyuk EV
TI  - Functional Changes in Mitochondrial Subpopulations of Left Ventricular Cardiomyocytes in Post-Infarction Rats During the Subacute Stage of Remodeling.
T2  - Frontiers in bioscience (Landmark edition)
PY  - 2026
DO  - 10.31083/FBL47046
AN  - PMID:42411500
ER  - 

摘要

BACKGROUND: Cardiovascular diseases remain a leading cause of mortality worldwide, with myocardial infarction (MI) being the most severe form. Despite advances in treatment, MI is still associated with an estimated mortality rate of approximately 35%, and survivors frequently develop heart failure and arrhythmias, underscoring the need for new therapeutic strategies. Growing evidence indicates that mitochondrial dysfunction in cardiomyocytes (CMCs) is a major driver of post-MI remodeling. Consequently, targeting mitochondrial dynamics and subpopulation-specific responses has emerged as a promising cardioprotective approach. While acute-phase mitochondrial changes after MI have been extensively studied, remodeling during the subacute and chronic stages remains less understood, despite its critical role in scar expansion and the progression of heart failure. In this study, we investigated functional and morphological alterations in distinct mitochondrial subpopulations of left ventricular CMCs two weeks after MI. METHODS: MI was induced in adult rats by permanent ligation of the left anterior descending coronary artery. Mitochondrial morphology was analyzed by transmission electron microscopy. Mitochondrial function and oxidative stress were assessed in live isolated CMCs using fluorescence and confocal microscopy. RESULTS: Two weeks after MI, CMCs exhibited a reduction in total mitochondrial membrane potential (MMP) and an increase in reactive oxygen species levels. Herewith, mitochondrial activity differed among mitochondrial subpopulations. The MMP of perinuclear (PNM) and subsarcolemmal mitochondria (SSM) decreased by ~30% more than that of intermyofibrillar mitochondria (IFM). These functional impairments were accompanied by reductions in mitochondrial size: IFM area decreased by 22%, whereas PNM and SSM decreased by 32% and 29%, respectively. At the same time, mitochondrial volume density decreased in SSM and IFM regions but remained unchanged in PNM regions. Consequently, the overall functional alterations in the PNM regions were comparable to those observed in IFM regions. CONCLUSION: Our data demonstrate a decrease in the activity of CMC mitochondria associated with their fragmentation and reduced volume density two weeks after MI, with the most pronounced changes in SSM. These findings underscore the importance of subpopulation-specific mitochondrial analysis for understanding subacute post-infarction remodeling and for identifying novel therapeutic targets.

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