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D-series resolvin attenuates vascular smooth muscle cell activation and neointimal hyperplasia following vascular injury

机译:D系列RESOLVIN减轻血管损伤后血管平滑肌细胞的活化和新内膜增生

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摘要

Recent evidence suggests that specialized lipid mediators derived from polyunsaturated fatty acids control resolution of inflammation, but little is known about resolution pathways in vascular injury. We sought to determine the actions of D-series resolvin (RvD) on vascular smooth muscle cell (VSMC) phenotype and vascular injury. Human VSMCs were treated with RvD1 and RvD2, and phenotype was assessed by proliferation, migration, monocyte adhesion, superoxide production, and gene expression assays. A rabbit model of arterial angioplasty with local delivery of RvD2 (10 nM vs. vehicle control) was employed to examine effects on vascular injury in vivo. Local generation of proresolving lipid mediators (LC-MS/MS) and expression of RvD receptors in the vessel wall were assessed. RvD1 and RvD2 produced dose-dependent inhibition of VSMC proliferation, migration, monocyte adhesion, superoxide production, and proinflammatory gene expression (IC50≈0.1–1 nM). In balloon-injured rabbit arteries, cell proliferation (51%) and leukocyte recruitment (41%) were reduced at 3 d, and neointimal hyperplasia was attenuated (29%) at 28 d by RvD2. We demonstrate endogenous biosynthesis of proresolving lipid mediators and expression of receptors for RvD1 in the artery wall. RvDs broadly reduce VSMC responses and modulate vascular injury, suggesting that local activation of resolution mechanisms expedites vascular homeostasis.—Miyahara, T., Runge, S., Chatterjee, A., Chen, M., Mottola, G., Fitzgerald, J. M., Serhan, C. N., Conte, M. S. D-series resolvin attenuates vascular smooth muscle cell activation and neointimal hyperplasia following vascular injury.
机译:最近的证据表明,衍生自多不饱和脂肪酸的专门脂质介体可控制炎症的消退,但对于血管损伤的消退途径知之甚少。我们试图确定D系列resolvin(RvD)对血管平滑肌细胞(VSMC)表型和血管损伤的作用。用RvD1和RvD2处理人VSMC,并通过增殖,迁移,单核细胞粘附,超氧化物产生和基因表达分析评估表型。采用局部递送RvD2的兔动脉血管成形术模型(10 nM vs.载体对照)检查体内对血管损伤的影响。评估了局部溶解脂质介体(LC-MS / MS)的局部生成以及RvD受体在血管壁中的表达。 RvD1和RvD2对VSMC增殖,迁移,单核细胞粘附,超氧化物生成和促炎基因表达产生剂量依赖性抑制(IC50≈0.1-1nM)。在球囊损伤的兔动脉中,RvD2在3 d时细胞增殖(51%)和白细胞募集(41%)减少,新内膜增生在28 d时减弱(29%)。我们证明内源性的脂质介体生物合成和RvD1受体在动脉壁中的表达。 RvDs广泛降低VSMC反应并调节血管损伤,提示局部激活机制可加快血管稳态。-Miyahara,T.,Runge,S.,Chatterjee,A.,Chen,M.,Mottola,G.,Fitzgerald,JM D,resolvin减弱了血管损伤后血管平滑肌细胞的活化和新内膜增生。

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