用于电池片制造的温度响应聚合物的纳米物理表面涂层

Masamichi Nakayama, Y. Kimura, H. Kanazawa, M. Yamato, T. Okano
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引用次数: 1

摘要

本文主要研究了用物理聚合物涂层制备温度响应型细胞培养表面的简单方法。合成了具有不同热敏PIPAAm链长的聚甲基丙烯酸丁酯-b-聚n -异丙基丙烯酰胺(PBMA-b-PIPAAm)二嵌段共聚物。将聚合物溶解在乙腈/N, N-二甲基甲酰胺(5/1 v/v)的混合溶剂中,并使用自旋涂布机将溶液沉积在商业细胞培养底物表面。化学连接的疏水性PBMA显著增强了对目标材料表面的物理吸收,并导致在固体表面引入热响应特性。为了研究温度依赖性细胞行为,将牛颈动脉内皮细胞接种于聚合物包被表面并在37°C下培养。37℃时,细胞在温度响应表面粘附增殖,随着PIPAAm链长的增加,粘附增殖效率降低。另一方面,当温度降低到20°C时,较长的PIPAAm链显著促进细胞从表面分离。因此,通过选择合适的PIPAAm链长的嵌段共聚物,通过简单的低温处理,成功地收获了具有维持细胞间连接和细胞外基质蛋白的单细胞单层。
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Nano-scale physical surface coating of temperature-responsive polymers for cell sheet fabrication
This study focused on the simple fabrication method of temperature-responsive cell culture surfaces by physical polymer coating. We synthesized diblock copolymers of poly(butyl methacrylate)-b-poly(N-isopropylacrylamide) (PBMA-b-PIPAAm) with various thermoresponsive PIPAAm chain length. Polymers were dissolved in mixed solvent of acetonitrile/N, N-dimethylformamide (5/1 in v/v), and the solution was deposited on the surface of commercial cell culture substrates using a spin coater. Chemically connected hydrophobic PBMA significantly enhanced physical absorption to target material surfaces and resulted in introducing thermoresponsive property to solid surfaces. To investigate temperature-dependent cellular behavior, bovine carotid artery endothelial cells were seeded on polymer-coated surfaces and cultured at 37 °C. Cells adhered and proliferated on temperature-responsive surface at 37 °C, while the efficiency of adhesion and proliferation became lower with increasing PIPAAm chain length. On the other hand, longer PIPAAm chains significantly promoted cell detachment from the surfaces by reducing temperature to 20 °C. Consequently, confluently cultured cells were successfully harvested as a single cell monolayer with maintaining cell-cell junctions and extracellular matrix proteins with simple low temperature treatment by choosing the adequate PIPAAm chain length of block copolymer.
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