Evaluation of Purification Methods for Minimizing Transgene Expression Background During Viral Manufacturing.

IF 3.9 3区 医学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Human gene therapy Pub Date : 2025-04-01 Epub Date: 2025-03-19 DOI:10.1089/hum.2024.115
Raphaela Bento, Alexandra Burr, Matthew Teryek, Biju Parekkadan
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引用次数: 0

Abstract

Gene therapy has emerged as a promising therapeutic avenue, offering targeted treatments for various diseases. Purification of viral vectors presents a pivotal challenge, demanding the removal of impurities while preserving integrity and potency. During manufacturing, producer cells in transfection systems can be transiently transfected or retro-infected by the viral vectors they have just produced-a process referred to as "retro-transduction"-leading them to express the transgenes of interest. This can be a significant source of contamination in the viral solution pool, particularly when the transgenes encode extracellular, secreted proteins, resulting in cytotoxicity and reduced viral potency. Herein, we aimed to evaluate the efficiency of different viral purification systems commonly used in academic and industry settings in removing the transgene background from viral solutions. The efficiency of each system was assessed based on the levels of the secreted transgene Gaussia Luciferase (GLuc), which can be quickly detected in a solution and served as a readout for transgene background contamination in the viral pool during downstream processing. Through a systematic evaluation of purification methods, we identified the most effective approaches for producing pure viral batches with minimal transgene background, all while preserving viral potency and functionality. Our study revealed superior performance of batches that underwent purification via tangential flow filtration, which yielded over 90% reduction in GLuc background and the highest transduction efficiency rates. This work provides significant insights for advancing gene therapy applications that rely on the production of viral vectors encoding secreted transgenes.

在病毒制造过程中最小化转基因表达背景的纯化方法的评价。
基因治疗已经成为一种很有前途的治疗途径,为各种疾病提供有针对性的治疗。病毒载体的纯化提出了一个关键的挑战,要求去除杂质,同时保持完整性和效力。在制造过程中,转染系统中的生产细胞可以被它们刚刚产生的病毒载体瞬时转染或反转录感染——这一过程被称为“反转录转导”——导致它们表达感兴趣的转基因。这可能是病毒溶液池中的一个重要污染源,特别是当转基因编码细胞外分泌蛋白时,导致细胞毒性和病毒效力降低。在此,我们旨在评估学术界和工业界常用的不同病毒纯化系统从病毒溶液中去除转基因背景的效率。每个系统的效率是根据分泌的转基因高斯荧光素酶(GLuc)的水平来评估的,GLuc可以在溶液中快速检测到,并在下游处理过程中作为病毒池中转基因背景污染的读数。通过对纯化方法的系统评估,我们确定了生产具有最小转基因背景的纯病毒批次的最有效方法,同时保留了病毒的效力和功能。我们的研究表明,经过切向流过滤纯化的批次具有优异的性能,其GLuc背景降低90%以上,转导效率最高。这项工作为推进依赖于编码分泌转基因的病毒载体的生产的基因治疗应用提供了重要的见解。
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来源期刊
Human gene therapy
Human gene therapy 医学-生物工程与应用微生物
CiteScore
6.50
自引率
4.80%
发文量
131
审稿时长
4-8 weeks
期刊介绍: Human Gene Therapy is the premier, multidisciplinary journal covering all aspects of gene therapy. The Journal publishes in-depth coverage of DNA, RNA, and cell therapies by delivering the latest breakthroughs in research and technologies. Human Gene Therapy provides a central forum for scientific and clinical information, including ethical, legal, regulatory, social, and commercial issues, which enables the advancement and progress of therapeutic procedures leading to improved patient outcomes, and ultimately, to curing diseases.
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