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具有可调孔结构和温敏功能的纳米复合培养膜用于可转印的干细胞衍生的心肌片。

Nanothin Coculture Membranes with Tunable Pore Architecture and Thermoresponsive Functionality for Transfer-Printable Stem Cell-Derived Cardiac Sheets.

机构信息

Department of Chemical and Biomolecular Engineering & KI for Nano Century, Korea Advanced Institute of Science and Technology , Daejeon 305-701, Republic of Korea.

出版信息

ACS Nano. 2015 Oct 27;9(10):10186-202. doi: 10.1021/acsnano.5b03823. Epub 2015 Sep 16.

Abstract

Coculturing stem cells with the desired cell type is an effective method to promote the differentiation of stem cells. The features of the membrane used for coculturing are crucial to achieving the best outcome. Not only should the membrane act as a physical barrier that prevents the mixing of the cocultured cell populations, but it should also allow effective interactions between the cells. Unfortunately, conventional membranes used for coculture do not sufficiently meet these requirements. In addition, cell harvesting using proteolytic enzymes following coculture impairs cell viability and the extracellular matrix (ECM) produced by the cultured cells. To overcome these limitations, we developed nanothin and highly porous (NTHP) membranes, which are ∼20-fold thinner and ∼25-fold more porous than the conventional coculture membranes. The tunable pore size of NTHP membranes at the nanoscale level was found crucial for the formation of direct gap junctions-mediated contacts between the cocultured cells. Differentiation of the cocultured stem cells was dramatically enhanced with the pore size-customized NTHP membrane system compared to conventional coculture methods. This was likely due to effective physical contacts between the cocultured cells and the fast diffusion of bioactive molecules across the membrane. Also, the thermoresponsive functionality of the NTHP membranes enabled the efficient generation of homogeneous, ECM-preserved, highly viable, and transfer-printable sheets of cardiomyogenically differentiated cells. The coculture platform developed in this study would be effective for producing various types of therapeutic multilayered cell sheets that can be differentiated from stem cells.

摘要

将干细胞与所需的细胞类型共培养是促进干细胞分化的有效方法。用于共培养的膜的特性对于实现最佳结果至关重要。该膜不仅应作为物理屏障,防止共培养细胞群体混合,而且还应允许细胞之间进行有效相互作用。不幸的是,用于共培养的常规膜并不能充分满足这些要求。此外,在用共培养后用蛋白水解酶收获细胞会损害细胞活力和培养细胞产生的细胞外基质 (ECM)。为了克服这些限制,我们开发了纳米薄且高度多孔 (NTHP) 膜,其比常规共培养膜薄约 20 倍,多孔约 25 倍。发现 NTHP 膜在纳米级别的可调孔径对于在共培养细胞之间形成直接间隙连接介导的接触至关重要。与传统共培养方法相比,具有孔径定制的 NTHP 膜系统可显著增强共培养干细胞的分化。这可能是由于共培养细胞之间的有效物理接触以及生物活性分子快速穿过膜的扩散。此外,NTHP 膜的温度响应功能可有效地生成均匀的、保持 ECM 的、高活力的和可转移印刷的心肌细胞分化细胞片。本研究开发的共培养平台对于产生各种类型的可从干细胞分化的治疗性多层细胞片将是有效的。

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