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Quantitative Analysis of Cellular Composition in Advanced Atherosclerotic Lesions of Smooth Muscle Cell Lineage-Tracing Mice
Published on: February 20, 2019
Function of scavenger receptor class A type I/II is not important for smooth muscle foam cell formation
Birgit Luechtenborg1, Oliver Hofnagel, Gabriele Weissen-Plenz
1Leibniz-Institute for Arteriosclerosis Research, University Hospital of Muenster, Germany.
Abstract:
Macrophages (MPhi) and smooth muscle cells (SMC) are transformed into foam cells by massive accumulation of modified lipoproteins during atherogenesis. It is known that class AI/II scavenger receptors participate in the foam cell formation of MPhi. The mechanism of lipid accumulation in SMC is however unknown. Therefore, we investigated if class AI/II scavenger receptors mediate the uptake of modified lipoproteins in SMC. Additionally, we examined the influence of MPhi and proinflammatory cytokines in this process. Our flow cytometric experiments revealed significant uptake of DiI-AcLDL in SMC. This uptake was markedly enhanced by IL-1alpha and TNF-alpha, whereas cocultured MPhi decreased the uptake of DiI-AcLDL in SMC. Competition and blocking experiments were performed to enlighten the role of class AI/II scavenger receptors. The competition experiments showed that surplus NatLDL, a ligand not known to interact with class AI/II scavenger receptors, caused a drastically decreased uptake of DiI-AcLDL in SMC. Additionally, blocking of class AI/II scavenger receptors with antibody 2F8 did not influence the uptake of DiI-AcLDL in SMC. Furthermore, fluorescence microscopic double staining of human coronary arteries with early, intermediate and advanced atherosclerotic lesions showed no colocalization of class AI scavenger receptors with SMC. These results indicate that class AI/II scavenger receptors play only a minor role in the uptake of modified lipoproteins in SMC. We suggest that SMC foam cell formation is mainly mediated by other receptors than class AI/II scavenger receptors.
Insights
Class AI/II scavenger receptors play a minor role in smooth muscle cell foam cell formation during atherogenesis. Other receptors likely mediate modified lipoprotein uptake in smooth muscle cells.
Area of Science:
- Cardiovascular Biology
- Atherosclerosis Research
- Cellular Lipid Metabolism
Background:
- Macrophages (MPhi) and smooth muscle cells (SMC) transform into foam cells via modified lipoprotein accumulation.
- Class AI/II scavenger receptors are known to mediate foam cell formation in MPhi.
- The mechanism of lipid accumulation in SMC remains unclear.
Purpose of the Study:
- To investigate if class AI/II scavenger receptors mediate modified lipoprotein uptake in SMC.
- To examine the influence of MPhi and proinflammatory cytokines on this process.
Main Methods:
- Flow cytometry to assess DiI-AcLDL uptake in SMC.
- Competition and blocking experiments using NatLDL and antibody 2F8.
- Fluorescence microscopic double staining of human coronary arteries.
Main Results:
- SMC showed significant uptake of DiI-AcLDL, enhanced by IL-1alpha and TNF-alpha.
- Co-cultured MPhi decreased DiI-AcLDL uptake in SMC.
- Competition with NatLDL reduced uptake, but blocking class AI/II receptors had no effect.
- No colocalization of class AI scavenger receptors with SMC in atherosclerotic lesions.
Conclusions:
- Class AI/II scavenger receptors play a minor role in modified lipoprotein uptake by SMC.
- SMC foam cell formation is likely mediated by receptors other than class AI/II scavenger receptors.
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