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首页> 外文期刊>Microvascular Research: An International Journal >Three-dimensional cell-dense constructs containing endothelial cell-networks are an effective tool for in vivo and in vitro vascular biology research.
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Three-dimensional cell-dense constructs containing endothelial cell-networks are an effective tool for in vivo and in vitro vascular biology research.

机译:包含内皮细胞网络的三维细胞密集构建体是体内和体外血管生物学研究的有效工具。

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摘要

Angiogenesis is a complicated natural process, and understanding the mechanism by which it occurs is important for medical, pharmaceutical, and cell biological sciences. Many techniques for investigating angiogenesis have been reported. In this study, we introduced a novel application of a cell culture technique that can be used in in vitro and in vivo vascular biology research. Cultivated endothelial cells (ECs) were harvested from temperature responsive culture dishes by reducing the temperature, without the need for a proteinase treatment. For this technique, the direct contact of ECs with fibroblasts was important for the formation of a capillary-like network in vitro. Moreover, layered cell sheets containing EC-networks produced lumen and vascular structures in the three-dimensional constructs, as well as in the construct transplanted into a living body. Thus, our culture technique was able to create cell sheets and three-dimensional constructs containing EC-networks, because they preserved normal and intrinsic cell-cell direct contact and various cell adhesive factors. Moreover, the thickness of these three-dimensional (3-D) constructs could be controlled by the number of layered cell sheets. These observations indicated that our novel technology contributed to the progress of vascular biology and lead to a new tool that can be used in in vivo and in vitro vascular biology research.
机译:血管生成是一个复杂的自然过程,因此了解其发生的机制对于医学,制药和细胞生物学非常重要。已经报道了许多研究血管生成的技术。在这项研究中,我们介绍了一种细胞培养技术的新应用,该技术可用于体外和体内血管生物学研究。通过降低温度从温度响应性培养皿中收获培养的内皮细胞(EC),而无需进行蛋白酶处理。对于此技术,EC与成纤维细胞的直接接触对于体外形成毛细血管状网络很重要。而且,包含EC网络的层状细胞片在三维构建体以及移植到活体内的构建体中产生内腔和血管结构。因此,我们的培养技术能够创建包含EC网络的细胞片和三维构建体,因为它们保留了正常的和固有的细胞间直接接触以及各种细胞粘附因子。而且,这些三维(3-D)结构的厚度可以通过分层的细胞片的数量来控制。这些观察结果表明我们的新技术为血管生物学的发展做出了贡献,并导致了一种可用于体内和体外血管生物学研究的新工具。

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