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Combined In-Fermenter Extraction and Cross-Flow Microfiltration for Improved Inclusion Body Processing

机译:发酵罐内萃取和错流微滤相结合,改善包涵体加工

摘要

In this study we demonstrate a new in-fermenter chemical extraction procedure that degrades the cell wall of Escherichia coli and releases inclusion bodies (IBs) into the fermentation medium. We then prove that cross-flow microfiltration can be used to remove 91% of soluble contaminants from the released IBs. The extraction protocol, based on a combination of Triton X-100, EDTA, and intracellular T7 lysozyme, effectively released most of the intracellular soluble content without solubilising the IBs. Cross-flow microfiltration using a 0.2 m ceramic membrane successfully recovered the granulocyte macrophage-colony stimulating factor (GM-CSF) IBs with removal of 91% of the soluble contaminants and virtually no loss of IBs to the permeate. The filtration efficiency, in terms of both flux and transmission, was significantly enhanced by in-fermenter Benzonase® digestion of nucleic acids following chemical extraction. Both the extraction and filtration methods exerted their efficacy directly on a crude fermentation broth, eliminating the need for cell recovery and resuspension in buffer. The processes demonstrated here can all be performed using just a fermenter and a single cross-flow filtration unit, demonstrating a high level of process intensification. Furthermore, there is considerable scope to also use the microfiltration system to subsequently solubilise the IBs, to separate the denatured protein from cell debris, and to refold the protein using diafiltration. In this way refolded protein can potentially be obtained, in a relatively pure state, using only two unit operations.
机译:在这项研究中,我们演示了一种新的发酵罐内化学提取程序,该程序可以降解大肠杆菌的细胞壁,并向发酵培养基中释放包涵体(IBs)。然后,我们证明了交叉流微滤可用于从释放的IB中去除91%的可溶性污染物。提取方案基于Triton X-100,EDTA和细胞内T7溶菌酶的组合,可有效释放大部分细胞内可溶成分,而不会溶解IB。使用0.2 m陶瓷膜的错流微滤技术成功回收了粒细胞巨噬细胞集落刺激因子(GM-CSF)IB,去除了91%的可溶性污染物,并且几乎没有IB损失到渗透物中。通过发酵罐中的Benzonase®核酸消化,在化学提取后,无论是在通量还是在传输方面,过滤效率都得到了显着提高。提取和过滤方法都直接在粗发酵液中发挥功效,从而无需回收细胞并将其重悬在缓冲液中。此处展示的所有过程都可以仅使用发酵罐和单个错流过滤单元进行,这表明了高水平的过程强化效果。此外,在使用微滤系统以随后溶解IB,从细胞碎片中分离变性蛋白质并使用渗滤使蛋白质重新折叠方面,还有很大的范围。以这种方式,仅使用两个单元操作就可以潜在地以相对纯的状态获得重折叠的蛋白质。

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