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Long-term Continuous Production of Monoclonal Antibody by Hybridoma Cells Immobilized in a Fibrous-Bed Bioreactor

机译:固定在纤维床生物反应器中的杂交瘤细胞长期连续产生单克隆抗体

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The kinetics and long-term stability of continuous production of monoclonal antibody IgG2b by hybridoma HD-24 cells immobilized in a fibrous-bed bioreactor (FBB) were studied for a period of ~8 months. The cells were immobilized in the fibrous bed by surface attachment of cells and entrapment of large cell clumps in the void space of the fibrous matrix. A high viable cell density of 1.01 × 108/ml was attained in the bioreactor, which was about 63 times higher than those in conventional T-flask and spinner flask cultures. The continuous FBB produced IgG at a concentration of ~0.5 g/l, with reactor productivity of ~7 mg/h·l, which was about 23 times higher than those from conventional T-flask and spinner flask cultures. The IgG concentration can be further increased to ~0.67 g/l by using higher feed (glucose and glutamine) concentrations and running the reactor at a recycle batch or fed-batch mode. The long-term performance of this bioreactor was also evaluated. For a period of 36 days monitored, the MAb produced in the continuous well-mixed bioreactor at 50 h retention time (0.02/h dilution rate) was maintained at a steady concentration level of ~0.3 g/l with less than 8% drift. At the end of the study, it was found that ~25% of the cells were strongly attached to the fiber surfaces and the other ~75% entrapped or weakly immobilized in the fibrous matrix. The strongly attached cells had a high viability of ~90%, compared to ~75% for cells weakly immobilized and only ~1.4% for freely suspended cells, suggesting that the fibrous matrix preferentially retained and protected the viable (productive) cells. The FBB thus was able to maintain its long-term productivity because nonviable and dead cells were continuously washed off from the fibrous matrix. The high MAb concentration and production rate and excellent stability for continuous long-term production obtained in this study compare favorably to other bioreactor studies reported in the literature. The reactor performance can be further improved by providing better pH and aeration controls at higher feed concentrations. The FBB is easy to operate and scale-up, and thus can be used economically for industrial production of MAb.
机译:研究了固定在纤维床生物反应器(FBB)中的杂交瘤HD-24细胞连续产生单克隆抗体IgG2b的动力学和长期稳定性,历时约8个月。通过细胞的表面附着和将大的细胞团块捕获在纤维基质的空隙中,将细胞固定在纤维床上。在生物反应器中获得了1.01×108 / ml的高存活细胞密度,这是常规T瓶和旋转瓶培养中的细胞密度的约63倍。连续的FBB产生的IgG浓度约为0.5 g / l,反应器生产率约为7 mg / h·l,比传统的T瓶和旋转瓶培养高出约23倍。通过使用较高的进料(葡萄糖和谷氨酰胺)浓度并使反应器以循环分批或分批进料模式运行,可以将IgG浓度进一步提高至〜0.67 g / l。还评估了该生物反应器的长期性能。在连续监测的36天中,在连续充分混合的生物反应器中,保留时间为50小时(稀释率0.02 / h)产生的单抗保持在约0.3 g / l的稳定浓度水平,漂移小于8%。在研究结束时,发现约25%的细胞牢固地附着在纤维表面,另外约75%的细胞被捕获或微弱地固定在纤维基质中。牢固附着的细胞具有约90%的高生存力,而固定性较弱的细胞具有约75%的活力,自由悬浮的细胞仅具有约1.4%的活力,这表明纤维基质优先保留并保护了活的(生产性)细胞。因此,FBB能够保持其长期生产力,因为无活力的和死细胞不断地从纤维基质中冲洗掉。与文献中报道的其他生物反应器研究相比,本研究中获得的高单克隆抗体浓度和生产率以及连续长期生产的出色稳定性。通过在较高进料浓度下提供更好的pH和曝气控制,可以进一步提高反应器性能。 FBB易于操作和按比例放大,因此可以经济地用于MAb的工业生产。

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