Increasing Fracture Risk Associates With Plasma Circulating MicroRNAs in Aging People's Sarcopenia

Nana He1,2, Yuelin Zhang3, Yue Zhang3

  • 1Department of Experimental Medical Science, HwaMei Hospital, University of Chinese Academy of Sciences, Ningbo, China.

Insights

This study identifies specific microRNAs (miRNAs) in blood plasma as potential biomarkers for age-related sarcopenia. Lower levels of miR-23a-3p, miR-93-5p, and miR-637 are associated with muscle loss and increased fracture risk in the elderly.

Area of Science:

  • Gerontology and Molecular Biology
  • Biomarker Discovery
  • Aging Research

Background:

  • Aging is associated with muscle mass and strength decline (sarcopenia) and reduced bone mineral density (BMD), increasing fall and fracture risks.
  • Sarcopenia and osteoporosis are prevalent in the elderly, leading to gait disturbances, balance issues, and increased mortality.
  • The role of microRNAs (miRNAs) in age-related sarcopenia and osteoporosis remains largely unexplored.

Purpose of the Study:

  • To identify and validate specific miRNAs in human blood plasma as potential biomarkers for age-related sarcopenia.
  • To investigate the association between miRNA levels and muscle mass, strength, and fracture risk in elderly individuals.
  • To explore sex-specific correlations between miRNA expression and sarcopenia indicators.

Main Methods:

  • Analysis of 10 fracture-risk-related miRNAs in plasma samples from elderly individuals using RT-PCR.
  • Comparison of miRNA expression levels between sarcopenic and non-sarcopenic groups.
  • Assessment of muscle mass (ASM/height²), handgrip strength, and gait velocity as diagnostic indicators.

Main Results:

  • Plasma levels of miR-23a-3p, miR-93-5p, and miR-637 were significantly lower in the sarcopenia group compared to the non-sarcopenia group.
  • Lower levels of plasma miR-93-5p and miR-637 correlated significantly with reduced appendicular skeletal muscle mass index (ASM/height²).
  • Plasma miR-23a-3p and miR-93-5p levels were significantly affected by ASM/height² in female individuals.

Conclusions:

  • Plasma miR-23a-3p, miR-93-5p, and miR-637 show potential as reliable biomarkers for diagnosing age-related sarcopenia.
  • These miRNAs are associated with muscle atrophy and may serve as indicators for fracture risk assessment in aging populations.
  • Understanding miRNA changes in sarcopenia can contribute to managing age-related physiological dysfunction.

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