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Temperature-Responsive Nanofibrillar Hydrogels for Cell Encapsulation

机译:温度敏感的纳米原纤维水凝胶用于细胞包封

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Natural extracellular matrices often have a filamentous nature, however, only a limited number of artificial extracellular matrices have been designed from nanofibrillar building blocks. Here we report the preparation of temperature responsive nanofibrillar hydrogels from rod-shaped cellulose nanocrystals (CNCs) functionalized with a copolymer of N-isopropylacrylamide and N,N'-dimethylaminoethyl methacrylate. The composition of the copolymer was tuned to achieve gelation of the suspension of copolymer-functionalized CNCs at 37 degrees C in cell culture medium and gel dissociation upon cooling it to room temperature. The mechanical properties and the structure of the hydrogel were controlled by changing copolymer composition and the CNC-to-copolymer mass ratio. The thermoreversible gels were used for the encapsulation and culture of fibroblasts and T cells and showed low cytotoxicity. Following cell culture, the cells were released from the gel by reducing the temperature, thus, enabling further cell characterization. These results pave the way for the generation of injectable temperature responsive nanofibrillar hydrogels. The release of cells following their culture in the hydrogels would enable enhanced cell characterization and potential transfer in a different cell culture medium.
机译:天然的细胞外基质通常具有丝状性质,但是,仅有限数量的人工细胞外基质是由纳米原纤维构成的。在这里,我们报道了由N-异丙基丙烯酰胺和甲基丙烯酸N,N'-二甲基氨基乙基酯的共聚物官能化的棒状纤维素纳米晶体(CNC)制备温度响应性纳米原纤维水凝胶。调节共聚物的组成,以使共聚物官能化的CNCs悬浮液在37摄氏度下在细胞培养基中胶凝,并在冷却至室温后发生凝胶离解。通过改变共聚物组成和CNC与共聚物的质量比来控制水凝胶的机械性能和结构。热可逆凝胶用于成纤维细胞和T细胞的封装和培养,显示出低细胞毒性。细胞培养后,通过降低温度将细胞从凝胶中释放出来,从而进一步表征细胞。这些结果为可注射的温度响应性纳米原纤维水凝胶的产生铺平了道路。细胞在水凝胶中培养后的释放将增强细胞的特性,并在不同的细胞培养基中进行潜在的转移。

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