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首页> 外文期刊>Hypertension: An Official Journal of the American Heart Association >Negative Regulation of Local Hepatocyte Growth Factor Expression by Angiotensin II and Transforming Growth Factor-β in Blood Vessels
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Negative Regulation of Local Hepatocyte Growth Factor Expression by Angiotensin II and Transforming Growth Factor-β in Blood Vessels

机译:血管紧张素II和转化生长因子-β对血管中局部肝细胞生长因子表达的负调控

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Abstract —Because hepatocyte growth factor (HGF) is a member of the endothelium-specific growth factors, we hypothesized that HGF may play a role in cardiovascular disease. Therefore we first examined the role of local HGF production in endothelial cell (EC) growth. Addition of anti-HGF antibody to EC resulted in a significant decrease in EC number. Moreover, coculture of vascular smooth muscle cells (VSMC) with EC resulted in an increase in EC number that was completely inhibited by anti-HGF antibody, suggesting that HGF secreted from EC and VSMC regulates EC growth in an autocrine-paracrine manner. Interestingly, transforming growth factor (TGF)-β significantly decreased HGF secretion from EC, whereas interleukin 6 stimulated immunoreactive HGF secretion. In human VSMC, TGF-β and angiotensin II suppressed local HGF production in a dose-dependent manner. Interestingly, anti–TGF-β antibody resulted in significant but not complete inhibition of the decrease in local HGF production. To further study the regulation of local HGF production, we used a coculture system. Coculture of VSMC with EC resulted in a significant decrease in local HGF secretion. The decrease in local HGF production by coculture was significantly attenuated by anti–TGF-β antibody, suggesting that inhibition of local HGF production in the coculture system was due to TGF-β activation. Moreover, a further decrease in local HGF production in the coculture system by angiotensin II was also observed. Finally, we studied the role of angiotensin II in the regulation of the local HGF system in vivo by using a balloon injury rat model. Of importance, local HGF production was significantly decreased in balloon-injured arteries compared with intact vessels, accompanied by a reduction of HGF mRNA. An angiotensin-converting enzyme inhibitor (cilazapril) or an angiotensin II type 1 receptor antagonist (E-4177) significantly stimulated local vascular HGF production associated with the inhibition of neointimal formation after balloon injury compared with vehicle. In contrast, hydralazine did not alter local HGF production or neointimal formation despite decreasing blood pressure to a similar level as that in rats treated with cilazapril or E-4177. Overall, local HGF secretion from vascular cells was negatively regulated by TGF-β and angiotensin II. The present study also demonstrated that blockade of angiotensin II significantly inhibited neointimal formation, accompanied by a significant increase in local vascular HGF production in vivo in the balloon injury model. Given the strong mitogenic activity of HGF on endothelial cells, increased local HGF production by blockade of angiotensin II may enhance reendothelialization after balloon injury. Downregulation of the local vascular HGF system by TGF-β and vascular angiotensin may play an important role in the pathogenesis of cardiovascular diseases.
机译:摘要—由于肝细胞生长因子(HGF)是内皮特异性生长因子的成员,我们假设HGF可能在心血管疾病中起作用。因此,我们首先检查了局部HGF产生在内皮细胞(EC)生长中的作用。向EC中添加抗HGF抗体导致EC数显着减少。此外,血管平滑肌细胞(VSMC)与EC的共培养导致EC数量增加,该数量完全被抗HGF抗体抑制,表明EC和VSMC分泌的HGF以自分泌-旁分泌方式调节EC的生长。有趣的是,转化生长因子(TGF)-β显着降低了EC中HGF的分泌,而白介素6刺激了免疫反应性HGF的分泌。在人VSMC中,TGF-β和血管紧张素II以剂量依赖性方式抑制了局部HGF的产生。有趣的是,抗TGF-β抗体对局部HGF产生的减少有明显但不完全的抑制作用。为了进一步研究当地HGF生产的调控,我们使用了共培养系统。 VSMC与EC的共培养导致局部HGF分泌显着减少。抗TGF-β抗体显着减弱了共培养引起的局部HGF产生的减少,这表明共培养系统对局部HGF产生的抑制作用是由于TGF-β激活引起的。此外,还观察到血管紧张素II在共培养系统中进一步降低了局部HGF的产生。最后,我们通过使用球囊损伤大鼠模型研究了血管紧张素II在体内局部HGF系统调节中的作用。重要的是,与完整的血管相比,球囊损伤的动脉中局部HGF的产生显着减少,同时HGF mRNA降低。与媒介物相比,血管紧张素转换酶抑制剂(西拉普利)或血管紧张素II 1型受体拮抗剂(E-4177)可显着刺激局部血管HGF的产生,并抑制球囊损伤后新内膜的形成。相比之下,肼屈嗪尽管将血压降低至与西拉普利或E-4177治疗的大鼠相似的水平,但并没有改变局部HGF的产生或新内膜的形成。总体而言,TGF-β和血管紧张素II负调控血管细胞局部HGF的分泌。本研究还表明,在球囊损伤模型中,血管紧张素II的阻断可显着抑制新内膜的形成,并伴有体内局部血管HGF产生的显着增加。鉴于HGF对内皮细胞有很强的促有丝分裂活性,通过阻断血管紧张素II增加局部HGF的产生可能会增强球囊损伤后的内皮重塑。 TGF-β和血管血管紧张素对局部血管HGF系统的下调可能在心血管疾病的发病机理中起重要作用。

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