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Removal of chromatin by salt‐tolerant endonucleases for production of recombinant measles virus

机译:用耐盐核酸内切酶去除染色质以生产重组麻疹病毒

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摘要

Abstract Host cell DNA is a critical impurity in downstream processing of enveloped viruses. Especially, DNA in the form of chromatin is often neglected. Endonuclease treatment is an almost mandatory step in manufacturing of viral vaccines. In order to find the optimal performer, four different endonucleases, two of them salt tolerant, were evaluated in downstream processing of recombinant measles virus. Endonuclease treatment was performed under optimal temperature conditions after clarification and before the purification by flow‐through chromatography with a core shell chromatography medium: Capto™ Core 700. Virus infectivity was measured by TCID50. DNA and histone presence in process and purified samples was determined using PicoGreen™ assay and Western blot analysis using an anti‐histone antibody, respectively. All tested endonucleases allowed the reduction of DNA content improving product purity. The salt‐tolerant endonucleases SAN and M‐SAN were more efficient in the removal of chromatin compared with the non‐salt‐tolerant endonucleases Benzonase® and DENARASE®. Removal of chromatin using M‐SAN was also possible without the addition of extra salt to the cell culture supernatant. The combination of the endonuclease treatment, using salt‐tolerant endonucleases with flow‐through chromatography, using core–shell particles, resulted in high purity and purification efficiency. This strategy has all features for a platform downstream process of recombinant measles virus and beyond.
机译:摘要 宿主细胞DNA是包膜病毒下游加工过程中的关键杂质。特别是,染色质形式的DNA经常被忽视。核酸内切酶治疗几乎是病毒疫苗生产的强制性步骤。为了找到最佳性能,在重组麻疹病毒的下游加工中评估了四种不同的核酸内切酶,其中两种耐盐。在澄清后和纯化之前,使用核壳层析介质Capto™ Core 700在最佳温度条件下进行核酸内切酶处理。通过 TCID50 测量病毒感染性。分别使用 PicoGreen™ 测定法和使用抗组蛋白抗体的蛋白质印迹分析法测定工艺和纯化样品中 DNA 和组蛋白的存在。所有测试的核酸内切酶都可以降低DNA含量,从而提高产品纯度。与非耐盐核酸内切酶 Benzonase® 和 DENARASE® 相比,耐盐核酸内切酶 SAN 和 M-SAN 在去除染色质方面更有效。使用M-SAN去除染色质也是可能的,而无需向细胞培养上清液中添加额外的盐。使用耐盐核酸内切酶处理与流通色谱法(使用核壳颗粒)相结合,可获得高纯度和纯化效率。该策略具有重组麻疹病毒及其他平台下游工艺的所有功能。

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