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Calcium alginate immobilized hybridomas grown using a fluidized-bed perfusion system with a protein-free medium

机译:使用无蛋白培养基的流化床灌注系统生长的藻酸钙固定杂交瘤

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Hybridoma SPO1 cells were immobilized in calcium alginate beads and were further grown in a fluidized-bed perfusion system with a protein-free medium. The presence of serum in the steps of entrapment was shown to be helpful for the preservation of cell viability. Each step during immobilization was investigated with respect to the extent of cell damage caused. The immobilization process using small beads caused a lower cell viability initially but allowed a higher rate of cell growth subsequently, compared to those in large beads. In a perfusion system for the continuous production of monoclonal antibodies (MAb), the viable cell density reached 2×107 cells per ml of beads with a viability of 40%. Compared with the cells in suspension culture, the immobilized SPO1 cells showed higher viable cell based specific rates of substrate uptake (glucose and glutamine) and of MAb production. A significant drop in the formation of lactate after the cell growth entered a steady state suggested a higher activity of the Tricarboxylic Acid Cycle in the cells when the cell density became high.
机译:将杂交瘤SPO1细胞固定在藻酸钙珠粒中,并在无蛋白培养基的流化床灌注系统中进一步生长。包埋步骤中血清的存在被证明有助于保存细胞活力。关于引起的细胞损伤的程度,研究了固定过程中的每个步骤。与大珠子相比,使用小珠子的固定过程最初导致较低的细胞活力,但随后允许较高的细胞生长速率。在用于连续生产单克隆抗体(MAb)的灌注系统中,每毫升珠子的活细胞密度达到2×107细胞,存活率为40%。与悬浮培养中的细胞相比,固定化的SPO1细胞显示出更高的基于活细胞的底物摄取(葡萄糖和谷氨酰胺)和MAb产生率。细胞生长进入稳定状态后,乳酸形成的显着下降表明当细胞密度变高时,细胞中三羧酸循环的活性更高。

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