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首页> 外文期刊>Journal of Bioactive and Compatible Polymers >Construction of novel temperature-responsive hydrogel culture system based on the biomimetic method for stem cell sheet harvest
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Construction of novel temperature-responsive hydrogel culture system based on the biomimetic method for stem cell sheet harvest

机译:基于干细胞片收获仿生方法的新型温度响应水凝胶培养系统的构建

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Temperature-responsive hydrogel culture system is considered as an ideal platform for cell sheet harvest, but its complex preparation methods and harsh reaction conditions limit its application. Inspired by the marine mussels, a biomimetic method presented here is to construct a novel temperature-responsive hydrogel culture system for stem cell sheet harvest. The tissue culture polystyrene is first modified with polydopamine coating, and then amine-terminated poly(N-isopropylacrylamide) is grafted onto the coating via the Schiff base or Michael addition reaction to construct the temperature-sensitive hydrogel culture system. Then, bone marrow stromal cells are cultured on the culture system to construct cell sheets. The prepared culture system shows significant temperature-sensitive property with the grafted concentrations of poly(N-isopropylacrylamide) ranging from 0.5 to 1g/L. Meanwhile, the constructed culture system has low cytotoxicity and facilitates the stem cell adhesion, proliferation, and cell sheet formation at 37 degrees C. When the culture system is placed in a 20 degrees C environment, the cell sheet can be completely detached from the surface of tissue culture polystyrene without being treated with any enzymes. More importantly, the cell morphology, cell sheet thickness, and the fibril structure of the associated proteins are similar to the cells cultured on the tissue culture polystyrene without modification. The biomimetic, simple, inexpensive, and environmentally friendly preparation of the culture system enables it to be used for the harvest of cell sheet and even applied to tissue engineering for tissue regeneration.
机译:温度响应的水凝胶培养系统被认为是用于细胞片收获的理想平台,但其复杂的制备方法和苛刻的反应条件限制了其应用。由海洋贻贝的启发,这里提出的一种仿生方法是构建用于干细胞片收获的新型温度响应水凝胶培养系统。首先用多碳邻胺涂层改性组织培养聚苯乙烯,然后通过席克碱或迈克尔加成反应将胺封端的聚(N-异丙基丙烯酰胺)接枝到涂层上,以构建温度敏感水凝胶培养系统。然后,在培养体系上培养骨髓基质细胞以构建细胞片。制备的培养系统显示出显着的温度敏感性,具有0.5至1g / L的聚(N-异丙基丙烯酰胺)的接枝浓度。同时,构建的培养系统具有低细胞毒性,促进了37℃的干细胞粘附,增殖和细胞片形成。当培养系统置于20℃的环境中时,可以从表面完全拆下细胞片组织培养聚苯乙烯而不用任何酶处理。更重要的是,相关蛋白质的细胞形态,细胞片厚度和纤维结构类似于在组织培养聚苯乙烯上培养的细胞而不改变。培养系统的仿生,简单,廉价和环保的制备使其能够用于收获细胞片,甚至应用于组织工程以进行组织再生。

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