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Bioreactor culture of recombinant Drosophila melanogaster S2 cells: characterization of metabolic features related to cell growth and production of the rabies virus glycoprotein

机译:重组果蝇S2细胞的生物反应器培养:表征与细胞生长和狂犬病毒糖蛋白产生相关的代谢特征

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摘要

Although several reports have been published on recombinant protein expression using Drosophila cells, information on their metabolism and growth in vitro is relatively scarce. In the present study, we have analyzed the growth and metabolism of transfected S2 cells (S2AcRVGP) in bioreactor cultures with serum-free medium Sf900 II, to evaluate its potential for mass production of a rabies virus glycoprotein (RVGP). Cells were cultured in a 3 l-stirred-tank bioreactor at 28 °C with pH controlled at 6.2 and dissolved oxygen at 50% air saturation. The cells attained a specific growth rate and maximum cell density as high as 0.084 h−1 and 2.3 × 10cell ml−1, respectively. The main substrates consumed during this rapid growth phase were glucose, glutamine and proline. An atypical accumulation of ammonia and alanine was observed in the culture medium, up to 62 mM and 47 mM, respectively, but lactate was produced in low levels. After exhaustion of glutamine and proline as energy sources, alanine was consumed and production of ammonia increased. The production of recombinant RVGP reached concentrations as high as 178 μg l−1. Premature exhaustion of glutamine, serine and cysteine could be related to degradation of the recombinant glycoprotein. In general, the results demonstrated that S2AcRVGP can be considered an effective vehicle for large-scale recombinant glycoprotein expression and that several critical factors of the bioprocess could be optimized to increase the quality and productivity of the RVGP.
机译:尽管已经发表了几篇有关使用果蝇细胞进行重组蛋白表达的报道,但有关其在体外代谢和生长的信息相对较少。在本研究中,我们分析了无血清培养基Sf900 II在生物反应器培养物中转染的S2细胞(S2AcRVGP)的生长和代谢,以评估其大规模生产狂犬病毒糖蛋白(RVGP)的潜力。将细胞在28°C的3升搅拌槽生物反应器中培养,pH控制在6.2,溶解氧在50%空气饱和度下。细胞达到了0.084 h -1 和2.3×10 7 细胞ml -1 的特定生长速率和最大细胞密度。在此快速生长阶段消耗的主要底物是葡萄糖,谷氨酰胺和脯氨酸。在培养基中观察到非典型的氨和丙氨酸蓄积,分别高达62mM和47mM,但乳酸水平较低。用尽谷氨酰胺和脯氨酸作为能源后,丙氨酸被消耗,氨的产生增加。重组RVGP的生产浓度高达178μgl -1 。谷氨酰胺,丝氨酸和半胱氨酸的过早耗尽可能与重组糖蛋白的降解有关。通常,结果表明S2AcRVGP可以被视为大规模重组糖蛋白表达的有效载体,并且可以优化生物过程的几个关键因素以提高RVGP的质量和生产率。

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