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GMJ News > GMJ Briefs > Redefining Mitochondrial Role: Four Functions Beyond Energy Production

Redefining Mitochondrial Role: Four Functions Beyond Energy Production

GMJ
Last updated: 24/07/2026 19:30
By
Prof. Giorgi Pkhakadze
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1 Min Read
Diagram showing the four primary functions of mitochondria: ATP generation, ROS balance, mtDNA maintenance, and membrane dynamics
Mitochondria perform four critical functions: ATP generation, ROS balance, mitochondrial DNA maintenance, and membrane dynamics. Dysfunction in any of these roles is implicated in aging, neurodegeneration, and metabolic disease. — Photo by Andres Ayrton on Pexels (Pexels License)
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1 min read|121 words

Mitochondria have long been simplified as the cell’s powerhouse, but emerging research reveals a far more complex picture. These critical organelles orchestrate at least four distinct functions that extend well beyond ATP synthesis. In addition to energy generation, mitochondria regulate oxidative stress balance, maintain genetic integrity through mitochondrial DNA protection, and control membrane dynamics through fission and fusion processes. This expanded understanding has profound implications for how medical professionals approach metabolic diseases, neurodegeneration, and age-related disorders. As cellular dysfunction in any of these four domains can compromise overall health, recognizing mitochondria’s multifaceted role opens new therapeutic avenues. The complexity of mitochondrial biology underscores why dysfunction in these organelles is implicated in conditions ranging from Alzheimer’s disease to diabetes and premature aging.

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ByProf. Giorgi Pkhakadze
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Prof. Giorgi Pkhakadze, MD, MPH, PhD, is Editor-in-Chief of the Georgian Medical Journal and Chair of the Public Health Institute of Georgia (PHIG). He is Professor and Head of the Department of Social and Behavioural Sciences at David Tvildiani Medical University, and Secretary/Treasurer of the UEMS Section of Public Health. ORCID: 0000-0001-7609-4515.

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