ccf-mtDNA as a Potential Link Between the Brain and Immune System in Neuro-Immunological Disorders

Stefano Gambardella1, Fiona Limanaqi2, Rosangela Ferese1

  • 1I.R.C.C.S Neuromed, Via Atinense, Pozzilli, Italy.

Insights

Circulating cell-free mitochondrial DNA (ccf-mtDNA) in cerebrospinal fluid shows promise as an early biomarker for neurological diseases. Levels of ccf-mtDNA correlate with disease progression, offering insights into neurodegeneration and neuroinflammation.

Area of Science:

  • Neuroscience
  • Immunology
  • Genetics

Background:

  • Mitochondrial DNA (mtDNA) fragments are found in extracellular fluids as circulating cell-free mtDNA (ccf-mtDNA).
  • mtDNA is more resistant to degradation than nuclear DNA and is stable in plasma and cerebrospinal fluid (CSF).
  • ccf-mtDNA is a potential biomarker for various disorders, including neurological diseases.

Purpose of the Study:

  • To investigate the role of ccf-mtDNA as a biomarker in neurological disorders.
  • To compare the neuro-immunological features of neurodegenerative diseases with neuro-infectious diseases using ccf-mtDNA.
  • To explore the potential of ccf-mtDNA in early disease screening and prognosis.

Main Methods:

  • Analysis of recent experimental findings and clinical evidence.
  • Comparison of neuro-immunological aspects in neurodegenerative and neuro-infectious diseases.
  • Detection and quantification of ccf-mtDNA in CSF and plasma.

Main Results:

  • Decreased CSF ccf-mtDNA levels are associated with progressive cell dysfunction in Alzheimer's disease, Parkinson's disease, and progressive Multiple Sclerosis.
  • Elevated CSF ccf-mtDNA levels are observed during acute inflammation in relapsing-remitting Multiple Sclerosis.
  • Non-methylated CpG sites in mtDNA may contribute to innate immunity activation and inflammation.

Conclusions:

  • ccf-mtDNA shows potential as a powerful biomarker for early screening and prognosis of neurological diseases.
  • Alterations in neuronal mtDNA levels precede cell death in neurodegeneration, leading to reduced ccf-mtDNA release.
  • ccf-mtDNA may play a role in the molecular mechanisms underlying disease pathogenesis and neurobiology.

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