Colchicine promotes atherosclerotic plaque stability independently of inflammation
Li, W.; Lin, A.; Hutton, M.; Dhaliwal, H.; Nadel, J.; Rodor, J.; Tumanov, S.; Örd, T.; Hadden, M.; Mokry, M.; Mol, B. M.; Pasterkamp, G.; Padula, M. P.; Geczy, C. L.; Ramaswamy, Y.; Sluimer, J. C.; Kaikkonen, M. U.; Stocker, R.; Baker, A.; Fisher, E.; Patel, S.; Misra, A.
Show abstract
Atherosclerosis is a chronic inflammatory disease which is driven in part by the aberrant trans-differentiation of vascular smooth muscle cells (SMCs). No therapeutic drug has been shown to reverse detrimental SMC-derived cell phenotypes into protective phenotypes, a hypothesized enabler of plaque regression and improved patient outcome. Herein, we describe a novel function of colchicine in the beneficial modulation of SMC-derived cell phenotype, independent of its conventional anti-inflammatory effects. Using SMC fate mapping in an advanced atherosclerotic lesion model, colchicine induced plaque regression by converting pathogenic SMC-derived macrophage-like and osteoblast-like cells into protective myofibroblast-like cells which thickened, and thereby stabilized, the fibrous cap. This was dependent on Notch3 signaling in SMC-derived plaque cells. These findings may help explain the success of colchicine in clinical trials relative to other anti-inflammatory drugs. Thus, we demonstrate the potential of regulating SMC phenotype in advanced plaque regression through Notch3 signaling, in addition to the canonical anti-inflammatory actions of drugs to treat atherosclerosis.
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