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用于确定兽病毒制药生产关键工艺参数的稳定性研究。

Stability studies for the identification of critical process parameters for a pharmaceutical production of the Orf virus.

机构信息

Institute of Bioprocess Engineering and Pharmaceutical Technology, University of Applied Sciences Mittelhessen (THM), Wiesenstr.14, 35390 Giessen, Germany.

Lab Essentials Applications Development, Sartorius Stedim Biotech GmbH, August-Spindler-Straße 11, 37079 Goettingen, Germany; Institute of Technical Chemistry, Leibniz University Hannover, Callinstraße 3-9, 30167 Hannover, Lower Saxony, Germany.

出版信息

Vaccine. 2023 Jul 19;41(32):4731-4742. doi: 10.1016/j.vaccine.2023.06.047. Epub 2023 Jun 21.

Abstract

A promising new vaccine platform is based on the Orf virus, a viral vector of the genus Parapoxvirus, which is currently being tested in phase I clinical trials. The application as a vaccine platform mandates a well-characterised, robust, and efficient production process. To identify critical process parameters in the production process affecting the virus' infectivity, the Orf virus was subjected to forced degradation studies, including thermal, pH, chemical, and mechanical stress conditions. The tests indicated a robust virus infectivity within a pH range of 5-7.4 and in the presence of the tested buffering substances (TRIS, HEPES, PBS). The ionic strength up to 0.5 M had no influence on the Orf virus' infectivity stability for NaCl and MgCl, while NHCl destabilized significantly. Furthermore, short-term thermal stress of 2d up to 37 °C and repeated freeze-thaw cycles (20cycles) did not affect the virus' infectivity. The addition of recombinant human serum albumin was found to reduce virus inactivation. Last, the Orf virus showed a low shear sensitivity induced by peristaltic pumps and mixing, but was sensitive to ultrasonication. The isoelectric point of the applied Orf virus genotype D1707-V was determined at pH3.5. The broad picture of the Orf virus' infectivity stability against environmental parameters is an important contribution for the identification of critical process parameters for the production process, and supports the development of a stable pharmaceutical formulation. The work is specifically relevant for enveloped (large DNA) viruses, like the Orf virus and like most vectored vaccine approaches.

摘要

一种有前景的新型疫苗平台基于口疮病毒(Orf virus),这是痘病毒科副痘病毒属的一种病毒载体,目前正在进行 I 期临床试验。作为疫苗平台的应用需要一个特征明确、稳健和高效的生产工艺。为了确定影响病毒感染力的生产过程中的关键工艺参数,对口疮病毒进行了强制降解研究,包括热、pH 值、化学和机械应力条件。测试表明,在 pH 值为 5-7.4 的范围内,以及在测试缓冲物质(TRIS、HEPES、PBS)存在的情况下,病毒具有稳健的感染力。离子强度高达 0.5 M 对 NaCl 和 MgCl 中 Orf 病毒感染力稳定性没有影响,而 NHCl 则显著不稳定。此外,短期热应激 2 天至 37°C 和重复冻融循环(20 次)不会影响病毒的感染力。添加重组人血清白蛋白被发现会降低病毒失活。最后,Orf 病毒对蠕动泵和混合引起的剪切力具有低敏感性,但对超声敏感。所应用的 Orf 病毒基因型 D1707-V 的等电点在 pH3.5 时确定。对口疮病毒对环境参数的感染力稳定性的全面了解是确定生产工艺关键工艺参数的重要贡献,并支持稳定药物制剂的开发。这项工作对于包膜(大 DNA)病毒,如口疮病毒和大多数载体疫苗方法特别相关。

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