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CIM整体柱色谱法作为一种有用的工具,用于减少内毒素并在PAT分析支持下纯化噬菌体颗粒。

CIM monolithic chromatography as a useful tool for endotoxin reduction and purification of bacteriophage particles supported with PAT analytics.

作者信息

Rebula Lucija, Raspor Andrej, Bavčar Mojca, Štrancar Aleš, Leskovec Maja

机构信息

Sartorius BIA Separations d.o.o., Mirce 21, 5270 Ajdovščina, Slovenia.

Sartorius BIA Separations d.o.o., Mirce 21, 5270 Ajdovščina, Slovenia.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2023 Feb 15;1217:123606. doi: 10.1016/j.jchromb.2023.123606. Epub 2023 Jan 19.

Abstract

Bacteriophages represent immense potential as therapeutic agents. Many of the most compelling applications of bacteriophages involve human therapy, some pertinent to gene therapy, others involving antibiotic replacement. Phages themselves are considered safe for humans. However, phage lysates may contain many kinds of harmful by-products, especially endotoxins of gram-negative bacteria and protein toxins produced by many pathogenic bacterial species. In bacteriophage research and therapy, most applications ask for highly purified phage suspensions, as such it is crucial to reduce proteins, endotoxins, DNA and other contaminants. In this article we present an efficient two-step chromatographic purification method for P. aeruginosa bacteriophage PP-01, using Convective Interaction Media (CIM®) monoliths, that is cGMP compliant and easy to scale-up for most stringent production of the therapeutic phage. First chromatographic step on CIMmultus OH resulted in 100% bacteriophage recovery with a reduction of 98 % protein and more than 99 % DNA content. Polishing was conducted using three different column options, CIMmultus with QA, H-Bond and PrimaS ligands. For PP-01 bacteriophage all three different options worked, but multimodal ligands H-Bond and PrimaS outperformed traditional QA in endotoxin removal (7 log step reduction). Additionally, an HPLC analytical method was developed to estimate phage concentration and impurity profile in different in-process samples. The HPLC method shows good correlation with drop assay titration, provides useful insights and can be run very fast with just 20 min per sample analysis.

摘要

噬菌体作为治疗剂具有巨大潜力。噬菌体最引人注目的许多应用都涉及人类治疗,有些与基因治疗相关,其他则涉及抗生素替代。噬菌体本身被认为对人类是安全的。然而,噬菌体裂解物可能含有多种有害副产物,尤其是革兰氏阴性菌的内毒素和许多致病细菌产生的蛋白质毒素。在噬菌体研究和治疗中,大多数应用都需要高度纯化的噬菌体悬浮液,因此减少蛋白质、内毒素、DNA和其他污染物至关重要。在本文中,我们提出了一种使用对流相互作用介质(CIM®)整体柱对铜绿假单胞菌噬菌体PP-01进行高效两步色谱纯化的方法,该方法符合cGMP要求,并且易于放大以满足治疗性噬菌体最严格的生产需求。在CIMmultus OH上进行的第一步色谱分离实现了100%的噬菌体回收率,蛋白质减少了98%,DNA含量减少了99%以上。使用三种不同的柱选项进行精制,即带有QA、H-Bond和PrimaS配体的CIMmultus。对于PP-01噬菌体,所有三种不同的选项都有效,但多模态配体H-Bond和PrimaS在内毒素去除方面(7个对数级的减少)优于传统的QA。此外,还开发了一种HPLC分析方法来估计不同过程样品中的噬菌体浓度和杂质分布。该HPLC方法与点滴试验滴定法具有良好的相关性,提供了有用的见解,并且每个样品分析只需20分钟,运行速度非常快。

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