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February 5, 2026Brain6 citationsOpen Access

Mitochondrial DNA release and inflammation in mitochondrial disease pathogenesis

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MSMarton SzaboDLDaniel LagosECEmily S. Cross

Key Points

  • The research aims to explore the mechanisms of mtDNA release and its impact on inflammation in primary mitochondrial diseases (PMDs).
  • Reviewed advances in the understanding of mtDNA release mechanisms.
  • Discussed the activation of innate immune pathways by released mtDNA.
  • Examined clinical implications of mtDNA as a potential biomarker and therapeutic target.
  • mtDNA release activates innate immune pathways like the cGAS–STING axis.
  • The role of mtDNA in inflammation varies, with unclear effects on disease phenotype.
  • Circulating mitochondrial material may serve as a critical biomarker for precision medicine in PMDs.

Abstract

Abstract Primary mitochondrial diseases (PMDs) affect ∼1 in 4,300 individuals, yet mitochondrial dysfunction is also a hallmark of common inherited and acquired disorders. While advances in genomics now allow molecular diagnosis in 30-60% of mitochondrial diseases, treatment remains largely supportive, leading to progressive disability and early mortality. Despite progress in gene-modifying approaches, no approved therapies exist for the majority of mitochondrial diseases, and none of the recent trials have met their primary endpoints, underlining the urgent need for innovative therapeutic strategies. Patients with PMDs have very variable phenotypes, further complicated by increased susceptibility to infections, chronic inflammation and metabolic abnormalities. Recently, it has become evident that certain mitochondrial pathologies, including the loss of mitochondrial membrane integrity, impaired mtDNA maintenance, quality control defects, or respiratory chain defects, result in the release of mtDNA into the cytosol. Infections or metabolic changes also trigger the release of mtDNA, leading to the activation of a sterile innate immune response and interferon signalling. Free mtDNA acts as a pathogen-associated molecular pattern (PAMP), activating innate immune pathways such as the cGAS–STING axis, initiating a sterile inflammatory response. This can be followed by the extracellular release of mtDNA to convey the inflammatory response systemically to communicate between cells or across organs. However, it is unclear whether these pathways worsen the disease phenotype (hyperinflammatory reaction) or, in contrast, rescue the symptoms due to upregulation of compensatory pathways. In this review, we summarise recent advances in understanding the mechanism of mtDNA release and how it activates innate immune signalling in PMDs. We also discuss the implications for pathogenesis, clinical phenotypes, and therapeutic development. Defining the role of circulating mitochondrial material as a biomarker or therapeutic target is a critical step for precision medicine approaches in PMDs. These pathways may also have wider implications for common metabolic, inflammatory, and neurodegenerative disorders with mitochondrial dysfunction.

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Cite This Study

Szabo et al. (2026) studied this question.

synapsesocial.com/papers/698434f9f1d9ada3c1fb3cfchttps://doi.org/10.1093/brain/awag037
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