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Enhancement of cell growth on microcarriers immobilized with insulin

机译:固定化胰岛素的微载体增强细胞生长

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Mammalian cell culture technology has been used to produce structurally complex protein molecules and to construct devices for tissue engineering applications. This study investigated the cultivation of Chinese hamster ovary (CHO) cells on Cytodex I microcarriers in a spinner flask. The initial cell attachment was rapid with a rate constant of 5.56 x 10(-2) min(-1) under the condition of continuous stirring at 40 rpm using 2 g l(-1) of the microcarriers in a DMEM/F12 (1:1) medium. Adding serum to the medium decreased the rate of cell attachment in a dose-dependent manner. In contrast, the cell growth rate and maximum cell density increased with a shorter lag phase as the concentration of serum in the medium rose. To reduce the cost of the cell culture, the surfaces of Cytodex 1 microcarriers were immobilized with insulin using an adsorption-drying method and then used for the cultivation of CHO cells in a serum-free medium. The growth rate of CHO cells on insulin-immobilizpd microcarriers using a serum-free medium was comparable to that on untreated microcarriers using a 2% serum-containing medium. In addition, insulin immobilization also enhanced the value of the growth yield for glucose (Y-cell/glucose) from 2.41 x 10(5) to 3.66 x 10(5) cells mu mole(-1). This finding suggests that the immobilized insulin promoted glucose utilization, thereby enhancing cell growth. The immobilization of insulin on microcarriers is, thus, highly recommended to improve the outcome achieved in a serum-free culture. [References: 17]
机译:哺乳动物细胞培养技术已用于生产结构复杂的蛋白质分子并构建用于组织工程应用的设备。本研究调查了在旋转瓶中在Cytodex I微载体上培养中国仓鼠卵巢(CHO)细胞的方法。在DMEM / F12中使用2 gl(-1)的微载体以40 rpm连续搅拌的条件下,初始细胞附着迅速,速率常数为5.56 x 10(-2)min(-1)(1: 1)中。向培养基中添加血清以剂量依赖的方式降低了细胞附着率。相反,随着培养基中血清浓度的升高,细胞生长速率和最大细胞密度随着更短的延迟期而增加。为了降低细胞培养的成本,使用吸附干燥方法将Cytodex 1微载体的表面固定在胰岛素上,然后用于在无血清培养基中培养CHO细胞。使用无血清培养基的胰岛素固定化微载体上的CHO细胞的生长速率与使用2%含血清培养基的未处理微载体上的CHO细胞的生长速率相当。此外,胰岛素固定还提高了葡萄糖的生长量(Y细胞/葡萄糖),从2.41 x 10(5)增至3.66 x 10(5)摩尔(-1)。该发现表明固定化的胰岛素促进了葡萄糖的利用,从而增强了细胞的生长。因此,强烈建议将胰岛素固定在微载体上,以改善无血清培养中获得的结果。 [参考:17]

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