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Continuous cell lines from the Muscovy duck as potential replacement for primary cells in the production of avian vaccines

机译:番鸭连续细胞系可能替代禽流感疫苗生产中的原代细胞

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摘要

Veterinary vaccines contribute to food security, interrupt zoonotic transmissions, and help to maintain overall health in livestock. Although vaccines are usually cost-effective, their adoption depends on a multitude of factors. Because poultry vaccines are usually given to birds with a short life span, very low production cost per dose is one important challenge. Other hurdles are to ensure a consistent and reliable supply of very large number of doses, and to have flexible production processes to accommodate a range of different pathogens and dosage requirements. Most poultry vaccines are currently being produced on primary avian cells derived from chicken or waterfowl embryos. This production system is associated with high costs, logistic complexities, rigid intervals between harvest and production, and supply limitations. We investigated whether the continuous cell lines Cairina retina and CR.pIX may provide a substrate independent of primary cell cultures or embryonated eggs. Viruses examined for replication in these cell lines are strains associated with, or contained in vaccines against egg drop syndrome, Marek's disease, Newcastle disease, avian influenza, infectious bursal disease and Derzsy's disease. Each of the tested viruses required the development of unique conditions for replication that are described here and can be used to generate material for in vivo efficacy studies and to accelerate transfer of the processes to larger production volumes.
机译:兽用疫苗有助于粮食安全,中断人畜共患疾病的传播,并有助于保持牲畜的整体健康。尽管疫苗通常具有成本效益,但其采用取决于多种因素。由于家禽疫苗通常是给寿命短的禽类提供的,因此每剂量非常低的生产成本是一项重要的挑战。其他障碍是要确保一致且可靠地提供大量剂量,并具有灵活的生产工艺以适应一系列不同的病原体和剂量要求。目前,大多数家禽疫苗都是在源自鸡或水禽胚胎的原代禽细胞上生产的。该生产系统与高成本,后勤复杂性,收获和生产之间的严格间隔以及供应限制有关。我们调查了连续细胞系Cairina视网膜和CR.pIX是否可以提供独立于原代细胞培养物或胚卵的底物。在这些细胞系中检查复制的病毒是与掉蛋综合症,马立克氏病,新城疫,禽流感,传染性法氏囊病和德氏病相关的疫苗株或包含在其中的株。每个被测试的病毒都需要开发出此处所述的独特复制条件,并且可以用于生成用于体内功效研究的材料,并加速将过程转移至更大的产量。

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