Attenuation and molecular characterization of fowl adenovirus 8b propagated in a bioreactor and its immunogenicity, efficacy, and virus shedding in broiler chickens

C. C. Ugwu, M. Hair-Bejo, M. I. Nurulfiza, A. R. Omar, A. Ideris
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Abstract

Background and Aim: Live-attenuated vaccines are the most successful type of vaccine and could be useful in controlling fowl adenovirus (FAdV) 8b infection. This study aimed to attenuate, molecularly characterize, and determine the immunogenicity, efficacy, and challenge virus shedding in broiler chickens. Materials and Methods: The FAdV 8b isolate (UPM08136) was passaged onto chicken embryo liver (CEL) cells until attenuation. We sequenced and analyzed the hexon and fiber genes of the passage isolates. The attenuated bioreactor-passage isolate was inoculated into 1-day-old broiler chickens with (attenuated and inactivated) and without booster groups and challenged. Body weight (BW), liver weight (LW), liver: body weight ratio (LBR), FAdV antibody titers, T-lymphocyte subpopulation in the liver, spleen, and thymus, and challenge virus load and shedding were measured. Results: Typical cytopathic effects with novel genetic changes on CEL cells were observed. The uninoculated control-challenged (UCC) group had significantly lower BW and higher LW and LBR than the inoculated groups. A significantly higher FAdV antibody titer was observed in the challenged non-booster and attenuated booster groups than in the UCC group. T cells in the spleen and thymus of the liver of inoculated chickens were higher than uninoculated control group levels at all-time points and at different times. A significantly higher FAdV challenge virus load was observed in the liver and shedding in the cloaca of UCC chickens than in non-booster chickens. Conclusion: The FAdV 8b isolate was successfully attenuated, safe, and immunogenic. It reduces virus shedding and is effective and recommended as a vaccine against FAdV infection in broiler chickens. Keywords: antibodies, attenuation, fowl adenovirus 8b, T lymphocytes, vaccines, virus shedding.
在生物反应器中繁殖的鸡腺病毒 8b 的衰减和分子特征及其在肉鸡中的免疫原性、效力和病毒脱落情况
背景和目的:减毒活疫苗是最成功的疫苗类型,可用于控制鸡腺病毒(FAdV)8b 感染。本研究旨在对其进行减毒、分子鉴定,并确定其在肉鸡中的免疫原性、效力和挑战性病毒脱落:将 FAdV 8b 分离株(UPM08136)传代到鸡胚肝(CEL)细胞中直至衰减。我们对传代分离物的 hexon 和纤维基因进行了测序和分析。将减毒的生物反应器-传代分离株接种到1日龄的肉鸡体内,对其进行(减毒和灭活)和无增殖组的挑战。对体重(BW)、肝重(LW)、肝:体重比(LBR)、FAdV抗体滴度、肝脏、脾脏和胸腺中的T淋巴细胞亚群以及挑战病毒载量和脱落进行了测定:结果:观察到 CEL 细胞发生了典型的细胞病理效应和新的基因变化。与接种组相比,未接种对照-挑战(UCC)组的体重明显降低,而LW和LBR则明显升高。与 UCC 组相比,未接种对照组和减毒加强组的 FAdV 抗体滴度明显更高。接种鸡肝脾和胸腺中的 T 细胞在所有时间点和不同时间均高于未接种对照组。UCC组鸡肝脏中的FAdV挑战病毒载量和泄殖腔中的病毒脱落量明显高于未接种鸡:结论:FAdV 8b 分离物成功减毒、安全且具有免疫原性。关键词:抗体;减毒;鸡腺病毒 8b;T 淋巴细胞;疫苗;病毒脱落。
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