Differential Associations of Circulating MicroRNAs With Pathogenic Factors in NAFLD

Ghideon Ezaz1, Hirsh D Trivedi2, Margery A Connelly3

  • 1Division of Hepatology Icahn School of Medicine at Mount Sinai New York NY.

Insights

Four microRNAs (miRNAs) show strong links to nonalcoholic fatty liver disease (NAFLD) severity and fibrosis. These circulating miRNAs, including miR-34a, correlate with NAFLD progression and key pathogenic factors like insulin resistance.

Area of Science:

  • Hepatology
  • Molecular Biology
  • Genetics

Background:

  • Nonalcoholic fatty liver disease (NAFLD) is a complex liver condition influenced by genetic and environmental factors.
  • MicroRNAs (miRNAs) are key regulators of cellular processes, with specific miRNAs implicated in NAFLD and liver fibrosis.
  • Limited human studies exist on the differential associations of circulating miRNAs with NAFLD's histological features and underlying causes.

Purpose of the Study:

  • To investigate the distinct relationships between five specific circulating miRNAs (miR-34a, miR-122, miR-191, miR-192, miR-200a) and the histological characteristics of NAFLD.
  • To explore the associations of these miRNAs with common genetic risk factors for NAFLD and with insulin resistance.

Main Methods:

  • A cross-sectional study involving 132 individuals with biopsy-proven NAFLD.
  • Quantification of circulating miRNA levels (miR-34a, miR-122, miR-191, miR-192, miR-200a) using z-scores.
  • Analysis of correlations with histological features (steatosis, inflammation, ballooning, fibrosis), NAFLD-associated genetic polymorphisms (e.g., PNPLA3, TM6SF2), and insulin resistance (eLP-IR).

Main Results:

  • miR-34a, miR-122, miR-192, and miR-200a showed significant positive correlations with increasing stages of liver fibrosis.
  • Multivariate analysis revealed independent associations of miR-34a, miR-122, and miR-192 with hepatic steatosis and fibrosis.
  • miR-34a, miR-122, and miR-192 were linked to pathogenic factors including insulin resistance and specific genetic variants (PNPLA3 I148M, TM6SF2 E167K), while miR-200a was primarily associated with the TM6SF2 E167K variant.
  • miR-34a demonstrated the strongest predictive capability for fibrosis stages.

Conclusions:

  • Specific circulating miRNAs (miR-34a, miR-122, miR-192, miR-200a) are strongly associated with NAFLD severity and fibrosis.
  • These miRNAs exhibit differential relationships with NAFLD's histological features and its contributing pathogenic factors, offering potential biomarkers.