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配体修饰琼脂糖微球在蛋白质分离纯化中的进展。

Progress of ligand-modified agarose microspheres for protein isolation and purification.

机构信息

School of Pharmaceutical Science and Technology, Tianjin University, 92 Weijin Road, Tianjin, 300072, China.

出版信息

Mikrochim Acta. 2024 Feb 20;191(3):149. doi: 10.1007/s00604-024-06224-4.

Abstract

Proteins are the material basis of life and the primary carriers of life activities, containing various impurities that must be removed before use. To keep pace with the increasing complexity of protein samples, it is essential to constantly work on developing new purification technologies for downstream processes. While traditional downstream purification methods rely heavily on protein A affinity chromatography, there is still a lot of interest in finding safer and more cost-effective alternatives to protein A. Many non-affinity ligands and technologies have also been developed in biological purification recently. Here, the current status of biotechnology and the progress of protein separation technology from 2018 to 2023 are reviewed from the aspects of new preparation methods and new composite materials of commonly used separation media. The research status of new ligands with different mechanisms of action was reviewed, including the expanded application of affinity ligands, the development prospect of biotechnology such as polymer grafting, continuous column technology, and its new applications.

摘要

蛋白质是生命的物质基础,是生命活动的主要载体,含有各种必须去除的杂质才能使用。为了跟上蛋白质样品日益复杂的步伐,不断开发用于下游工艺的新型纯化技术是至关重要的。虽然传统的下游纯化方法主要依赖于蛋白 A 亲和层析,但人们仍然对寻找更安全、更具成本效益的蛋白 A 替代物很感兴趣。最近,在生物纯化方面,许多非亲和配体和技术也得到了发展。本文从常用分离介质的新型制备方法和新型复合材料两方面,综述了 2018 年至 2023 年生物技术和蛋白质分离技术的最新进展。综述了不同作用机制的新型配体的研究现状,包括亲和配体的扩展应用,聚合物接枝等生物技术的发展前景,连续柱技术及其新应用。

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