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H1N2亚型猪流感病毒的灭活稳定性及小鼠免疫原性评价

林梦琪 张楠 全柯吉 李之璠 路子俊 杨辉 秦涛 陈素娟 彭大新

中国兽医科学2026,Vol.56Issue(3):312-318,7.
中国兽医科学2026,Vol.56Issue(3):312-318,7.DOI:10.16656/j.issn.1673-4696.2026.0044

H1N2亚型猪流感病毒的灭活稳定性及小鼠免疫原性评价

Inactivation stability of H1 subtype swine influenza virus and evaluation of immunogenicity in mice

林梦琪 1张楠 1全柯吉 1李之璠 1路子俊 1杨辉 1秦涛 1陈素娟 1彭大新1

作者信息

  • 1. 扬州大学 兽医学院 江苏省动物重要疫病与人兽共患病防控协同创新中心,江苏扬州 225009
  • 折叠

摘要

Abstract

To enhance the inactivation stability and immunogenicity of swine influenza virus(SIV),the HA and NA genes of the H1N2 subtype strain A/Swine/Jiangsu/1281/2019(JS1281)were combined with the six internal genes of A/Puerto Rico/8/1934(PR8)to generate a recombinant virus,designated r1281.Site-directed mutations(K170Q,S174T,D202I,and S174T+Y175F)were introduced into the HA pro-tein of r1281 at amino acid positions associated with viral thermostability.The biological character-istics of r1281 and the mutant recombinant viruses were analyzed,and the protective efficacy of r1281-174T+175F was further evaluated in mice through immunization and challenge experiments.Results showed that,compared with the parental virus r1281,the mutant virus r1281-174T+175F exhibited enhanced replication capacity in MDCK cells and significantly improved inactivation stability after treatment with either formaldehyde or binary ethyleneimine(BEI).Moreover,mice immunized with formaldehyde or BEI-inactivated r1281-174T+175F produced higher hemagglutination inhibition anti-body titers and were effectively protected against pathological damage in their organs.These findings demonstrate that the combined mutations S174T and Y175F are critical for maintaining the inactivation stability of SIV without compromising its immunogenicity,providing a scientific basis for improving the antigen stability of SIV-inactivated vaccines.

关键词

H1亚型猪流感病毒/HA基因/稳定性/甲醛/二乙烯亚胺

Key words

H1 subtype swine influenza virus/HA gene/stability/formaldehyde/BEI

分类

农业科技

引用本文复制引用

林梦琪,张楠,全柯吉,李之璠,路子俊,杨辉,秦涛,陈素娟,彭大新..H1N2亚型猪流感病毒的灭活稳定性及小鼠免疫原性评价[J].中国兽医科学,2026,56(3):312-318,7.

基金项目

国家重点研发计划项目(2021YFD1800202) (2021YFD1800202)

江苏省高校优势学科项目(PAPD) (PAPD)

中国兽医科学

1673-4696

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