[HTML][HTML] IGF-1 has plaque-stabilizing effects in atherosclerosis by altering vascular smooth muscle cell phenotype

JH von der Thüsen, KS Borensztajn, S Moimas… - The American journal of …, 2011 - Elsevier
JH von der Thüsen, KS Borensztajn, S Moimas, S van Heiningen, P Teeling, TJC van Berkel
The American journal of pathology, 2011Elsevier
Insulin-like growth factor-1 (IGF-1) signaling is important for the maintenance of plaque
stability in atherosclerosis due to its effects on vascular smooth muscle cell (vSMC)
phenotype. To investigate this hypothesis, we studied the effects of the highly inflammatory
milieu of the atherosclerotic plaque on IGF-1 signaling and stability-related phenotypic
parameters of murine vSMCs in vitro, and the effects of IGF-1 supplementation on plaque
phenotype in an atherosclerotic mouse model. M1-polarized, macrophage-conditioned …
Insulin-like growth factor-1 (IGF-1) signaling is important for the maintenance of plaque stability in atherosclerosis due to its effects on vascular smooth muscle cell (vSMC) phenotype. To investigate this hypothesis, we studied the effects of the highly inflammatory milieu of the atherosclerotic plaque on IGF-1 signaling and stability-related phenotypic parameters of murine vSMCs in vitro, and the effects of IGF-1 supplementation on plaque phenotype in an atherosclerotic mouse model. M1-polarized, macrophage-conditioned medium inhibited IGF-1 signaling by ablating IGF-1 and increasing IGF-binding protein 3, increased vSMC apoptosis, and decreased proliferation. Expression of α-actin and col3a1 genes was strongly attenuated by macrophage-conditioned medium, whereas expression of matrix-degrading enzymes was increased. Importantly, all of these effects could be corrected by supplementation with IGF-1. In vivo, treatment with the stable IGF-1 analog Long R3 IGF-1 in apolipoprotein E knockout mice reduced stenosis and core size, and doubled cap/core ratio in early atherosclerosis. In advanced plaques, Long R3 IGF-1 increased the vSMC content of the plaque by more than twofold and significantly reduced the rate of intraplaque hemorrhage. We believe that IGF-1 in atherosclerotic plaques may have a role in preventing plaque instability, not only by modulating smooth muscle cell turnover, but also by altering smooth muscle cell phenotype.
Elsevier