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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Pericyte recruitment during vasculogenic tube assembly stimulates endothelial basement membrane matrix formation.
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Pericyte recruitment during vasculogenic tube assembly stimulates endothelial basement membrane matrix formation.

机译:血管生成管组装期间的周细胞募集刺激内皮基底膜基质的形成。

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We show that endothelial cell (EC)-generated vascular guidance tunnels (ie, matrix spaces created during tube formation) serve as conduits for the recruitment and motility of pericytes along EC ablumenal surfaces to facilitate vessel maturation events, including vascular basement membrane matrix assembly and restriction of EC tube diameter. During quail development, pericyte recruitment along microvascular tubes directly correlates with vascular basement membrane matrix deposition. Pericyte recruitment to EC tubes leads to specific induction of fibronectin and nidogen-1 (ie, matrix-bridging proteins that link together basement membrane components) as well as perlecan and laminin isoforms. Coincident with these events, up-regulation of integrins, alpha(5)beta(1), alpha(3)beta(1), alpha(6)beta(1), and alpha(1)beta(1), which bind fibronectin, nidogens, laminin isoforms, and collagen type IV, occurs in EC-pericyte cocultures, but not EC-only cultures. Integrin-blocking antibodies to these receptors, disruption of fibronectin matrix assembly, and small interfering RNA suppression of pericyte tissue inhibitor of metalloproteinase (TIMP)-3 (a known regulator of vascular tube stabilization) all lead to decreased EC basement membrane, resulting in increased vessel lumen diameter, a key indicator of dysfunctional EC-pericyte interactions. Thus, pericyte recruitment to EC-lined tubes during vasculogenesis is a stimulatory event controlling vascular basement membrane matrix assembly, a fundamental maturation step regulating the transition from vascular morphogenesis to stabilization.
机译:我们显示内皮细胞(EC)生成的血管引导隧道(即,在管形成过程中创建的矩阵空间)充当沿EC初生表面募集和移动周细胞的管道,以促进血管成熟事件,包括血管基底膜基质组装和限制EC管直径。在鹌鹑发育过程中,沿微血管管的周细胞募集与血管基底膜基质沉积直接相关。将周细胞募集至EC管可特异性诱导纤连蛋白和nidogen-1(即,将基底膜成分连接在一起的基质桥接蛋白)以及perlecan和层粘连蛋白同工型。与这些事件同时发生的是整联蛋白,α(5)beta(1),alpha(3)beta(1),alpha(6)beta(1)和alpha(1)beta(1)的上调纤连蛋白,尼古丁,层粘连蛋白同工型和IV型胶原蛋白出现在EC-周细胞共培养物中,而不是仅EC的培养物中。针对这些受体的整联蛋白阻断抗体,纤连蛋白基质装配的破坏以及金属蛋白酶(TIMP)-3(已知的血管管稳定剂的调节剂)的周细胞组织抑制剂的小干扰RNA抑制均导致EC基底膜减少,导致增加血管腔直径,EC-周细胞相互作用异常的关键指标。因此,在血管生成过程中将周细胞募集到EC衬管中是控制血管基底膜基质组装的刺激事件,这是调节从血管形态发生到稳定过程的基本成熟步骤。

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