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Updated: May 11, 2026

Isolation and Purification of Murine Cardiac Pericytes
Published on: August 16, 2019
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
Abstract:
Sunitinib malate is a multitargeted receptor tyrosine kinase inhibitor used in the treatment of human malignancies. A substantial number of sunitinib-treated patients develop cardiac dysfunction, but the mechanism of sunitinib-induced cardiotoxicity is poorly understood. We show that mice treated with sunitinib develop cardiac and coronary microvascular dysfunction and exhibit an impaired cardiac response to stress. The physiological changes caused by treatment with sunitinib are accompanied by a substantial depletion of coronary microvascular pericytes. Pericytes are a cell type that is dependent on intact platelet-derived growth factor receptor (PDGFR) signaling but whose role in the heart is poorly defined. Sunitinib-induced pericyte depletion and coronary microvascular dysfunction are recapitulated by CP-673451, a structurally distinct PDGFR inhibitor, confirming the role of PDGFR in pericyte survival. Thalidomide, an anticancer agent that is known to exert beneficial effects on pericyte survival and function, prevents sunitinib-induced pericyte cell death in vitro and prevents sunitinib-induced cardiotoxicity in vivo in a mouse model. Our findings suggest that pericytes are the primary cellular target of sunitinib-induced cardiotoxicity and reveal the pericyte as a cell type of concern in the regulation of coronary microvascular function. Furthermore, our data provide preliminary evidence that thalidomide may prevent cardiotoxicity in sunitinib-treated cancer patients.
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.
