Coronary microvascular pericytes are the cellular target of sunitinib malate-induced cardiotoxicity

Vishnu Chintalgattu1, Meredith L Rees, James C Culver

  • 1Metabolic Disorders, Amgen Inc., Research, South San Francisco, CA, USA. vishnuc@amgen.com

Insights

Sunitinib treatment causes heart problems by damaging pericytes, crucial cells in blood vessels. Thalidomide may protect against this sunitinib-induced cardiotoxicity by preserving pericyte function.

Area of Science:

  • Cardiovascular Research
  • Oncology
  • Pharmacology

Background:

  • Sunitinib malate, a receptor tyrosine kinase inhibitor, treats cancers but can cause cardiac dysfunction.
  • The mechanism behind sunitinib-induced cardiotoxicity remains poorly understood.
  • Coronary microvascular pericytes' role in cardiac health is not well-defined.

Purpose of the Study:

  • Investigate the mechanism of sunitinib-induced cardiotoxicity.
  • Identify the cellular targets of sunitinib in the heart.
  • Explore potential protective strategies against sunitinib cardiotoxicity.

Main Methods:

  • Mice were treated with sunitinib to assess cardiac and coronary microvascular function.
  • The effects of a platelet-derived growth factor receptor (PDGFR) inhibitor (CP-673451) on pericytes were evaluated.
  • Thalidomide's protective effects on pericytes and cardiotoxicity were tested in vitro and in vivo.

Main Results:

  • Sunitinib treatment led to cardiac dysfunction, coronary microvascular impairment, and pericyte depletion in mice.
  • A PDGFR inhibitor mimicked sunitinib's effects, confirming PDGFR signaling's role in pericyte survival.
  • Thalidomide prevented sunitinib-induced pericyte death and cardiotoxicity in the mouse model.

Conclusions:

  • Pericytes are identified as the primary cellular target of sunitinib-induced cardiotoxicity.
  • Pericytes play a critical role in regulating coronary microvascular function.
  • Thalidomide shows potential as a protective agent against cardiotoxicity in cancer patients treated with sunitinib.