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Macrophages behavior on different NIPAm-based thermoresponsive substrates

机译:巨噬细胞在不同基于NIPAm的热敏底物上的行为

摘要

Thermoresponsive materials and surfaces are widely used in cell culture applications. There is a lot of research work employing thermoresponsive materials with various structure and compositions. However, little is known about the immunological response to the thermoresponsive materials. Macrophage-like transformed murine cell line RAW264.7 was selected as it is a widely used standard model for immune activation analysis. This study proposes to compare the effects of thermoresponsive films with various compositions on macrophage cells. Thermoresponsive materials are a useful utility as a non-enzymatic harvesting system for tissue culture. As RAW264.7 cells are difficult to remove from the substrate by enzymatic methods we also explored the possibility to use thermoresponsive materials for the macrophage cultivation. Spin coating and solvent casting was used to produce films of N-isopropylacrylamide-based polymers from the nanometer to micrometer range. Successful cell adhesion and proliferation was highly dependent on the thickness and composition of the coating. RAW264.7 cells were successfully detached from the coatings upon temperature reduction. Furthermore, results indicate that the RAW264.7 cells remained inactivated as cell secreted cytokine remained at a low level and the surface receptor profile of RAW264.7 was not altered when cells were detached in this manner.
机译:热敏性材料和表面广泛用于细胞培养应用中。有许多研究工作采用具有不同结构和组成的热响应材料。但是,对热响应性材料的免疫反应知之甚少。选择了巨噬细胞样转化的鼠细胞系RAW264.7,因为它是广泛用于免疫激活分析的标准模型。这项研究建议比较具有各种成分的热敏膜对巨噬细胞的影响。热响应性材料作为组织培养的非酶收集系统是有用的工具。由于RAW264.7细胞很难通过酶促方法从底物中去除,因此我们也探索了使用热响应性材料进行巨噬细胞培养的可能性。旋涂和溶剂浇铸用于生产N-异丙基丙烯酰胺基聚合物的膜,其范围从纳米到微米。成功的细胞粘附和增殖高度取决于涂层的厚度和组成。降低温度后,RAW264.7细胞成功地从涂层上脱离。此外,结果表明,当细胞以这种方式分离时,由于细胞分泌的细胞因子保持在较低水平,RAW264.7细胞保持灭活,并且RAW264.7的表面受体分布没有改变。

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