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Continuous purification of Candida antarctica lipase B using 3‐membrane adsorber periodic counter‐current chromatography

机译:使用三膜吸附器定期逆流色谱法连续纯化南极假丝酵母脂肪酶B

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摘要

Batch chromatography has several disadvantages, such as insufficient utilization of the capacity of the resin, high buffer consumption and discontinuity. Considering the high costs for downstream processing, a continuously working chromatographic system with three membrane adsorber units was designed, tested and put into operation. The basic principle of the setup is periodic counter‐current chromatography (PCCC). The PCCC system was used for capturing and purifying lipase B (CalB) directly from cell lysate in one single unit operation. The best purification result was achieved by means of anion‐exchange chromatography. The dynamic binding capacity with Sartobind® Q 75 amounted to 4.2 mg (56 g/cm ). After transferring the method to the 3MA‐PCCC, 0.22 g CalB (73 U/mg) were obtained from 0.9 L lysate within 6 h and a recovery of 80%. Compared to the batch process, the productivity could be increased by 36% and the buffer consumption could be reduced by about 20%. Although the purification of CalB from lysate by means of anion‐exchange chromatography was not selective and quantitative using the 3MA‐PCCC device, it could be shown that the concept of the system was successfully implemented and led to a significant improvement of CalB purification.
机译:间歇色谱法有几个缺点,例如对树脂容量的利用不足,缓冲液消耗高和不连续性。考虑到下游处理的高昂成本,设计,测试并投入运行的具有三个膜吸附器单元的连续工作色谱系统。该设置的基本原理是定期逆流色谱法(PCCC)。 PCCC系统用于在一个单一的单元操作中直接从细胞裂解物中捕获和纯化脂肪酶B(CalB)。阴离子交换色谱法可获得最佳的纯化结果。 Sartobind®Q 75的动态结合能力为4.2 mg(56 g / cm)。将方法转移到3MA-PCCC后,在6小时内从0.9 L裂解物中获得了0.22 g CalB(73 U / mg),回收率为80%。与分批处理相比,生产率可以提高36%,缓冲液消耗可以减少约20%。尽管使用3MA-PCCC装置无法通过阴离子交换色谱法从裂解物中纯化CalB进行选择性和定量分析,但可以证明该系统的概念已成功实施,并导致CalB纯化的显着改善。

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