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通过连续色谱法进行生物治疗药物下游加工的现代趋势:多柱逆流溶剂梯度纯化的潜力

Modern trends in downstream processing of biotherapeutics through continuous chromatography: The potential of Multicolumn Countercurrent Solvent Gradient Purification.

作者信息

De Luca Chiara, Felletti Simona, Lievore Giulio, Chenet Tatiana, Morbidelli Massimo, Sponchioni Mattia, Cavazzini Alberto, Catani Martina

机构信息

Dept. of Chemistry and Pharmaceutical Sciences, University of Ferrara, via L. Borsari 46, 44121 Ferrara, Italy.

Dept. of Chemistry, Materials and Chemical Engineering Giulio Natta, Politecnico di Milano, via Mancinelli 7, 20131 Milan, Italy.

出版信息

Trends Analyt Chem. 2020 Nov;132:116051. doi: 10.1016/j.trac.2020.116051. Epub 2020 Sep 24.

Abstract

Single-column (batch) preparative chromatography is the technique of choice for purification of biotherapeutics but it is often characterized by an intrinsic limitation in terms of yield-purity trade-off, especially for separations containing a larger number of product-related impurities. This drawback can be alleviated by employing multicolumn continuous chromatography. Among the different methods working in continuous mode, in this paper we will focus in particular on Multicolumn Countercurrent Solvent Gradient Purification (MCSGP) which has been specifically designed for challenging separations of target biomolecules from their product-related impurities. The improvements come from the automatic internal recycling of the impure fractions inside the chromatographic system, which results in an increased yield without compromising the purity of the pool. In this article, steps of the manufacturing process of biopharmaceuticals will be described, as well as the advantages of continuous chromatography over batch processes, by particularly focusing on MCSGP.

摘要

单柱(间歇式)制备色谱法是生物治疗药物纯化的首选技术,但它在产量-纯度权衡方面往往存在内在局限性,特别是对于含有大量与产品相关杂质的分离。采用多柱连续色谱法可以缓解这一缺点。在以连续模式运行的不同方法中,本文将特别关注多柱逆流溶剂梯度纯化(MCSGP),该方法专门设计用于从与产品相关的杂质中挑战性地分离目标生物分子。改进来自色谱系统内部不纯馏分的自动内部循环,这在不影响收集池纯度的情况下提高了产量。在本文中,将描述生物制药生产过程的步骤,以及连续色谱法相对于间歇式工艺的优势,特别关注MCSGP。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/222d/7513800/f84f3fa716c8/gr1_lrg.jpg

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