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Forced Degradation Studies to Identify Critical Process Parameters for the Purification of Infectious Measles Virus

机译:强制降解研究以鉴定纯化麻疹病毒的关键工艺参数

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摘要

Oncolytic measles virus (MV) is a promising treatment for cancer but titers of up to 1011 infectious particles per dose are needed for therapeutic efficacy, which requires an efficient, robust, and scalable production process. MV is highly sensitive to process conditions, and a substantial fraction of the virus is lost during current purification processes. We therefore conducted forced degradation studies under thermal, pH, chemical, and mechanical stress to determine critical process parameters. We found that MV remained stable following up to five freeze–thaw cycles, but was inactivated during short-term incubation (< 2 h) at temperatures exceeding 35 °C. The infectivity of MV declined at pH < 7, but was not influenced by different buffer systems or the ionic strength/osmolality, except high concentrations of CaCl2 and MgSO4. We observed low shear sensitivity (dependent on the flow rate) caused by the use of a peristaltic pump. For tangential flow filtration, the highest recovery of MV was at a shear rate of ~5700 s−1. Our results confirm that the application of forced degradation studies is important to identify critical process parameters for MV purification. This will be helpful during the early stages of process development, ensuring the recovery of high titers of active MV particles after purification.
机译:溶瘤性麻疹病毒(MV)是一种有前途的癌症治疗方法,但为了达到治疗效果,每剂量最多需滴定10 11 传染性颗粒才能达到治疗效果,这需要高效,稳健和可扩展的生产工艺。 MV对加工条件高度敏感,并且在当前的纯化过程中大部分病毒丢失。因此,我们在热,pH,化学和机械应力下进行了强制降解研究,以确定关键的工艺参数。我们发现,在经过多达五个冻融循环后,MV仍保持稳定,但在温度超过35°C的短期孵育(<2 h)期间被灭活。在pH <7时,MV的感染力下降,但除高浓度的CaCl2和MgSO4外,不受其他缓冲液系统或离子强度/重量摩尔渗透压浓度的影响。我们观察到由于使用蠕动泵而导致的低剪切敏感性(取决于流速)。对于切向流过滤,MV的最高回收率是在〜5700 s -1 的剪切速率下。我们的结果证实,强制降解研究的应用对于确定MV纯化的关键工艺参数很重要。这在过程开发的早期阶段将是有帮助的,可确保纯化后回收高滴度的活性MV颗粒。

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