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Intranasal influenza virus-vectored vaccine offers protection against clade 2.3.4.4b H5N1 infection in small animal models

Nature Communications. 2025-04; 
Ying Liu, Shaofeng Deng, Shuang Ren, Rachel Chun-Yee Tam, Siwen Liu, Anna Jinxia Zhang, Kelvin Kai-Wang To, Kwok-Yung Yuen, Honglin Chen & Pui Wang The University of Hong Kong
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Peptide Synthesis Cells were stimulated with RPMI solution containing influenza A virus-NP147 or -NP55 peptide at a final working concentration of 1 μg/ml per peptide (GenScript, NP147-TYQRTRALV, NP55-RLIQNSITIERMVLS). Get A Quote

摘要

The highly pathogenic avian influenza (HPAI) H5N1 virus has been endemic in aquatic birds since 1997, causing outbreaks in domestic poultry and occasional human infections worldwide. Recently, the cross-species transmission of a new reassortant variant from clade 2.3.4.4b of H5N1 to cattle in the US has heightened concerns regarding the expansion of host range and potential human infection. As eradicating the H5N1 virus from its reservoir is impossible, it is essential to prepare for a potential pandemic caused by an H5N1 derivative. Utilizing a deleted-NS1 live attenuated influenza viral vector vaccine system (DelNS1 LAIV), a system we have previously used in the development of a COVID-19 vaccine, we have rapi... More

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