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一种针对牛源甲型流感(H5N1)2.3.4.4.b分支病毒的减毒活NS1缺陷候选疫苗。

A live attenuated NS1-deficient vaccine candidate for cattle-origin influenza A (H5N1) clade 2.3.4.4.b viruses.

作者信息

Mostafa Ahmed, Ye Chengjin, Barre Ramya S, Shivanna Vinay, Meredith Reagan, Platt Roy N, Escobedo Ruby A, Bayoumi Mahmoud, Castro Esteban M, Jackson Nathaniel, Cupic Anastasija, Nogales Aitor, Anderson Timothy J C, García-Sastre Adolfo, Martinez-Sobrido Luis

机构信息

Host-pathogen interactions (HPI) and Disease Intervention and Prevention (DIP) programs, Texas Biomedical Research Institute, San Antonio, TX, USA.

Center of Scientific Excellence for Influenza Viruses, National Research Centre, Giza, Egypt.

出版信息

NPJ Vaccines. 2025 Jul 12;10(1):151. doi: 10.1038/s41541-025-01207-9.

Abstract

Avian Influenza viruses (AIVs) present a public health risk, especially with seasonal vaccines offering limited protection. AIV H5N1 clade 2.3.4.4b has caused a multi-state outbreaks in the United States (US) poultry and cattle since March 2024, raising pandemic concerns. We developed a nonstructural protein 1 (NS1)-deficient mutant of a low pathogenic version of the cattle-origin human influenza A/Texas/37/2024 H5N1, namely LPhTXdNS1, and assessed its safety, immunogenicity, and protection efficacy. LPhTXdNS1 is attenuated in vitro, showing reduced replication efficiency in Vero cells and inability to control IFNβ promoter activation. The LPhTXdNS1-immunized C57BL/6 J mice exhibit significantly reduced viral replication and pathogenicity compared to those infected with the low pathogenic version expressing NS1, namely LPhTX. Notably, a single intranasal dose of LPhTXdNS1 elicited protective immune responses, providing robust protection against lethal wild-type H5N1 challenge. These results demonstrate that LPhTXdNS1 is safe and able to induce protective immune responses against H5N1.

摘要

禽流感病毒(AIVs)存在公共卫生风险,尤其是季节性疫苗提供的保护有限时。自2024年3月以来,AIV H5N1进化分支2.3.4.4b在美国多个州的家禽和牛群中引发了疫情,引发了对大流行的担忧。我们开发了一种源自牛的低致病性甲型流感病毒A/德克萨斯/37/2024 H5N1的非结构蛋白1(NS1)缺陷型突变体,即LPhTXdNS1,并评估了其安全性、免疫原性和保护效果。LPhTXdNS1在体外减毒,在Vero细胞中的复制效率降低,且无法控制IFNβ启动子激活。与感染表达NS1的低致病性毒株(即LPhTX)的小鼠相比,用LPhTXdNS1免疫的C57BL/6 J小鼠的病毒复制和致病性显著降低。值得注意的是,单次鼻内接种LPhTXdNS1可引发保护性免疫反应,为抵抗致死性野生型H5N1攻击提供强大保护。这些结果表明,LPhTXdNS1是安全的,能够诱导针对H5N1的保护性免疫反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fee8/12255740/5bfb3fee6bd1/41541_2025_1207_Fig1_HTML.jpg

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