Analysis of HIV-1-Based Lentiviral Vector Particle Composition by PacBio Long-Read Nucleic Acid Sequencing.

IF 4 3区 医学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Human gene therapy Pub Date : 2025-03-01 Epub Date: 2025-02-20 DOI:10.1089/hum.2024.121
Saqlain Suleman, Mohammad S Khalifa, Serena Fawaz, Sharmin Alhaque, Yaghoub Chinea, Michael Themis
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Abstract

Lentivirus (LV) vectors offer permanent delivery of therapeutic genes to the host through an RNA intermediate genome. They are one of the most commonly used vectors for clinical gene therapy of inherited disorders such as immune deficiencies and cancer immunotherapy. One of the most difficult challenges facing their widespread application to patients is the large-scale production of highly pure vector stocks. To improve vector production and downstream purification, there has been a recent investment in the United Kingdom to establish good manufacturing process (GMP)-licensed centers for manufacture and quality control. Other requirements for these vectors include their target cell specificity and tropism, how to regulate gene expression of the therapeutic payload and their potential side effects. Comprehensive detail on the full nucleic acid content of LV is unknown, even though they have entered clinical trials. With potential adverse effects in mind, it is important to identify these contents to assess their safety and purity. In this study, we used highly sensitive PacBio long-distance, next-generation sequencing of reverse-transcribed vector component RNA to investigate the nucleic acid composition of recombinant HIV-1 particles generated by human 293T packaging cells. In this article, we describe our findings of nucleic acids other than the recombinant vector genome that exist, which could potentially be delivered during gene transfer, and suggest that removal of these unwanted components be considered before clinical LV application.

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基于PacBio长读核酸测序的hiv -1慢病毒载体颗粒组成分析
慢病毒(LV)载体通过RNA中间基因组向宿主永久传递治疗性基因。它们是免疫缺陷和癌症免疫治疗等遗传性疾病的临床基因治疗中最常用的载体之一。它们在患者中广泛应用所面临的最困难的挑战之一是大规模生产高纯度载体。为了改善病媒生产和下游净化,最近在英国进行了一项投资,以建立良好生产过程(GMP)许可的生产和质量控制中心。对这些载体的其他要求包括它们的靶细胞特异性和趋向性,如何调节治疗载荷的基因表达及其潜在的副作用。尽管LV已进入临床试验,但其全核酸含量的全面细节尚不清楚。考虑到潜在的不良影响,鉴定这些成分以评估其安全性和纯度是很重要的。在这项研究中,我们使用高灵敏度的PacBio长距离、下一代逆转录载体成分RNA测序技术来研究由人293T包装细胞产生的重组HIV-1颗粒的核酸组成。在这篇文章中,我们描述了除了重组载体基因组之外存在的核酸的发现,这些核酸可能在基因转移过程中被传递,并建议在临床应用LV之前考虑去除这些不需要的成分。
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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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