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Influence of Endothelial Cells on Vascular Smooth Muscle Cells Phenotype after Irradiation

机译:辐照后内皮细胞对血管平滑肌细胞表型的影响

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摘要

Damage to vessels is one of the most common effects of therapeutic irradiation on normal tissues. We undertook a study in patients treated with preoperative radiotherapy and demonstrated >in vivo the importance of proliferation, migration, and fibrogenic phenotype of vascular smooth muscle cells (VSMCs) in radiation-induced vascular damage. These lesions may result from imbalance in the cross talk between endothelial cells (ECs) and VSMCs. Using co-culture models, we examined whether ECs influence proliferation, migration, and fibrogenic phenotype of VSMCs. In the presence of irradiated ECs, proliferation and migration of VSMCs were increased. Moreover, expressions of α-smooth muscle actin, connective tissue growth factor, plasminogen activator inhibitor type 1, heat shock protein 27, and collagen type III, alpha 1 were up-regulated in VSMCs exposed to irradiated ECs. Secretion of transforming growth factor (TGF)-β1 was increased after irradiation of ECs, and irradiated ECs activated the Smad pathway in VSMCs by inducing Smad3/4 nuclear translocation and Smad-dependent promoter activation. Using small interferring RNA targeting Smad3 and a TGFβ-RII neutralizing antibody, we demonstrate that a TGF-β1/TGF-β-RII/Smad3 pathway is involved in the fibrogenic phenotype of VSMCs induced by irradiated ECs. In conclusion, we show the importance of proliferation, migration, and fibrogenic phenotype of VSMCs in patients. Moreover, we demonstrate >in vitro that ECs influence these fundamental mechanisms involved in radiation-induced vascular damages.
机译:血管损伤是治疗性辐射对正常组织最常见的影响之一。我们对术前放疗的患者进行了一项研究,并证明了>体内在血管性平滑肌细胞(VSMC)的增殖,迁移和纤维化表型对放射线诱发的血管损伤的重要性。这些损伤可能是由于内皮细胞(EC)与VSMC之间的串扰不平衡所致。使用共培养模型,我们检查了ECs是否影响VSMCs的增殖,迁移和纤维化表型。在受到辐射的EC的存在下,VSMC的增殖和迁移增加。此外,α-平滑肌肌动蛋白,结缔组织生长因子,纤溶酶原激活物抑制剂1型,热休克蛋白27和III型胶原的表达在暴露于ECs的VSMC中上调。 ECs照射后,转化生长因子(TGF)-β1的分泌增加,并且受辐照的ECs通过诱导Smad3 / 4核易位和Smad依赖性启动子激活而激活了VSMC中的Smad途径。使用靶向Smad3和TGFβ-RII中和抗体的小干扰RNA,我们证明了TGF-β1/TGF-β-RII/ Smad3途径参与了受辐射EC诱导的VSMC的纤维化表型。总之,我们显示了患者中VSMC的增殖,迁移和纤维化表型的重要性。此外,我们>在体外证明了EC影响这些与辐射引起的血管损伤有关的基本机制。

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