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Gamma irradiation of animal sera for inactivation of viruses and mollicutes--a review.

机译:γ射线辐照动物血清以灭活病毒和软体动物-综述。

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摘要

Animal-derived materials such as animal sera represent a low, but finite, risk for introduction of an adventitious agent (virus or mollicute) into a biological bulk harvest during upstream manufacturing processes involving mammalian cell substrates. Viral and mollicute (Mycoplasma sp. and Acholeplasma sp.) contamination events have been relatively rare, but many of those that have been reported have been attributed to use of infected animal sera in growth media during cell expansion. The risk of introduction of viruses and mollicutes may be mitigated by elimination of the use of animal sera and implementation instead of chemically defined or serum- and animal-derived material-free cell culture media. When use of animal sera is unavoidable, however, mitigation of the risk of introducing an adventitious contaminant may involve treatment of the sera to inactivate potential contaminants. Gamma irradiation is one of the most widely employed methods for viral and mollicute inactivation in animal sera. In this article, we review the inactivation results reported for viral and mollicute inactivation in frozen serum. Studies performed to assess the impact of gamma irradiation on serum quality and performance are also discussed. The available data indicate that inactivation of mollicutes in serum is essentially complete at the gamma radiation doses normally employed (25-40 kGy), while the efficacy and kinetics for viral inactivation in serum by gamma irradiation appear to be dependent in part upon the size of the target virus.
机译:在涉及哺乳动物细胞底物的上游生产过程中,动物源性材料(例如动物血清)代表了将外源性试剂(病毒或软体动物)引入生物批量收获物中的风险,但风险很低。病毒和软体动物(支原体菌和无形体菌)污染事件相对较少,但许多已报道的事件归因于细胞扩增过程中在生长培养基中使用了感染的动物血清。可以通过消除动物血清的使用和实施代替化学成分确定的或无血清和动物来源的材料的细胞培养基来减轻引入病毒和软体动物的风险。但是,当不可避免地使用动物血清时,降低引入不定污染物的风险可能涉及对血清进行处理以使潜在的污染物失活。 γ射线是动物血清中病毒和分子灭活最广泛使用的方法之一。在本文中,我们回顾了冷冻血清中病毒和分子灭活的灭活结果。还讨论了评估γ射线对血清质量和性能影响的研究。现有数据表明,在正常使用的γ射线剂量(25-40 kGy)下,血清中的分子灭活基本上是完全的,而γ射线对血清中病毒灭活的功效和动力学似乎部分取决于病毒的大小。目标病毒。

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