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Desmoplakin is required for microvascular tube formation in culture.

机译:在培养中微血管管的形成需要去氨铂金。

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Desmoplakin (DP) is a key component of cellular adhesion junctions known as desmosomes; however, recent investigations have revealed a novel location for DP in junctions separate from desmosomes termed complexus adherens junctions. These junctions are found at contact sites between endothelial cells that line capillaries. Few studies have focused on the function of DP in de novo capillary formation (vasculogenesis) and branching (angiogenesis) during tumorigenesis, embryonic development, cardiovascular development or wound healing. Only recently have investigations begun to determine the effect the loss of DP has on capillaries during embryogenesis (i.e. in DP-/- mice). Evidence shows that the loss of desmoplakin in vivo results in leaky capillaries and/or capillary malformation. Consequently, the goal of this study was to determine the function of DP in complexus adherens junctions during capillary formation. To accomplish this goal, we used siRNA technology to knock down desmoplakin expression in endothelial cells before they were induced to form microvascular tubes on matrigel. DP siRNA treated cells sent out filopodia and came in close contact with each other when plated onto matrigel; however, in most cases they failed to form tubes as compared with control endothelial cells. Interestingly, after siRNA degradation, endothelial cells were then capable of forming microvascular tubes. In depth analyses into the function of DP in capillary formation were not previously possible because the tools and experimental approaches only recently have become available (i.e. siRNA). Consequently, fully understanding the role of desmoplakin in capillary formation may lead to a novel approach for inhibiting vasculo- and angiogenesis in tumor formation.
机译:桥粒铂(DP)是称为桥粒的细胞粘附连接的关键成分。然而,最近的研究揭示了DP的新位置,该连接位于与称为复合物粘附连接的桥粒分开的连接处。这些连接位于衬在毛细血管的内皮细胞之间的接触部位。很少有研究集中在肿瘤发生,胚胎发育,心血管发育或伤口愈合过程中DP在新生毛细血管形成(血管生成)和分支(血管生成)中的功能。直到最近才开始确定在胚胎发生过程中DP的损失对毛细血管的影响(即在DP-/-小鼠中)的研究。有证据表明,体内去氨铂蛋白的丧失会导致毛细血管渗漏和/或毛细血管畸形。因此,本研究的目的是确定毛细血管形成过程中DP在复合物粘附连接中的功能。为了实现这个目标,我们使用siRNA技术敲除了内皮细胞中的desmoplakin表达,然后诱导它们在基质胶上形成微血管。经DP siRNA处理的细胞散发出丝状伪足,并在接种到基质胶上后彼此紧密接触。然而,在大多数情况下,与对照内皮细胞相比,它们未能形成管。有趣的是,在siRNA降解后,内皮细胞便能够形成微血管管。以前不可能对DP在毛细管形成中的功能进行深入分析,因为仅在最近才有了工具和实验方法(即siRNA)。因此,充分了解去氨铂素在毛细血管形成中的作用可能导致抑制肿瘤形成中血管和血管生成的新方法。

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