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1型禽正副黏病毒作为针对动物和人类呼吸道病毒病原体的疫苗载体

Avian Orthoavulavirus Type-1 as Vaccine Vector against Respiratory Viral Pathogens in Animal and Human.

作者信息

Vilela Julianne, Rohaim Mohammed A, Munir Muhammad

机构信息

Division of Biomedical and Life Sciences, Lancaster University, Lancaster LA1 4YG, UK.

Department of Virology, Faculty of Veterinary Medicine, Cairo University, Giza 12211, Egypt.

出版信息

Vaccines (Basel). 2022 Feb 8;10(2):259. doi: 10.3390/vaccines10020259.

Abstract

Avian orthoavulaviruses type-1 (AOaV-1) have recently transitioned from animal vaccine vector to a bona fide vaccine delivery vehicle in human. Owing to induction of robust innate and adaptive immune responses in mucus membranes in both birds and mammals, AOaVs offer an attractive vaccine against respiratory pathogens. The unique features of AOaVs include over 50 years of safety profile, stable expression of foreign genes, high infectivity rates in avian and mammalian hosts, broad host spectrum, limited possibility of recombination and lack of pre-existing immunity in humans. Additionally, AOaVs vectors allow the production of economical and high quantities of vaccine antigen in chicken embryonated eggs and several GMP-grade mammalian cell lines. In this review, we describe the biology of AOaVs and define protocols to manipulate AOaVs genomes in effectively designing vaccine vectors. We highlighted the potential and established portfolio of AOaV-based vaccines for multiple respiratory and non-respiratory viruses of veterinary and medical importance. We comment on the limitations of AOaV-based vaccines and propose mitigations strategies. The exploitation of AOaVs vectors is expanding at an exciting pace; thus, we have limited the scope to their use as vaccines against viral pathogens in both animals and humans.

摘要

禽正禽流感病毒1型(AOaV-1)最近已从动物疫苗载体转变为人类真正的疫苗递送工具。由于在鸟类和哺乳动物的黏膜中诱导强大的先天性和适应性免疫反应,AOaV为抵抗呼吸道病原体提供了一种有吸引力的疫苗。AOaV的独特特征包括50多年的安全记录、外源基因的稳定表达、在禽类和哺乳动物宿主中的高感染率、广泛的宿主谱、重组可能性有限以及人类缺乏预先存在的免疫力。此外,AOaV载体允许在鸡胚和几种GMP级哺乳动物细胞系中经济且大量地生产疫苗抗原。在本综述中,我们描述了AOaV的生物学特性,并定义了在有效设计疫苗载体时操纵AOaV基因组的方案。我们强调了基于AOaV的疫苗针对多种具有兽医和医学重要性的呼吸道和非呼吸道病毒的潜力和已建立的产品组合。我们评论了基于AOaV的疫苗的局限性并提出缓解策略。AOaV载体的开发正在以令人兴奋的速度扩展;因此,我们将范围限制在它们作为针对动物和人类病毒病原体的疫苗的用途上。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11ea/8876055/9e65bf6f4c36/vaccines-10-00259-g001.jpg

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