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Updated: Feb 23, 2026

An In Vitro Approach to Study Mitochondrial Dysfunction: A Cybrid Model
Published on: March 9, 2022
Tigecycline-induced inhibition of mitochondrial DNA translation may cause lethal mitochondrial dysfunction in humans
S J Vandecasteele1, S Seneca2, J Smet3
1Department of Nephrology and Infectious Diseases, AZ Sint-Jan Brugge, Brugge, Belgium; Department of Microbiology, AZ Sint-Jan Brugge, Brugge, Belgium.
Background:
A 65-year-old patient developed an unexplained and ultimately lethal metabolic acidosis under prolonged treatment with tigecycline. Tigecycline is known to have a selective inhibitory effect on eukaryotic mitochondrial translation. The underlying molecular mechanisms of the metabolic acidosis in this patient were explored.
Methods:
Oxidative phosphorylation system (OXPHOS) analysis, blue native polyacrylamide gel electrophoresis followed by in-gel activity staining in mitochondria, molecular analysis of mitochondrial DNA (mtDNA) for genomic rearrangements and sequencing of the rRNA genes was performed on the subject's skeletal muscle.
Results:
OXPHOS analysis revealed a combined deficiency of the complexes I, III, IV and V, with a preserved function of complex II (encoded by nuclear DNA), thus demonstrating a defective mtDNA translation. There were no known underlying mitochondrial genetic defects. The patient had a (m.1391T>A) variant within the 12SrRNA gene in heteroplasmy (50-60%).
Conclusions:
This patient developed an ultimately lethal mitochondrial toxicity while receiving prolonged treatment with tigecycline, which was caused by a defective translation of the mtDNA. Tigecycline is known to suppress eukaryotic mitochondrial DNA translation, but until now this effect has been considered to be clinically insignificant. The observations in this patient suggest a clinically significant mitochondrial toxicity of tigecycline in this patient, and warrant further investigation.
Insights
Prolonged tigecycline treatment caused lethal metabolic acidosis due to defective mitochondrial DNA translation. This study reveals a clinically significant mitochondrial toxicity of tigecycline, previously considered insignificant.
Area of Science:
- Mitochondrial Medicine
- Pharmacology
- Molecular Biology
Background:
- A patient developed unexplained, lethal metabolic acidosis during prolonged tigecycline therapy.
- Tigecycline is known to inhibit eukaryotic mitochondrial translation.
- The study investigated the molecular basis of the patient's metabolic acidosis.
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