日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

The low-density lipoprotein receptor LDLR mediates cellular entry of nonenveloped hepatitis A virus.

低密度脂蛋白受体 LDLR 介导无包膜甲型肝炎病毒进入细胞。

Shiota Tomoyuki, Zhao Yuguang, Shiota Itoe, Duyvesteyn Helen M E, Yamaoka Manami, Das Anshuman, Kapustina Maryna, Shah Pranav, Muramatsu Masamichi, Wang Xiangxi, Fry Elizabeth E, Stuart David I, Lemon Stanley M

A broadly neutralizing antibody against the SARS-CoV-2 Omicron sub-variants BA.1, BA.2, BA.2.12.1, BA.4, and BA.5

针对SARS-CoV-2 Omicron亚型BA.1、BA.2、BA.2.12.1、BA.4和BA.5的广谱中和抗体

Chen, Zhe; Feng, Leilei; Wang, Lei; Zhang, Li; Zheng, Binyang; Fu, Hua; Li, Fengdi; Liu, Ligai; Lv, Qi; Deng, Ran; Xu, YanLi; Hu, Yongfeng; Zheng, Jianhua; Qin, Chuan; Bao, Linlin; Wang, Xiangxi; Jin, Qi

Structural basis for the activation of plant bunyavirus replication machinery and its dual-targeted inhibition by ribavirin.

植物布尼亚病毒复制机制激活的结构基础及其利巴韦林双靶向抑制作用

Li Jia, Cao Lei, Zhao Yaqian, Shen Jinghan, Wang Lei, Feng Mingfeng, Zhu Min, Ye Yonghao, Kormelink Richard, Tao Xiaorong, Wang Xiangxi

The p15 protein is a promising immunogen for developing protective immunity against African swine fever virus

p15蛋白是一种很有前景的免疫原,可用于诱导针对非洲猪瘟病毒的保护性免疫。

Yu, Qi; Fu, Wangjun; Zhang, Zhenjiang; Liang, Dening; Wang, Lulu; Zhu, Yuanmao; Sun, Encheng; Li, Fang; Bu, Zhigao; Chen, Yutao; Wang, Xiangxi; Zhao, Dongming

Structural basis for broad neutralization of rabies virus by an antibody cocktail SYN023

抗体混合物 SYN023 对狂犬病毒进行广泛中和的结构基础

Cao, Lei; Qu, Jiagui; Zhang, Chuziyue; Chen, Ruihong; Wang, Jinyue; Fehlner-Gardiner, Christine; Niezgoda, Michael; Satheshkumar, Panayampalli Subbian; Wang, Xiangxi; Tsao, Eric

Establishing a universal IVRP method for quadrivalent HPV vaccines to replace in vivo potency tests.

建立四价HPV疫苗通用IVRP方法以取代体内效力试验

Hu Jinpan, Jia Zijing, Wang Meng, Nie Lingling, Fu Wangjun, Zhang Qingfeng, Qin Haiyang, Nie Jianhui, Xu Xiaoyu, Xu Lingjie, Wang Fengze, Chen Yingping, Xing Bo, Li Tao, Li Danfeng, Li Shaowei, Xia Ningshao, Wang Xiangxi, Huang Weijin

Enhancing RBD exposure and S1 shedding by an extremely conserved SARS-CoV-2 NTD epitope

通过高度保守的SARS-CoV-2 NTD表位增强RBD暴露和S1脱落

Zhu, Qianhui; Liu, Pan; Liu, Shuo; Yue, Can; Wang, Xiangxi

Deletion of V483 in the spike confers evolutionary advantage on SARS-CoV-2 for human adaptation and host-range expansion after a prolonged pandemic

SARS-CoV-2刺突蛋白V483的缺失赋予其进化优势,使其在长期大流行后能够更好地适应人类并扩大宿主范围。

Yue, Can; Liu, Shuo; Meng, Bo; Fan, Kaiyue; Yang, Sijie; Liu, Pan; Zhu, Qianhui; Mao, Xin; Yu, Yuanling; Shao, Fei; Wang, Peng; Wang, Youchun; Gupta, Ravindra Kumar; Cao, Yunlong; Wang, Xiangxi

Spike N354 glycosylation augments SARS-CoV-2 fitness for human adaptation through structural plasticity

刺突蛋白N354糖基化通过结构可塑性增强SARS-CoV-2对人类的适应性

Liu, Pan; Yue, Can; Meng, Bo; Xiao, Tianhe; Yang, Sijie; Liu, Shuo; Jian, Fanchong; Zhu, Qianhui; Yu, Yuanling; Ren, Yanyan; Wang, Peng; Li, Yixin; Wang, Jinyue; Mao, Xin; Shao, Fei; Wang, Youchun; Gupta, Ravindra Kumar; Cao, Yunlong; Wang, Xiangxi

An improved method for the detection of double-stranded RNA suitable for quality control of mRNA vaccines

一种改进的双链RNA检测方法,适用于mRNA疫苗的质量控制

Liu, Jingjing; Zheng, Tao; Xu, Lingjie; Chen, Zhicai; Zhang, Kunkun; Wang, Xiangxi; Xu, Xiaoyu; Li, Yuhua; Sun, Yao; Zhu, Ling