Key result
Macrophage uncoupling and UCP2 overexpression produce ~0.13°C of heat, suggesting UCP2 mediates plaque temperature heterogeneity.
Why the study?
Rupture-prone atherosclerotic plaques show elevated temperature, but the molecular mechanism underlying this phenomenon is unknown.
Mean Difference: 0.13
UCP2 expression in macrophages contributes to temperature heterogeneity in atherosclerotic plaques, providing a molecular basis for using thermography to detect unstable plaques.
UCP2 may mediate plaque temperature heterogeneity in animals; leaves open whether thermography can detect unstable plaques in patients.
AIMS: Rupture-prone atherosclerotic plaques show an elevated temperature, but a molecular explanation for this phenomenon is unknown. Here, we investigated whether mitochondrial uncoupling protein 2 (UCP2) could be involved because this protein is a macrophage homologue of thermogenin in brown fat tissue. METHODS AND RESULTS: Immunohistochemistry, western blotting, and real-time quantitative polymerase chain reaction were used to detect UCP2 expression in human and rabbit atherosclerotic plaques. Temperature was measured in plaques with thermography catheters and in cultured cells with precision thermometers. UCP2 was abundantly expressed in subendothelial macrophages of atherosclerotic plaques but not in deeper layers of the plaque. Ex vivo temperature measurements in atherosclerotic rabbit thoracic aorta demonstrated a correlation between local plaque temperature, total macrophage mass, and UCP2 expression. In vitro, chemical uncoupling of macrophages with sodium cyanide resulted in heat production (DeltaT = 0.13 +/- 0.04 degrees C vs. controls). Also, overexpression of UCP2 in cultured cells led to a similar increase in temperature. CONCLUSION: Our findings provide evidence that temperature heterogeneity in atherosclerotic plaques is at least in part attributed to UCP2 expression in macrophages. The heat generated might be used to detect unstable, macrophage-rich, atherosclerotic plaques via thermography.
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Parre et al. (2007) studied Atherosclerotic plaques. UCP2 expression and chemical uncoupling vs. Controls was evaluated on Heat production (DeltaT 0.13). Chemical uncoupling of macrophages and overexpression of UCP2 resulted in heat production (DeltaT = 0.13 +/- 0.04 degrees C), suggesting UCP2 mediates temperature heterogeneity in plaques.
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