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Three-Dimensional Culture for Monoclonal Antibody Production by Hybridoma Cells Immobilized in Macroporous Gel Particles

机译:大孔凝胶颗粒中固定化杂交瘤细胞产生单克隆抗体的三维培养

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摘要

Cell proliferation and long-term production of monoclonal antibody IgG(2b) by M2139 hybridoma cells immobilized in macroporous gel particles (MGPs) in packed-bed reactor were studied for a period of 60 days. The MGPs were made of supermacroporous gels produced in frozen conditions from crosslinked polyacrylamide and modified with gelatin which were housed in special plastic carriers (7 x 9 mm(2)). Cells were trapped in the interior part of MGPs by attaching to the void space of the gel matrix as three-dimensional (3D) cultivation using gelatin as a substrate layer. Optimizing productivity by hybridoma cell relies on understanding regulation of antibody production. In this study, the behavior of M2139 cells in two-dimensional cultures on multiwell plate surfaces was also investigated. The effect of three different medium such as basal medium Dulbecco's modified Eagle's medium (D-MEM) containing L-glutamine or L-glutamine + 2 mM alpha-ketoglutarate or L-alanyl-glutamine (GlutaMAX (TM) ) was studied prior to its use in 3D cultivation. The kinetics of cell growth in basal medium containing L-glutamine + alpha-ketoglutarate was similar to cells grown on Gluta- MAX containing medium, whereas D-MEM containing L-glutamine showed lower productivity. With the maximal viable cell density (6.85 x 10(6) cells mL(-1)) and highest specific mAb production rate (3.9 mu g mL(-1) 10(-4) viable cell day(-1)), D-MEM-GlutaMAX was further selected for 3D cultivation. Cells in MGPs were able to grow and secrete antibody for 30 days in packed-bed batch reactor, before a fresh medium reservoir was replaced. After being supplied with fresh medium, cells again showed continuous growth for another 30 days with mAb production efficiency of 50%. These results demonstrate that MGPs can be used efficiently as supporting carrier for long-term monoclonal antibody production.
机译:研究了固定床反应器中固定在大孔凝胶颗粒(MGP)中的M2139杂交瘤细胞的细胞增殖和长期产生单克隆抗体IgG(2b)的情况,为期60天。 MGP由在冷冻条件下由交联聚丙烯酰胺制成的超大分子凝胶制成,并用明胶改性,并装在特殊的塑料载体中(7 x 9 mm(2))。通过使用明胶作为底物层进行三维(3D)培养,将细胞附着在凝胶基质的空隙中,从而将细胞捕获在MGP的内部。通过杂交瘤细胞优化生产力取决于对抗体产生的调控。在这项研究中,还研究了多孔板表面二维培养中M2139细胞的行为。在使用三种不同的培养基(例如含L-谷氨酰胺或L-谷氨酰胺+ 2 mMα-酮戊二酸酯或L-丙氨酰-谷氨酰胺的基础培养基Dulbecco改良的Eagle培养基(D-MEM))的效果之前,先对其进行了研究用于3D培养。在含有L-谷氨酰胺+α-酮戊二酸的基础培养基中细胞生长的动力学与在含有Gluta-MAX的培养基中生长的细胞相似,而含有L-谷氨酰胺的D-MEM则显示出较低的生产率。以最大的活细胞密度(6.85 x 10(6)个细胞mL(-1))和最高的单抗生产速率(3.9μg mL(-1)10(-4)个活细胞day(-1)),D -MEM-GlutaMAX被进一步选择用于3D培养。在更换新鲜的培养基容器之前,MGP中的细胞能够在填充床分批反应器中生长并分泌抗体30天。在供应新鲜培养基后,细胞再次显示出连续生长30天,mAb产生效率为50%。这些结果表明MGP可以有效地用作长期单克隆抗体生产的支持载体。

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