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用于现场制备智能细胞培养表面的易吸附热响应聚合物。

Readily Adsorbable Thermoresponsive Polymers for the Preparation of Smart Cell-Culturing Surfaces on Site.

作者信息

Sponchioni Mattia, Manfredini Nicolò, Zanoni Arianna, Scibona Ernesto, Morbidelli Massimo, Moscatelli Davide

机构信息

Department of Chemistry, Materials and Chemical Engineering "Giulio Natta", Politecnico di Milano, via Mancinelli 7, 2013 Milano, Italy.

Department of Chemistry and Applied Biosciences, Institute for Chemical and Bioengineering, ETH Zurich, Vladimir-Prelog-Weg 1, 8093 Zurich, Switzerland.

出版信息

ACS Biomater Sci Eng. 2020 Sep 14;6(9):5337-5345. doi: 10.1021/acsbiomaterials.0c01029. Epub 2020 Aug 21.

Abstract

The efficacy of several cell therapy products is directly impacted by trypsinization, which can diminish the engrafting capacity of transplanted cells by cleaving cell surface receptors. Thermoresponsive surfaces can alleviate this drawback, enabling temperature-driven and enzyme-free cell harvesting. However, the production of thermoresponsive surfaces relies on dedicated and complex equipment, often involving protocols dependent on high surface activation energies that prevent the development of scalable and universal platforms. In this work, we developed thermoresponsive copolymers incorporating styrene units that enable the copolymer adsorption on tissue culture polystyrene surfaces from an alcoholic solution in a short time, regardless of the vessel size and geometry, and without any particular equipment. In this way, the procedure can be performed with minimal effort by the end user on any surface. The thermoresponsive copolymers were synthesized via reversible addition-fragmentation chain transfer polymerization, providing high control over the polymer microstructure, a key parameter for tuning its cloud point and architecture. Block copolymers comprising a thermoresponsive segment and a polystyrene block exhibited optimal adhesion on conventional cell culture surfaces and permitted a more efficient temperature-mediated harvesting of adipose-derived stromal cells and Chinese hamster ovary cells compared to their statistical counterparts. To expand the application of this polymer deposition protocol to serum-free cell culture, we also considered the polymer modification with the tripeptide arginine-glycine-aspartic acid, known to promote the cell adhesion to synthetic substrates. The incorporation of this peptide enabled the collection in serum-free conditions of intact cell sheets from surfaces prepared shortly before their usage.

摘要

几种细胞治疗产品的功效直接受到胰蛋白酶消化的影响,胰蛋白酶消化会通过切割细胞表面受体来降低移植细胞的植入能力。热响应表面可以缓解这一缺点,实现温度驱动且无酶的细胞收获。然而,热响应表面的生产依赖于专用且复杂的设备,通常涉及依赖高表面活化能的方案,这阻碍了可扩展通用平台的开发。在这项工作中,我们开发了一种包含苯乙烯单元的热响应共聚物,该共聚物能够在短时间内从酒精溶液中吸附到组织培养聚苯乙烯表面,而与容器大小和几何形状无关,且无需任何特殊设备。通过这种方式,最终用户可以在任何表面上轻松完成该操作。热响应共聚物通过可逆加成-断裂链转移聚合合成,能够高度控制聚合物微观结构,这是调节其浊点和结构的关键参数。与统计共聚物相比,包含热响应链段和聚苯乙烯嵌段的嵌段共聚物在传统细胞培养表面表现出最佳附着力,并允许更有效地通过温度介导收获脂肪来源的基质细胞和中国仓鼠卵巢细胞。为了将这种聚合物沉积方案的应用扩展到无血清细胞培养,我们还考虑了用已知能促进细胞粘附到合成底物的三肽精氨酸-甘氨酸-天冬氨酸对聚合物进行修饰。这种肽的掺入使得能够在无血清条件下从使用前不久制备的表面收集完整的细胞片。

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