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A thin carboxymethyl cellulose culture substrate for the cellulase-induced harvesting of an endothelial cell sheet

机译:用于纤维素酶诱导的内皮细胞片的纤维素酶诱导的纤维素培养基质的薄羧甲基纤维素培养基

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摘要

Engineered tissues constructed with two-dimensionally organized cells provide promising parts for reconstructing damaged tissues. Here we propose a new method for fabricating a 21) sheet made of an endothelial cell monolayer. First a culture substrate was prepared by treating the glass surface with an amine-terminated organosilicon derivative, followed by the covalent attachment of a thin carboxymethyl cellulose (CMC) layer. Fibronectin was immobilized onto the CMC-coated surface to promote cell adhesion. These surfaces were characterized step by step by means of contact angle measurement and X-ray photoelectron spectroscopy. Porcine aortic endothelial cells adhered to the culture substrate and consequently formed a confluent monolayer. When the substrate-cell composite was immersed in a cellulase solution, a cell sheet was spontaneously detached from the substrate due to enzymatic digestion of the CMC layer. The cell-cell connections were well preserved in the cell sheet, even after detachment from the substrate, most likely due to the fact that cellulase is harmless to mammalian cells. The cell sheet could be transferred to other culture dish with the aid of a hydrophilic membrane support, retaining the proliferation activity of the cells. The results obtained in this study demonstrate that cellulase treatment of the CMC layer is a rational and efficient method for obtaining a 2D cell sheet.
机译:用二维组织细胞构建的工程组织提供了用于重建受损组织的有希望的部件。在这里,我们提出了一种制造由内皮细胞单层制成的21)片的新方法。首先通过用胺封端的有机硅衍生物处理玻璃表面来制备培养基,然后通过薄羧甲基纤维素(CMC)层的共价附着。将纤连蛋白固定在CMC涂覆的表面上以促进细胞粘附。通过接触角测量和X射线光电子能谱,通过逐步表征这些表面。猪粘附到培养基基质上并因此形成汇合单层的猪主动脉内皮细胞。当将底纤维素复合物浸入纤维素溶液溶液中时,由于CMC层的酶消化,从基板中自发地脱离细胞片。即使在衬底脱离之后,细胞 - 细胞连接也很好地保存在细胞片中,很可能是由于纤维素酶对哺乳动物细胞无害的事实。借助于亲水性膜载体,可以将细胞片转移到其它培养皿中,保持细胞的增殖活性。本研究中获得的结果表明,CMC层的纤维素酶治疗是获得2D细胞片的合理和有效的方法。

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