Bone quantitative ultrasound in congenital and acquired childhood multiple pituitary failure

Alessandro Mussa1, Marialia Repici, Ludovica Fiore

  • 1Department of Pediatrics, University of Torino, Regina Margherita Children Hospital, Torino, Italy. mussa_alessandro@yahoo.it

Insights

Childhood hypopituitarism is linked to reduced bone status, detectable by phalangeal quantitative ultrasound (QUS). Bone health worsens with more deficiencies and acquired conditions, but growth hormone (GH) therapy shows benefits.

Area of Science:

  • Pediatric Endocrinology
  • Bone Metabolism
  • Diagnostic Ultrasound

Background:

  • Childhood hypopituitarism can impact bone health, but its assessment requires sensitive methods.
  • Quantitative ultrasound (QUS) offers a non-invasive approach to evaluate bone status.

Purpose of the Study:

  • To assess bone status in pediatric hypopituitarism using phalangeal QUS.
  • To correlate QUS findings with clinical, laboratory, and therapeutic factors.

Main Methods:

  • Phalangeal quantitative ultrasound (QUS) was used to measure bone transmission time (BTT) and amplitude-dependent speed of sound (AD-SoS) in 43 children.
  • Standard deviation scores (SDS) for BTT and AD-SoS were calculated and compared.
  • Correlations with clinical data, hormonal deficiencies, and growth hormone (GH) treatment were analyzed.

Main Results:

  • Pediatric hypopituitarism patients showed significantly reduced BTT and AD-SoS SDS.
  • Worse bone status was observed in children with more hormonal deficiencies and acquired hypopituitarism.
  • Growth hormone (GH) therapy outcomes correlated with treatment start age, duration, and dosage.

Conclusions:

  • Childhood hypopituitarism is associated with bone morbidity detectable by phalangeal QUS.
  • Skeletal impairment is linked to disease severity and acquired forms, while GH therapy improves bone condition.
  • Phalangeal QUS is a promising tool for monitoring bone disease in hypopituitarism, warranting further research.