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A spike-trimer protein-based tetravalent COVID-19 vaccine elicits enhanced breadth of neutralization against SARS-CoV-2 Omicron subvariants and other variants 被引量:3
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作者 Rui Wang Hongpeng Huang +13 位作者 chulin yu Chunyun Sun Juan Ma Desheng Kong Yalong Lin Dandan Zhao Shaozheng Zhou Jianbo Lu Sai Cao Yanjing Zhang Chunxia Luo Xuefeng Li Yang Wang Liangzhi Xie 《Science China(Life Sciences)》 SCIE CAS CSCD 2023年第8期1818-1830,共13页
Multivalent vaccines combining crucial mutations from phylogenetically divergent variants could be an effective approach to defend against existing and future SARS-Co V-2 variants.In this study,we developed a tetraval... Multivalent vaccines combining crucial mutations from phylogenetically divergent variants could be an effective approach to defend against existing and future SARS-Co V-2 variants.In this study,we developed a tetravalent COVID-19 vaccine SCTV01E,based on the trimeric Spike protein of SARS-Co V-2 variants Alpha,Beta,Delta,and Omicron BA.1,with a squalenebased oil-in-water adjuvant SCT-VA02B.In the immunogenicity studies in na?ve BALB/c and C57BL/6J mice,SCTV01E exhibited the most favorable immunogenic characteristics to induce balanced and broad-spectrum neutralizing potencies against pre-Omicron variants(D614G,Alpha,Beta,and Delta)and newly emerging Omicron subvariants(BA.1,BA.1.1,BA.2,BA.3,and BA.4/5).Booster studies in C57BL/6J mice previously immunized with D614G monovalent vaccine demonstrated superior neutralizing capacities of SCTV01E against Omicron subvariants,compared with the D614G booster regimen.Furthermore,SCTV01E vaccination elicited na?ve and central memory T cell responses to SARS-Co V-2 ancestral strain and Omicron spike peptides.Together,our comprehensive immunogenicity evaluation results indicate that SCTV01E could become an important COVID-19 vaccine platform to combat surging infections caused by the highly immune evasive BA.4/5 variants.SCTV01E is currently being studied in a head-to-head immunogenicity comparison phase 3 clinical study with inactivated and m RNA vaccines(NCT05323461). 展开更多
关键词 tetravalent SARS-CoV-2 vaccine Omicron subvariants broad neutralization
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S30408低温棘轮效应本构描述 被引量:2
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作者 陈亚南 高炳军 +3 位作者 董俊华 余雏麟 陈旭 张锴 《固体力学学报》 CAS CSCD 北大核心 2020年第5期421-432,共12页
S30408奥氏体不锈钢因其优异的力学性能和耐低温性能而被广泛用于制作LNG等低温罐车罐体的内容器.此类罐体的内容器在其支撑部位不但承受内压引起的恒定应力还会承受惯性载荷引起的交变应力,容易发生渐进的塑性应变累积即棘轮效应.但目... S30408奥氏体不锈钢因其优异的力学性能和耐低温性能而被广泛用于制作LNG等低温罐车罐体的内容器.此类罐体的内容器在其支撑部位不但承受内压引起的恒定应力还会承受惯性载荷引起的交变应力,容易发生渐进的塑性应变累积即棘轮效应.但目前还缺乏有效预测S30408低温棘轮效应的本构描述.利用几种较为先进的本构模型对低温S30408奥氏体不锈钢棘轮应变进行模拟,发现这些本构模型存在循环初期过低预测和循环后期过高预测的缺点,并且这种过高预测会随着循环圈数的增加而增大.基于Ohno-Wang II模型,关联形变马氏体含量与各向同性强化和随动强化,并给出马氏体含量dξ的演化规律,进而提出一种含马氏体相变的循环塑性本构模型.与其它模型相比,该模型能有效改善在循环初期预测值过低和后期预测值过高的情况,同时能够较好地预测循环加载过程中形变马氏体的含量. 展开更多
关键词 棘轮效应 循环塑性 本构模型 马氏体相变
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