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The Role of Therapeutic Drugs on Acquired Mitochondrial Toxicity
Constanza Morén, Diana Luz Juárez-Flores1, Francesc Cardellach
1Muscle Research and Mitochondrial Function Laboratory, Muscle Research Unit, Cellex-IDIBAPS-Faculty of Medicine, University of Barcelona, Internal Medicine Department- Hospital Clínic of Barcelona (Barcelona, Spain) and U722-CIBERER (ISCIII, Madrid, Spain). djuarez@clinic.ub.es.
Background:
Certain therapeutic drugs used in medical practice may trigger mitochondrial toxicity leading to a wide range of clinical symptoms including deafness, neuropathy, myopathy, hyperlactatemia, lactic acidosis, pancreatitis and lipodystrophy, among others, which could even compromise the life of the patient.
Objectives:
The aim of this work is to review the potential mitochondrial toxicity derived from drugs used in health care, including anesthetics, antiepileptics, neuroleptics, antidepressants, antivirals, antibiotics, antifungals, antimalarics, antineoplastics, antidiabetics, hypolipemiants, antiarrhythmics, anti-inflammatories and nitric oxide.
Methods:
We herein have reviewed data from experimental and clinical studies to document the molecular mitochondrial basis, potential biomarkers and putative clinical symptoms associated to secondary effects of drugs.
Results:
One hundred and forty-five articles were selected and the information was organized by means of the primary target to which pharmacologic drugs were directed. Adverse toxic events were classified depending on the mitochondrial offtarget effect and whether they had been demonstrated in the experimental or clinical setting.
Conclusions:
Since treatment of acquired mitochondriopathies remains supportive and therapeutic interventions cannot be avoided, information of molecular and clinical consequences of toxic exposure becomes fundamental to assess riskbenefit imbalance of treatment prescription. Additionally, there is a crucial need to develop less mitochondrial toxic compounds, novel biomarkers to follow up mitochondrial toxicity (or implement those already proposed) and new approaches to prevent or revert unintended mitochondrial damage.
Insights
Many common medications can cause mitochondrial toxicity, leading to serious health issues like nerve damage and organ dysfunction. Understanding these risks is crucial for safe drug prescription and developing safer alternatives.
Area of Science:
- Pharmacology
- Toxicology
- Mitochondrial Medicine
Background:
- Therapeutic drugs can induce mitochondrial toxicity, manifesting as diverse clinical symptoms.
- These adverse effects range from neuropathy and myopathy to life-threatening conditions like lactic acidosis.
Purpose of the Study:
- To review potential mitochondrial toxicity from commonly used healthcare drugs.
- The review covers a broad spectrum of drug classes, including anesthetics, antivirals, antibiotics, and antineoplastics.
Main Methods:
- Systematic review of experimental and clinical studies.
- Data collection focused on molecular mechanisms, biomarkers, and clinical symptoms of drug-induced mitochondrial damage.
Main Results:
- Analysis of 145 selected articles.
- Adverse events were categorized by drug target and mitochondrial off-target effects, distinguishing between experimental and clinical findings.
Conclusions:
- Information on drug-induced mitochondrial toxicity is vital for risk-benefit assessment.
- There is a critical need for developing less toxic compounds, improved biomarkers, and strategies to prevent or reverse mitochondrial damage.
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