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Updated: Nov 11, 2025

Assessing Whole-Body Lipid-Handling Capacity in Mice
Published on: November 24, 2020
Circulating CD36 is increased in hyperlipidemic mice: Cellular sources and triggers of release
Sudipta Biswas1, Detao Gao1, Jessica B Altemus1
1Department of Inflammation and Immunity, Cleveland Clinic, 9500 Euclid Ave, Cleveland, OH, 44195, USA.
Insights
Circulating CD36 (cCD36) is elevated in hyperlipidemia. Oxidized phospholipids trigger CD36 release from multiple cell types, including endothelial cells, linking cCD36 to this condition.
Area of Science:
- Biochemistry
- Immunology
- Cardiovascular Research
Background:
- CD36 is a glycoprotein found on various cells.
- Circulating CD36 (cCD36) is linked to chronic inflammatory diseases.
- The presence and origin of cCD36 in hyperlipidemia are unknown.
Purpose of the Study:
- To determine if cCD36 is present in hyperlipidemia.
- To identify the cellular sources of cCD36 in hyperlipidemia.
- To investigate triggers for CD36 release in hyperlipidemia.
Main Methods:
- Analysis of plasma cCD36 levels in hyperlipidemic mouse models (ApoE-/- and Ldlr-/-).
- Utilized cell-specific CD36 knockout mice to determine cellular origins.
- In vitro and in vivo experiments using oxidized phospholipids (oxPCCD36) to study CD36 release.
Main Results:
- Plasma cCD36 levels are increased in hyperlipidemic mice.
- Multiple cell types, notably endothelial cells, contribute to cCD36 generation.
- Oxidized phospholipids induce CD36 release from cells and in vivo.
Conclusions:
- Establishes the presence of cCD36 in hyperlipidemia.
- Links cCD36 to oxidized phospholipids, oxidative stress, and inflammation in hyperlipidemia.
Abstract:
CD36 is a multifunctional transmembrane glycoprotein abundantly expressed in several cell types. Recent studies have identified CD36 in circulation (cCD36) in several chronic inflammatory diseases, including type 2 diabetes and chronic kidney disease, and proposed cCD36 to be a biomarker of disease activity. Whether cCD36 is present in hyperlipidemia, a condition characterized by oxidative stress and low-grade inflammation, is not known. In addition, the cellular origin of cCD36 and triggers of CD36 release have not been elucidated. We now demonstrate that plasma cCD36 level is increased in hyperlipidemic ApoE-/- and Ldlr-/- mice. Using several cell-specific CD36 knockout mice, we showed that multiple cell types contribute to cCD36 generation in hyperlipidemic conditions, with a particularly strong contribution from endothelial cells. In vitro studies have demonstrated that oxidized phospholipids, ligands for CD36 (oxPCCD36), which are known to accumulate in circulation in hyperlipidemia, induce a robust release of CD36 from several cell types. In vivo studies have demonstrated CD36 release into the circulation of WT mice in response to tail-vein injection of oxPCCD36. These findings document the presence of cCD36 in hyperlipidemia and identify a link between cCD36 and oxidized phospholipids generated under oxidative stress and low-grade inflammation associated with hyperlipidemia.
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