Langat病毒感染性克隆的研制及其作为蜱传脑炎减毒活疫苗的平台。

Naveed Asghar, Rita Jaafar, Anna Valko, Olivia Merinder, Karl Ljungberg, Carl Mårten Lindqvist, Magnus Johansson
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引用次数: 0

摘要

蜱传脑炎(TBE)是欧洲和亚洲最重要的蜱传疾病之一。由于没有特定的抗病毒治疗,疫苗接种仍然是对TBE最有效的保护策略。与目前需要反复加强的灭活疫苗不同,减毒活疫苗只需一次剂量即可提供终身免疫。Langat病毒(LGTV)是一种自然减毒的TBE病毒(TBEV)。在这项研究中,我们利用RNA和dna为基础的反向遗传学方法,设计和拯救了4个LGTV的感染性克隆(ICs)。用dna法拯救的细胞在细胞培养中表现出较高的遗传稳定性。我们在体外和体内进一步评估了一种基于dna的方法拯救的ic,其生长动力学和免疫特征与我们实验室的LGTV菌株相当。该反向遗传学平台将用于在LGTV基因组中引入靶向突变,以开发TBE减毒活疫苗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of Langat virus infectious clones as a platform for live-attenuated tick-borne encephalitis vaccine.

Tick-borne encephalitis (TBE) is one of the most important tick-transmitted diseases in Europe and Asia. With no specific antiviral treatment available, vaccination remains the most effective protective strategy for TBE. Unlike currently available inactivated TBE vaccines that require repeated boosters, live-attenuated vaccines could offer lifelong immunity with a single dose. Langat virus (LGTV) is a naturally attenuated strain of TBE virus (TBEV). In this study, we engineered and rescued four infectious clones (ICs) of LGTV using RNA- and DNA-based reverse genetics methods. The ICs rescued by DNA-based method showed higher genetic stability in cell culture. One of the ICs rescued by DNA-based method was further evaluated in vitro and in vivo, which exhibited growth kinetics and immune profile comparable to the LGTV strain in our laboratory. This reverse genetics platform will be utilized to introduce targeted mutations within the LGTV genome to develop a live-attenuated TBE vaccine.

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