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Updated: Jul 28, 2025

Unveiling Xenobiotic Transport and Effects in Isolated Mitochondria: Insights from Respirometric and Enzymatic Assays
Published on: March 7, 2025
Side effects of antibiotics and perturbations of mitochondria functions
Gloria D'Achille1, Gianluca Morroni1
1Microbiology Unit, Department of Biomedical Sciences and Public Health, Polytechnic University of Marche, Ancona, Italy.
Abstract:
Antibiotics are one of the greatest discoveries of medicine of the past century. Despite their invaluable contribution to infectious disease, their administration could lead to side effects that in some cases are serious. The toxicity of some antibiotics is in part due to their interaction with mitochondria: these organelles derive from a bacterial ancestor and possess specific translation machinery that shares similarities with the bacterial counterpart. In other cases, the antibiotics could interfere with mitochondrial functions even if their main bacterial targets are not shared with the eukaryotic cells. The purpose of this review is to summarize the effects of antibiotics administration on mitochondrial homeostasis and the opportunity that some of these molecules could represent in cancer treatment. The importance of antimicrobial therapy is unquestionable, but the identification of interaction with eukaryotic cells and in particular with mitochondria is crucial to reduce the toxicity of these drugs and to explore other useful medical applications.
Insights
Antibiotic side effects can stem from interactions with mitochondria, organelles with bacterial origins. Understanding these effects may reduce toxicity and reveal new cancer treatment opportunities.
Area of Science:
- Pharmacology
- Cell Biology
- Mitochondrial Medicine
Background:
- Antibiotics are crucial for treating infectious diseases but can cause severe side effects.
- Mitochondrial toxicity is a significant concern, linked to their bacterial ancestry and translation machinery.
- Some antibiotics impact mitochondrial function independently of their primary bacterial targets.
Conclusions:
- Understanding antibiotic-mitochondria interactions is vital for mitigating drug toxicity.
- Further research into these interactions could lead to novel therapeutic strategies, particularly in cancer therapy.
- Exploring non-traditional applications of antibiotics holds promise for future medical advancements.
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