Effects of senolytic drugs on human mesenchymal stromal cells

Clara Grezella1, Eduardo Fernandez-Rebollo1, Julia Franzen1

  • 1Helmholtz-Institute for Biomedical Engineering, Stem Cell Biology and Cellular Engineering, RWTH Aachen University Medical School, Pauwelsstraße 20, 52074, Aachen, Germany.

Abstract

Insights

Senolytic drug ABT-263 showed a moderate senolytic effect in human mesenchymal stromal cells (MSCs), but did not reverse key aging markers. Further research is needed for more potent senolytic drugs for regenerative medicine.

Area of Science:

  • Cellular senescence
  • Regenerative medicine
  • Aging research

Background:

  • Senolytic drugs aim to eliminate senescent cells, potentially rejuvenating tissues and extending lifespan.
  • Previous studies suggested benefits in animal models, but effects on human mesenchymal stromal cells (MSCs) during replicative senescence were unexamined.

Purpose of the Study:

  • To investigate the senolytic potential of four drugs (ABT-263, quercetin, nicotinamide riboside, danazol) on human MSCs undergoing replicative senescence.
  • To assess the impact of these drugs on molecular markers of senescence, including SA-β-gal, telomere length, and DNA methylation.

Main Methods:

  • Long-term expansion of human MSCs until replicative senescence.
  • Treatment with ABT-263, quercetin, nicotinamide riboside, and danazol.
  • Analysis of senescence markers: SA-β-gal staining, telomere attrition, and epigenetic changes.

Main Results:

  • ABT-263 demonstrated a significant, albeit moderate, senolytic effect in human MSCs.
  • Reduced SA-β-gal staining was observed in senescent MSCs treated with ABT-263.
  • No significant effects were found for any drug on population doublings, telomere length, or epigenetic senescence predictions.

Conclusions:

  • ABT-263 is the only compound tested with a senolytic effect in human MSCs, but it did not lead to rejuvenation concerning telomere length or epigenetic markers.
  • The development of more potent senolytic drugs is crucial for advancing regenerative medicine applications.

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