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通过盐活性核酸酶处理和肝素亲和层析的组合生成高纯度麻疹病毒。

Highly pure measles virus generated by combination of salt-active nuclease treatment and heparin affinity chromatography.

机构信息

Austrian Centre of Industrial Biotechnology, Vienna, Austria; Institute of Bioprocess Science and Engineering (IBSE), BOKU University, Vienna, Austria.

Austrian Centre of Industrial Biotechnology, Vienna, Austria.

出版信息

J Chromatogr A. 2024 Dec 6;1738:465470. doi: 10.1016/j.chroma.2024.465470. Epub 2024 Oct 22.

DOI:10.1016/j.chroma.2024.465470
PMID:39488125
Abstract

Highly purified virus preparations are essential for accurate activity and potency determination. This requires simple and efficient purification methods, especially in the early stages of research and development. While heparin affinity chromatography has been already successfully used for the purification of several enveloped viruses and virus-like particles, we extended its use to purification of very sensitive measles virus. The performance of heparin and heparin-like affinity chromatography was evaluated for the purification of recombinant measles virus, a large and labile enveloped virus used as vaccine or cancer therapy. Since DNA, particularly in the form of chromatin is a critical impurity in enveloped virus preparations, the effect of integration of an endonuclease (Benzonase® or M-SAN) treatment prior to chromatography was also investigated. Both, Capto™ DeVirS (heparin-like) and Capto™ Heparin were able to capture measles viruses directly from clarified cell culture supernatant. Despite capturing 100 % of infectious measles virus, low recovery (8 %) was observed for Capto™ DeVirS. For Capto™ Heparin recoveries up to 85 % were observed. The combination of M-SAN with Capto™ Heparin enabled the production of highly purified measles virus with a yield of 62 % and a final purity of 10.2 ng dsDNA per dose (1 × 10), outperforming the processes without endonuclease treatment with a yield of 18 %, and a purity of 66.7 ng dsDNA/dose or using Benzonase® with a yield of 38 % and a purity of 21.2 ng dsDNA/dose. As the developed method is simple and scalable it could also be integrated in a downstream process train for measles virus manufacturing.

摘要

高度纯化的病毒制剂对于准确的活性和效价测定至关重要。这需要简单而高效的纯化方法,尤其是在研究和开发的早期阶段。虽然肝素亲和层析已成功用于几种包膜病毒和类病毒颗粒的纯化,但我们将其扩展用于非常敏感的麻疹病毒的纯化。评估了肝素亲和层析和肝素类似亲和层析在纯化重组麻疹病毒中的性能,麻疹病毒是一种大而不稳定的包膜病毒,可用作疫苗或癌症治疗药物。由于 DNA,特别是染色质的形式,是包膜病毒制剂中的关键杂质,因此还研究了在层析之前整合内切酶(Benzonase®或 M-SAN)处理的效果。Capto™DeVirS(肝素类似物)和 Capto™Heparin 都能够直接从澄清的细胞培养上清液中捕获麻疹病毒。尽管捕获了 100%的感染性麻疹病毒,但 Capto™DeVirS 的回收率(8%)较低。对于 Capto™Heparin,观察到的回收率高达 85%。M-SAN 与 Capto™Heparin 的组合能够以 62%的产率和每剂量(1×10)10.2ngdsDNA 的最终纯度生产高度纯化的麻疹病毒,优于没有内切酶处理的过程,其产率为 18%,纯度为 66.7ngdsDNA/剂量,或使用 Benzonase®的产率为 38%,纯度为 21.2ngdsDNA/剂量。由于所开发的方法简单且可扩展,因此它也可以集成到麻疹病毒制造的下游工艺中。

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