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Facile fabrication of tissue-engineered constructs using nanopatterned cell sheets and magnetic levitation

机译:使用纳米透明型细胞片和磁悬浮构造组织工程构建体的制造

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摘要

We report a simple and versatile method for in vitro fabrication of scaffold-free tissue-engineered constructs with predetermined cellular alignment, by combining magnetic cell levitation with thermoresponsive nanofabricated substratum (TNFS) based cell sheet engineering technique. The TNFS based nanotopography provides contact guidance cues for regulation of cellular alignment and enables cell sheet transfer, while magnetic nanoparticles facilitate the magnetic levitation of the cell sheet. The temperature-mediated change in surface wettability of the thermoresponsive poly(N-isopropylacrylamide), substratum enables the spontaneous detachment of cell monolayers, which can then be easily manipulated through use of a ring or disk shaped magnet. Our developed platform could be readily applicable to production of tissue-engineered constructs containing complex physiological structures for the study of tissue structure-function relationships, drug screening, and regenerative medicine.
机译:通过将磁性电池悬浮与基于热型纳米制型底屑(TNF)的电池板工程技术相结合,举报了一种简单而多功能地制造具有预定蜂窝取向的支架无组织工程构建体的体外制造。 基于TNFS的纳米复印件提供用于调节细胞比对的接触引导提示,并且能够使细胞片转移,而磁性纳米颗粒促进细胞片的磁悬浮。 热响应性聚(N-异丙基丙烯酰胺)的表面润湿性的温度介导的变化,底层使细胞单层的自发脱离能够通过使用环或盘形磁体来容易地操纵。 我们开发的平台可以容易地适用于组织工程构建体的生产,该构建体含有复杂的生理结构,用于研究组织结构功能关系,药物筛选和再生医学。

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