首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Encouraging Effect of Cadherin-Mediated Cell-Cell Junctions on Transfer Printing of Micropatterned Vascular Endothelial Cells
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Encouraging Effect of Cadherin-Mediated Cell-Cell Junctions on Transfer Printing of Micropatterned Vascular Endothelial Cells

机译:钙黏着蛋白介导的细胞间连接对微模式化血管内皮细胞转移印花的促进作用

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We made micropatterned vascular endothelial cells, which have a regular capillary tube-like structure, on a bioactive hydrogel matrix. We applied a stamping method to transfer micropatterned bovine aortic endothelial cells to a growth factor-reduced basement membrane matrix (Matrigel) and type I collagen gel. In this study, we addressed the issues of how to accelerate cell transfer and the effective factors in doing so. We focused on the effects of the cell-substratum and cell-cell adhesiveness prior to applying cultured endothelial cells to a hydrogel matrix on cellular behavior under transfer printing. We found that individual cells cultured sparsely on substrata with different cell adhesivity transferred to Matrigel up to 40%, whereas cells cultured on patterned substrata having lines of 60 mu m in width, which involved cell-cell contacts, could transfer homogeneously to Matrigel within a few hours. The morphology of such cells changed from a tape-like monolayer into a thinner, tube-like structure. The speed and the ratio of transfer of micropatterned cells to Matrigel were affected by the period of cell culture on micropatterned substrata. We also found that the intensity of vascular endothelial cadherin staining at cell-cell junctions of micropatterned cells was correlated with cellular behavior when applying them to Matrigel, on which cells formed a tube-like structure or to which cells migrated individually. Furthermore, micropatterned cells made regular tube-like structures when applied to type I collagen gel. Such tube-like endothelial cells had good viability. These findings may be useful for creating in vitro angiogenesis assays and tissue-like constructs that include capillary-like networks of vascular endothelial cells.
机译:我们在具有生物活性的水凝胶基质上制备了具有规则毛细管状结构的微模式血管内皮细胞。我们应用了一种冲压方法,将微图案化的牛主动脉内皮细胞转移到生长因子降低的基底膜基质(Matrigel)和I型胶原凝胶上。在这项研究中,我们解决了如何加速细胞转移的问题以及这样做的有效因素。在转移培养下将培养的内皮细胞应用于水凝胶基质之前,我们集中研究了细胞基质和细胞间粘附性的影响。我们发现,稀疏地培养在不同基质上的单个细胞具有不同的细胞黏附性,转移至基质胶的比例高达40%,而在图案化基质上培养的宽度为60μm的线(涉及细胞与细胞之间的接触)的细胞可以均匀地转移到基质胶中。几个小时。这种细胞的形态从带状单层变为更薄的管状结构。微模式细胞向基质胶转移的速度和比例受微模式基质上细胞培养时间的影响。我们还发现,将微模式细胞的细胞-细胞连接处的血管内皮钙黏着蛋白染色的强度与将其应用于Matrigel时的细胞行为相关,Matrigel在其上形成管状结构或向单个细胞迁移。此外,微图案细胞在应用于I型胶原蛋白凝胶时会形成规则的管状结构。这样的管状内皮细胞具有良好的生存能力。这些发现对于建立体外血管生成测定和包括血管内皮细胞的毛细管样网络的组织样构建体可能是有用的。

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