Circulating Irisin in Children and Adolescents With Prader-Willi Syndrome: Relation With Glucose Metabolism

Stefania Mai1, Danilo Fintini2, Chiara Mele3

  • 1Laboratory of Metabolic Research, Istituto Auxologico Italiano, Istituto di Ricovero e Cura a Carattere Scientifico (IRCCS), San Giuseppe Hospital, Piancavallo, Verbania, Italy.

Insights

Irisin levels are lower in children with Prader Willi Syndrome (PWS) and are linked to insulin sensitivity. This study explores irisin

Area of Science:

  • Endocrinology
  • Metabolism
  • Pediatrics

Background:

  • Irisin, a myokine, influences energy expenditure and glucose homeostasis.
  • Its role in pediatric obesity, particularly Prader Willi Syndrome (PWS), is under-researched.
  • PWS is a genetic disorder characterized by a predisposition to obesity.

Purpose of the Study:

  • To investigate serum irisin levels in children and adolescents with PWS compared to controls.
  • To assess the relationship between irisin, body composition, and metabolic profiles in PWS.
  • To explore irisin's association with insulin sensitivity in PWS and common obesity.

Main Methods:

  • Assessed serum irisin, body composition (DXA), and metabolic profiles including oral glucose tolerance tests (OGTT) in 25 PWS subjects and 25 BMI-matched controls.
  • Measured fasting and 2h post-OGTT insulin, HOMA-IR, and fasting C-peptide.
  • Utilized univariate correlation and stepwise multivariable regression analyses.

Main Results:

  • PWS subjects exhibited lower fat-free mass, fasting insulin, 2h post-OGTT insulin, and HOMA-IR compared to controls.
  • Serum irisin levels were significantly lower in the PWS group than in controls with common obesity.
  • Irisin positively correlated with insulin levels during OGTT and HOMA-IR, and was independently predicted by 2h post-OGTT insulin.

Conclusions:

  • Lower irisin levels are observed in children and adolescents with PWS.
  • Irisin levels are associated with insulin sensitivity markers in PWS.
  • Findings suggest a link between irisin and metabolic regulation in distinct obesity models.

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