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可切换的低聚(缩水甘油醚)丙烯酸酯梳状聚合物“接枝到”聚苯乙烯表面:一种多功能细胞培养基质的通用策略。

Switchable Oligo(glycidyl ether) Acrylate Bottlebrushes "Grafted-from" Polystyrene Surfaces: A Versatile Strategy toward Functional Cell Culture Substrates.

机构信息

Institute for Chemistry and Biochemistry , Freie Universitaet Berlin , Takustrasse 3 , 14195 Berlin , Germany.

PolyAn GmbH , Rudolf-Baschant-Straße 2 , 13086 Berlin , Germany.

出版信息

Biomacromolecules. 2018 Nov 12;19(11):4207-4218. doi: 10.1021/acs.biomac.8b00933. Epub 2018 Oct 29.

Abstract

Thermoresponsive brushes based on linear poly(glycidyl ether)s (PGEs) have already shown to be functional coatings for cell sheet fabrication. In here, we introduce a method to functionalize polystyrene (PS) tissue culture substrates with thermoresponsive coatings comprising glycidyl ether-based bottlebrush architectures. Utilizing the UV-induced "grafting-from" approach, thermoresponsive oligo(glycidyl ether) acrylate (OGEA) macromonomers were polymerized from PS substrates under bulk conditions. Applying ellipsometry, water contact angle (CA), and atomic force microscopy (AFM) measurements, we found that OGEA coatings exhibit a complex, gel-like structure comprising nanosized roughness and exhibit a temperature-dependent phase transition in water through the reversible hydration of OGEA bottlebrush side chains. To assess the utility of the coatings as functional substrates for cell sheet fabrication, human dermal fibroblast (HDF) adhesion and detachment were investigated. By adjusting the bottlebrush properties via the grafting procedure and coating structure, we were able to harvest confluent HDF sheets from functionalized PS substrates in a temperature-triggered, controlled manner. As the first report on surface-grafted bottlebrushes comprising thermoresponsive side chains with molecular weight of up to 1 kDa, this study demonstrates the potential of OGEA-based coatings for cell sheet fabrication.

摘要

基于线性聚(缩水甘油醚)(PGEs)的温敏刷已被证明是细胞片制造的功能性涂层。在这里,我们介绍了一种在具有温敏涂层的聚苯乙烯(PS)组织培养基板上进行功能化的方法,该涂层由基于缩水甘油醚的刷型结构组成。利用 UV 诱导的“从接枝”方法,在本体条件下从 PS 基板聚合温敏性低聚(缩水甘油醚)丙烯酸酯(OGEA)大分子单体。通过椭圆光度法、水接触角(CA)和原子力显微镜(AFM)测量,我们发现 OGEA 涂层表现出复杂的、凝胶状结构,包括纳米级粗糙度,并通过 OGEA 梳型侧链的可逆水合作用在水中表现出温度依赖性的相转变。为了评估涂层作为细胞片制造的功能基底的实用性,研究了人真皮成纤维细胞(HDF)的黏附和脱附。通过调整接枝过程和涂层结构中的刷状性质,我们能够以温度触发的、可控的方式从功能化的 PS 基板上收获密集的 HDF 片。作为第一个关于具有分子量高达 1 kDa 的温敏侧链的表面接枝刷的报告,该研究表明 OGEA 基涂层在细胞片制造方面具有潜力。

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