期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Plant-based,adjuvant-free,potent multivalent vaccines for avian influenza virus via Lactococcus surface display
1
作者 Shi-Jian Song Gyeong-Im Shin +13 位作者 Jinyong Noh Jiho Lee Deok-Hwan Kim Gyeongryul Ryu Gyeongik Ahn Hyungmin Jeon Hai-Ping Diao Youngmin Park Min Gab Kim Woe-Yeon Kim Young-Jin Kim Eun-Ju Sohn Chang Seon Song Inhwan Hwang 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2021年第8期1505-1520,共16页
Influenza epidemics frequently and unpredictably break out all over the world,and seriously affect the breeding industry and human activity.Inactivated and live attenuated viruses have been used as protective vaccines... Influenza epidemics frequently and unpredictably break out all over the world,and seriously affect the breeding industry and human activity.Inactivated and live attenuated viruses have been used as protective vaccines but exhibit high risks for biosafety.Subunit vaccines enjoy high biosafety and specificity but have a few weak points compared to inactivated virus or live attenuated virus vaccines,especially in low immunogenicity.In this study,we developed a new subunit vaccine platform for a potent,adjuvant-free,and multivalent vaccination.The ectodomains of hemagglutinins(HAs)of influenza viruses were expressed in plants as trimers(tHAs)to mimic their native forms.tHAs in plant extracts were directly used without purification for binding to inactivated Lactococcus(iLact)to produce iLact-tHAs,an antigen-carrying bacteria-like particle(BLP).tHAs BLP showed strong immune responses in mice and chickens without adjuvants.Moreover,simultaneous injection of two different antigens by two different formulas,t^(HAH5N6+H9N2) BLP or a combination of t^(HAH5N6) BLP and t^(HAH9N2) BLP,led to strong immune responses to both antigens.Based on these results,we propose combinations of plant-based antigen production and BLP-based delivery as a highly potent and cost-effective platform for multivalent vaccination for subunit vaccines. 展开更多
关键词 bacteria-like particle(BLP) H5N6 H9N2 Lactococcus lactis multi-valent vaccine plant-based vaccine trimeric HA
原文传递
大肠杆菌htrA突变株构建及其在鼠疫拟菌颗粒疫苗制备中的应用
2
作者 李璐 刘万兵 +4 位作者 周亚洲 纪宇欣 周冬生 杨瑞馥 王效义 《军事医学》 CAS CSCD 北大核心 2018年第7期539-544,共6页
目的基于乳酸乳球菌和鼠疫耶尔森菌F1抗原,制备鼠疫拟菌颗粒疫苗。方法基于λ-Red一步重组技术,构建BL-21大肠杆菌htr A基因缺失突变株;将鼠疫菌F1抗原基因和PA基因克隆至p ET-28a(+)质粒中构建F1-PA融合蛋白表达载体,将此载体分别导入... 目的基于乳酸乳球菌和鼠疫耶尔森菌F1抗原,制备鼠疫拟菌颗粒疫苗。方法基于λ-Red一步重组技术,构建BL-21大肠杆菌htr A基因缺失突变株;将鼠疫菌F1抗原基因和PA基因克隆至p ET-28a(+)质粒中构建F1-PA融合蛋白表达载体,将此载体分别导入到BL-21大肠杆菌野生株和其htr A基因缺失突变株中构建F1-PA融合蛋白表达菌株; SDS-PAGE电泳分析F1-PA融合蛋白表达;镍柱亲和层析纯化包涵体蛋白,梯度稀释透析法复性F1-PA融合蛋白;乳酸乳球菌经热酸处理制备拟菌颗粒;革兰染色和透射电镜分析拟菌颗粒的形态;拟菌颗粒分别与F1-PA融合蛋白或F1蛋白共孵育制备拟菌颗粒疫苗。结果 F1-PA融合蛋白在大肠杆菌野生株和htr A缺失突变株中均以包涵体形式表达。拟菌颗粒对F1-Pa融合蛋白的吸附能力明显高于对F1蛋白的吸附能力。F1-PA融合蛋白在大肠杆菌htr A突变株中的表达量明显高于在野生株中的表达量。结论大肠杆菌htr A突变株用于表达F1-PA融合蛋白优于野生株。借助于肽聚糖锚钩蛋白,可将鼠疫菌F1抗原结合到乳酸乳球菌拟菌颗粒上制备鼠疫拟菌颗粒疫苗。 展开更多
关键词 乳酸乳球菌 拟菌颗粒疫苗 鼠疫耶尔森菌 F1抗原 大肠杆菌htrA突变株
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部