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首页> 外文期刊>American Journal of Physiology >Reduced adult endothelial cell EphB4 function promotes venous remodeling
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Reduced adult endothelial cell EphB4 function promotes venous remodeling

机译:成年内皮细胞EphB4的功能降低促进静脉重构

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摘要

Reduced EphB4 expression is observed during vein graft adaptation and is associated with increased venous wall thickening. These findings suggest that EphB4 may mediate normal adult venous endothelial cell (EC) function and vein graft adaptation. We therefore tested the functional significance of EphB4 using EC with genetically reduced EphB4 signaling. EC were isolated from EphB4+/+ and EphB4+/- mice. In vitro function was assessed through EC proliferation, migration, nitric oxide (NO) synthesis, and chemokine production. A mouse vein graft model was used to correlate in vitro findings with in vivo vein grafts. Smooth muscle cells (SMC) were subjected to proliferation and migration assays using EphB4+/+ and EphB4+/- EC-conditioned medium. EphB4+/- EC exhibited diminished proliferation (P 0.0001, n = 6), migration (P 0.0001, n = 3), and NO production (P = 0.0012, n = 3). EphB4+/- EC had increased VEGF-A mRNA (P = 0.0006, n = 6) and protein (P = 0.0106, n = 3) as well as increased secretion of VEGF-A (P = 0.0010, n = 5), PDGF-BB (P 0.0001, n = 6), and TGF-β1 (P 0.0001, n = 6). EphB4+/--conditioned medium promoted SMC proliferation (P 0.0001, n = 7) and migration (P = 0.0358, n = 3). Vein grafts and EphB4+/- EC showed similarity with regard to VEGF-A and eNOS mRNA and protein expression. In conclusion, reduced venous EC EphB4 function is associated with a proangiogenic and mitogenic phenotype. EphB4+/- EC have increased secretion of SMC mitogens and reduced NO production that correlate with the thickened neointima formed during vein graft adaptation. These findings suggest that EphB4 remains active in adult venous EC and that loss of EphB4 plays a role in vein graft adaptation.
机译:在静脉移植适应过程中观察到EphB4表达降低,并且与静脉壁增厚有关。这些发现表明,EphB4可能介导正常的成人静脉内皮细胞(EC)功能和静脉移植物适应。因此,我们使用具有遗传减少的EphB4信号传导的EC测试了EphB4的功能意义。从EphB4 + / +和EphB4 +/-小鼠分离EC。通过EC增殖,迁移,一氧化氮(NO)合成和趋化因子产生来评估体外功能。使用小鼠静脉移植物模型将体外发现与体内静脉移植物相关联。使用EphB4 + / +和EphB4 +/- EC条件培养基对平滑肌细胞(SMC)进行增殖和迁移分析。 EphB4 +/- EC显示出增殖减少(P <0.0001,n = 6),迁移(P <0.0001,n = 3)和NO产生(P = 0.0012,n = 3)。 EphB4 +/- EC具有增加的VEGF-A mRNA(P = 0.0006,n = 6)和蛋白质(P = 0.0106,n = 3)以及增加的VEGF-A分泌(P = 0.0010,n = 5),PDGF -BB(P <0.0001,n = 6)和TGF-β1(P <0.0001,n = 6)。 EphB4 +/-条件培养基促进SMC增殖(P <0.0001,n = 7)和迁移(P = 0.0358,n = 3)。静脉移植物和EphB4 +/- EC在VEGF-A和eNOS mRNA和蛋白表达方面显示出相似性。总之,静脉EC EphB4功能降低与促血管生成和促有丝分裂表型有关。 EphB4 +/- EC增加了SMC促分裂原的分泌,减少了NO的产生,这与在静脉移植适应过程中形成的新内膜增厚有关。这些发现表明,EphB4在成人静脉EC中仍然具有活性,并且EphB4的丧失在静脉移植物适应中起作用。

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