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首页> 外文期刊>Cytotechnology >Effect of transmembrane pressure on Factor VIII yield in ATF perfusion culture for the production of recombinant human Factor VIII co-expressed with von Willebrand factor
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Effect of transmembrane pressure on Factor VIII yield in ATF perfusion culture for the production of recombinant human Factor VIII co-expressed with von Willebrand factor

机译:跨膜压力对ATF灌注培养中与von Willebrand因子共表达的重组人VIII因子产生的VIII因子产量的影响

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摘要

In this study, we evaluated three cell retention devices, an alternating tangential flow (ATF) system, a spin-filter, and a Centritech Lab III centrifuge, for the production of recombinant human Factor VIII co-expressed with von Willebrand factor. From the results, it was found that the FVIII activity in bioreactor was significantly higher in the ATF perfusion culture than two other perfusion cultures. Moreover, the FVIII activity yield was unexpectedly low in the ATF perfusion culture. We have, therefore, studied the reasons for this low FVIII activity yield. It was revealed that the inactivation and the surface adsorption of FVIII onto the harvest bag were not the main reasons for the low yield in the ATF perfusion culture. The FVIII activity yield was not increased by the use of a hollow fiber filter with 0.5?μm pore size instead of 0.2?μm pore size. Additionally, the retention of FVIII molecules by the hollow fiber filter was a dominant factor in the low FVIII activity yield in the ATF perfusion culture. We demonstrated that FVIII yield was significantly improved by controlling transmembrane pressure (TMP) across the hollow fiber filter membrane. Taken together, these results suggest that TMP control could be an efficient method for the enhancement of FVIII yield in an ATF perfusion culture.
机译:在这项研究中,我们评估了三种细胞保留装置,交替切向流(ATF)系统,旋转过滤器和Centritech Lab III离心机,用于生产与von Willebrand因子共表达的重组人VIII因子。从结果发现,在ATF灌注培养物中,生物反应器中的FVIII活性明显高于其他两种灌注培养物。而且,在ATF灌注培养中FVIII活性产量出乎意料地低。因此,我们研究了FVIII活性低的原因。揭示了FVIII在收获袋上的失活和表面吸附并不是ATF灌注培养中产量低的主要原因。使用孔径为0.5μm而不是孔径为0.2μm的中空纤维过滤器,不会提高FVIII活性。此外,中空纤维过滤器对FVIII分子的保留是ATF灌注培养中FVIII活性降低的主要因素。我们证明,通过控制中空纤维滤膜的跨膜压力(TMP),FVIII产量得到了显着提高。综上所述,这些结果表明,TMP控制可能是提高ATF灌注培养物中FVIII产量的有效方法。

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