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首页> 外文期刊>Biomaterials >Design of prevascularized three-dimensional cell-dense tissues using a cell sheet stacking manipulation technology.
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Design of prevascularized three-dimensional cell-dense tissues using a cell sheet stacking manipulation technology.

机译:使用细胞片堆叠操纵技术设计血管形成前的三维细胞致密组织。

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摘要

To survive three-dimensional (3-D) cell-dense thick tissues after transplantation, the improvements of hypoxia, nutrient insufficiency, and accumulation of waste products are required. This study presents a strategy for the initiation of prevascular networks in a 3-D tissue construct by sandwiching endothelial cells between the cell sheets. For obtaining a stable stacked cell sheet construct, a sophisticated 3-D cell sheet manipulation system using temperature-responsive culture dishes and a cell sheet manipulator was developed. When sparsely cultured human umbilical vein endothelial cells (HUVECs) were sandwiched between two myoblast sheets, the inserted HUVECs sprouted and formed network structures in vitro. Additionally, when myoblast sheets and HUVECs were alternately sandwiched, endothelial cell connections through the layers and capillary-like structures were found in a five-layer construct. Moreover, the endothelial networks in the five-layer myoblast sheet construct were observed to connect to the host vessels after transplantation into the subcutaneous tissues of nude rats, resulted in a neovascularization that allow the graft to survive. These results indicated that the prevascularized myoblast sheet constructs could induce functional anastomosis. Consequently, our prevascularizing method using a cell sheet stacking manipulation technology provides a substantial advance for developing various types of three-dimensional tissues and contributes to regenerative medicine.
机译:为了使三维(3-D)细胞密集的厚组织在移植后存活,需要改善缺氧,营养不足和废物积聚。这项研究提出了一种通过将内皮细胞夹在细胞片之间来启动3-D组织构建物中的血管前网络的策略。为了获得稳定的堆叠细胞片结构,开发了使用温度响应性培养皿和细胞片操纵器的复杂的3-D细胞片操纵系统。将稀疏培养的人脐静脉内皮细胞(HUVEC)夹在两个成肌细胞片之间时,插入的HUVEC会在体外萌芽并形成网络结构。此外,当成肌细胞片和HUVEC交替夹在中间时,在五层构建体中发现了穿过各层的内皮细胞连接和毛细管样结构。此外,观察到五层成肌细胞片构建物中的内皮网络在移植到裸鼠的皮下组织后连接到宿主血管,导致新血管形成,使移植物得以存活。这些结果表明,血管前成肌细胞片构建体可以诱导功能性吻合。因此,我们使用细胞片堆叠操纵技术的血管形成前方法为发展各种类型的三维组织提供了实质性进展,并为再生医学做出了贡献。

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