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February 19, 2026The Journals of Gerontology Series A0 citations

Extracellular Vesicle-Derived Mitochondrial Genes as Potential Biomarkers for Brain Aging in Human

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QYQian YuSYShuyi YuHCHang Chen

Key Points

  • Evaluate the abundance of mitochondrial genes in extracellular vesicles as biomarkers for brain aging.
  • Quantified mtDNA targets using absolute quantitative PCR (qPCR).
  • Measured brain aging biomarkers using ELISA.
  • Performed multivariable regression analysis for association examination.
  • Developed a multi-biomarker model to distinguish age groups.
  • EV mitochondrial gene levels significantly increased with age (P < 0.001).
  • Neurofilament light chain and amyloid-beta levels also showed significant increases with age (P < 0.001).
  • The multi-biomarker model outperformed single biomarkers in distinguishing age groups (P < 0.01).

Abstract

Abstract Aging significantly impacts brain function, and identifying reliable biomarkers for early detection of age-related neurodegeneration is crucial for improving diagnosis and treatment outcomes. This proof-of-principle study aims to evaluate the abundance of mitochondrial DNA (mtDNA) targets within plasma-derived extracellular vesicles (EVs) and to investigate whether they correlate with established biomarkers of brain aging, independent of chronological age and renal function. mtDNA copy number was quantified using absolute quantitative PCR (qPCR). Brain aging biomarkers were measured by ELISA. Multivariable regression analysis was performed to examine the associations between EVs mitochondrial genes and aging biomarkers. A multi-biomarker model was developed to assess the performance of combined biomarkers in distinguishing between age groups. We observed that EV mitochondrial gene levels were significantly increased with age (P 0.001). Levels of neurofilament light chain (NfL), amyloid-beta (Aβ42 and Aβ40), also showed significant age-related increases (P 0.001). A multi-biomarker model combining EVs mitochondrial genes and brain aging biomarkers showed the optimal performance in distinguishing older adults from younger individuals, with an area under the ROC curve (AUC) significantly higher than that of any single biomarker (P 0.01). These findings collectively indicate that EV-derived mitochondrial genes, in combination with other biomarkers like NfL, hold great potential as a non-invasive tool for early detection and monitoring of brain aging and neurodegenerative diseases.

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Cite This Study

Yu et al. (2026) studied this question.

synapsesocial.com/papers/6996a887ecb39a600b3ef576https://doi.org/10.1093/gerona/glag044
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