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Simultaneous Enhancement of Cell Proliferation and Thermally Induced Harvest Efficiency Based on Temperature-Responsive Cationic Copolymer-Grafted Microcarriers

机译:基于温度响应型阳离子共聚物接枝微载体的细胞增殖和热诱导收获效率的同时提高

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摘要

The development of large-scale suspension cell cultures using microcarriers has long been a focus of attention in the fields of pharmacy and biotechnology. Previously, we developed cell-detachable microcarriers based on temperature-responsive poly(N-isopropylacrylamide) (PIPAAm)-grafted beads, on which adhering cells can be noninvasively harvested by only reducing the temperature without the need for proteolytic enzyme treatment. In this study, to improve the cell harvest efficiency from bead surfaces while maintaining cell adhesion and proliferation properties, we prepared temperature-responsive cationic copolymer-grafted beads bearing a copolymer brush consisting of IPAAm, positively charged quaternary amine monomer (3-acrylamidopropyl trimethylammonium chloride; APTAC), and hydrophobic monomer (N-tert-butylacrylamide; tBAAm). The incorporation of positively charged APTAC into the grafted copolymer brush facilitated bead dispersibility in a cell culture system containing Chinese hamster ovary (CHO-KI) cells and consequently allowed for enhanced cell proliferation in the system compared to that of unmodified CMPS and conventional PIPAAm homopolymer-grafted beads. Additionally, P(IPAAm-co-APTAC-co-tBAAm) terpolymer-grafted beads exhibited the most rapid and efficient cell detachment behavior after the temperature was reduced to 20 °C, presumably because the highly hydrated APTAC promoted the overall hydration of the P(lPAAm-co-APTAC-co-tBAAm) chains. Therefore, P(IPAAm-co-APTAC-co-tBAAm) terpolymer-grafted microcarriers are effective in facilitating both cell proliferation and thermally induced cell detachment in a suspension culture system.
机译:使用微载体的大规模悬浮细胞培养物的开发长期以来一直是药学和生物技术领域的关注焦点。以前,我们基于温度响应的聚(N-异丙基丙烯酰胺)(PIPAAm)接枝的微珠开发了可分离细胞的微载体,只需降低温度即可进行无创收集粘附细胞,而无需进行蛋白水解酶处理。在这项研究中,为了提高从珠子表面获得细胞的效率,同时保持细胞粘附和增殖特性,我们制备了温度响应性阳离子共聚物接枝的珠子,该珠子带有由IPAAm,带正电荷的季胺单体(3-丙烯酰胺基丙基三甲基氯化铵)组成的共聚物刷; APTAC)和疏水性单体(N-叔丁基丙烯酰胺; tBAAm)。与未修饰的CMPS和传统的PIPAAm均聚物相比,将带正电荷的APTAC掺入接枝共聚物刷中可促进珠粒在含有中国仓鼠卵巢(CHO-KI)细胞的细胞培养系统中的分散性,因此可增强系统中的细胞增殖。嫁接的珠子。此外,温度降低至20°C后,P(IPAAm-co-APTAC-co-tBAAm)接枝的小珠表现出最快速,最有效的细胞分离行为,这可能是因为高度水合的APTAC促进了P的整体水合(lPAAm-co-APTAC-co-tBAAm)链。因此,P(IPAAm-co-APTAC-co-tBAAm)三元共聚物接枝的微载体有效地促进了悬浮培养系统中的细胞增殖和热诱导的细胞分离。

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