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Controlled surface initiated polymerization of N-isopropylacrylamide from polycaprolactone substrates for regulating cell attachment and detachment

机译:N-异丙基丙烯酰胺从聚己内酯底物的受控表面引发的聚合反应,用于调节细胞的附着和脱离

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摘要

Poly(ε-caprolactone) (PCL) substrates were modified with thermoresponsive poly(N-isopropylacrylamide) (PNIPAM) brushes to direct and control cellular attachment and detachment. Prior to brush growth, the surface of PCL was activated by a diamine to allow for initiator coupling. Infrared spectra taken before and after cell culturing demonstrated the covalently attached nature of the PNIPAM brushes. PCL is a biocompatible polymer and to prove that the modifications described above did not change this characteristic property, a cell attachment/detachment study was carried out. The modified substrates showed a lower cell attachment when compared to PCL alone and to PCL films modified with the initiator. The possibility to detach the cells in the form of a sheet was proved using PNIPAM-modified PCL films by lowering the temperature to 25 °C. No relevant detachment was shown by the unmodified or by the initiator modified surfaces. This confirmed that the detachment was temperature dependent and not connected to other factors such as polymer swelling. These functionalized polymeric films can find applications as smart cell culture systems in regenerative medicine applications.
机译:聚(ε-己内酯)(PCL)底物用热敏性聚(N-异丙基丙烯酰胺)(PNIPAM)刷子修饰,以指导和控制细胞的附着和分离。在刷生长之前,PCL的表面被二胺活化以允许引发剂偶联。细胞培养前后的红外光谱证明了PNIPAM刷的共价结合性质。 PCL是一种生物相容性聚合物,为了证明上述修饰没有改变这种特性,进行了细胞附着/分离研究。与单独的PCL和用引发剂修饰的PCL膜相比,修饰的底物显示出较低的细胞附着性。使用PNIPAM改性的PCL膜通过将温度降低至25°C,证明可以分离出片状细胞。未修饰的表面或引发剂修饰的表面均未显示相关的脱离。这证实了分离是温度依赖性的,并且与诸如聚合物膨胀的其他因素无关。这些功能化的聚合物薄膜可作为再生医学应用中的智能细胞培养系统找到应用。

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