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Mitochondria at the Crossroads of Cardiovascular Disease: Mechanistic Drivers and Emerging Therapeutic Strategies

Title: Mitochondria at the Crossroads of Cardiovascular Disease: Mechanistic Drivers and Emerging Therapeutic Strategies
Authors: Sonila Alia; Gaia Pedriali; Paolo Compagnucci; Yari Valeri; Valentina Membrino; Tiziana Di Crescenzo; Elena Tremoli; Laura Mazzanti; Arianna Vignini; Paolo Pinton; Michela Casella
Source: Cells, Vol 15, Iss 4, p 372 (2026)
Publisher Information: MDPI AG, 2026.
Publication Year: 2026
Collection: LCC:Cytology
Subject Terms: mitochondrial dysfunction; cardiovascular disease; mitochondrial quality control; mitophagy; oxidative stress; mitochondrial signaling; Cytology; QH573-671
Description: Mitochondria are central regulators of cardiac homeostasis, integrating energy production, redox balance, calcium handling, and innate immune signaling. In cardiovascular disease (CVD), mitochondrial dysfunction acts as a unifying mechanism connecting oxidative stress, metabolic inflexibility, inflammation, and structural remodeling. Disturbances in mitochondrial quality control—encompassing fusion–fission dynamics, PINK1/Parkin- and receptor-mediated mitophagy, biogenesis, and proteostasis—compromise mitochondrial integrity and amplify cardiomyocyte injury. Excess reactive oxygen species, mitochondrial DNA release, and calcium overload further activate cGAS–STING, NLRP3 inflammasomes, and mPTP-driven cell death pathways, perpetuating maladaptive remodeling. Therapeutic strategies targeting mitochondrial dysfunction have rapidly expanded, ranging from mitochondria-targeted antioxidants (such as MitoQ and SS-31), nutraceuticals, metabolic modulators (SGLT2 inhibitors, metformin), and mitophagy or biogenesis activators to innovative approaches including mtDNA editing, nanocarrier-based delivery, and mitochondrial transplantation. These interventions aim to restore organelle structure, improve bioenergetics, and reestablish balanced quality control networks. This review integrates recent mechanistic insights with emerging translational evidence, outlining how mitochondria function as bioenergetic and inflammatory hubs in CVD. By synthesizing established and next-generation therapeutic strategies, it highlights the potential of precision mitochondrial medicine to reshape the future management of cardiovascular disease.
Document Type: article
File Description: electronic resource
Language: English
ISSN: 2073-4409
Relation: https://www.mdpi.com/2073-4409/15/4/372; https://doaj.org/toc/2073-4409
DOI: 10.3390/cells15040372
Access URL: https://doaj.org/article/3992bdcf155f4d5ba01bfbf81d2a6a2f
Accession Number: edsdoj.3992bdcf155f4d5ba01bfbf81d2a6a2f
Database: Directory of Open Access Journals