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山羊痘病毒和小反刍兽疫病毒在 Vero 细胞中的共感染动力学。

Coinfection kinetics of goatpox virus and peste-des-petits-ruminants virus in Vero cells.

机构信息

ICAR-Indian Veterinary Research Institute, Mukteswar, Uttarakhand, 263 138, India.

ICAR-Indian Veterinary Research Institute, Izatnagar, Uttar Pradesh, 243 122, India.

出版信息

Braz J Microbiol. 2022 Dec;53(4):2309-2314. doi: 10.1007/s42770-022-00801-6. Epub 2022 Jul 27.

Abstract

Goatpox, sheeppox, and peste-des-petits-ruminants (PPR) are economically important virus diseases affecting goats and sheep, which often cause coinfection/comorbidities in the field. Coinfection with these viruses leads to enhanced infection in natural scenarios in terms of morbidities and mortalities. Currently, individual live attenuated vaccines are being used to mitigate these diseases and research on combination vaccines for these diseases is encouraging. For the preparation of combination vaccines, vaccine strains of the peste-des-petits-ruminants virus (PPRV), goatpox virus (GTPV), and sheeppox virus (SPPV) are grown separately and GTPV + PPRV are mixed for vaccination of goats, and PPRV + SPPV for sheep. Growing capripox and PPRV strains in the same cells simultaneously without the titer loss will save the time and cost of production. In the current study, we have evaluated the coinfection kinetics of capripox virus and a PPRV using a candidate GTPV vaccine strain (originally caused infection in both goats and sheep in the field) and PPRV/Sungri/96 (vaccine strain) in Vero cells. At high multiplicity of infection (MOI), PPRV was excluded from coinfection by GTPV, whereas at a low multiplicity coexistence/accommodation was observed between PPRV and GTPV without loss of the titer. The results shed light on the possibility of the production of two vaccine strains in the same cells using the coinfection model economically.

摘要

山羊痘、绵羊痘和小反刍兽疫(PPR)是影响山羊和绵羊的具有重要经济意义的病毒病,这些疾病在野外通常会导致合并感染/合并症。这些病毒的合并感染会导致在自然情况下发病率和死亡率增加。目前,正在使用单独的减毒活疫苗来减轻这些疾病的影响,并且针对这些疾病的联合疫苗的研究令人鼓舞。为了制备联合疫苗,小反刍兽疫病毒(PPRV)、山羊痘病毒(GTPV)和绵羊痘病毒(SPPV)的疫苗株分别生长,GTPV+PPRV 用于山羊接种,PPRV+SPPV 用于绵羊接种。在同一细胞中同时生长山羊痘病毒和 PPRV 而不会导致滴度损失将节省生产的时间和成本。在本研究中,我们使用候选 GTPV 疫苗株(最初在野外感染山羊和绵羊)和 PPRV/Sungri/96(疫苗株)在 Vero 细胞中评估了山羊痘病毒和 PPRV 的合并感染动力学。在高感染复数(MOI)下,PPRV 被 GTPV 排除在合并感染之外,而在低 MOI 下,PPRV 和 GTPV 共存/适应,而不会损失滴度。结果表明,使用合并感染模型可以经济地在同一细胞中生产两种疫苗株。

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