Contribution of nucleoside-analogue reverse transcriptase inhibitor therapy to lipoatrophy from the population to the

David Nolan1, Emma Hammond, Ian James

  • 1Centre for Clinical Immunology and Biomedical Statistics, Royal Perth Hospital, Murdoch University, Western Australia.

Antiviral Therapy
|February 6, 2004
PubMed
Abstract

Insights

Nucleoside-analogue reverse transcriptase inhibitor (NRTI) therapy, particularly stavudine, causes subcutaneous fat wasting by depleting adipocyte mitochondrial DNA. The severity of fat wasting correlates with NRTI choice and duration of exposure.

Area of Science:

  • HIV/AIDS research
  • Mitochondrial toxicology
  • Adipose tissue biology

Background:

  • Subcutaneous fat wasting is a concern with nucleoside-analogue reverse transcriptase inhibitor (NRTI) therapy.
  • Mitochondrial DNA (mtDNA) toxicity in adipose tissue has been proposed as a mechanism.

Purpose of the Study:

  • To investigate the link between NRTI therapy, adipocyte mtDNA content, adipose tissue toxicity, and fat wasting.
  • To compare stavudine and zidovudine in relation to these outcomes.

Main Methods:

  • Longitudinal analysis of fat wasting using DEXA measurements.
  • Assessment of adipocyte mtDNA depletion in subcutaneous fat biopsies.
  • Correlation of mtDNA levels with fat wasting and NRTI exposure.
  • Confocal microscopy to visualize adipose tissue toxicity.

Main Results:

  • Stavudine therapy showed significantly greater adipocyte mtDNA depletion and fat wasting than zidovudine.
  • Fat wasting was associated with NRTI duration and lower adipocyte mtDNA copies/cell.
  • Adjustment for mtDNA depletion removed the significant association between stavudine/zidovudine choice and fat wasting.
  • Confocal microscopy confirmed a relationship between adipose tissue toxicity severity and mtDNA depletion.

Conclusions:

  • Subcutaneous fat wasting severity is primarily driven by the choice of NRTI (stavudine vs. zidovudine) and duration of exposure.
  • NRTI-induced mitochondrial DNA depletion is the cellular mechanism underlying this effect.