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

Mining antibody functionality via AI-guided structural landscape profiling

利用人工智能引导的结构景观分析挖掘抗体功能

Terekhov, Stanislav S; Ivanisenko, Nikita V; Zhang, Nan; Mokrushina, Yuliana A; Nolde, Dmitry E; Lomakin, Yakov A; Zalevsky, Arthur; Ovchinnikova, Leyla A; Malabuiok, Diana M; Baranova, Margarita N; Shashkova, Tatiana; Aliper, Elena; Zhang, Mingxiu; Guo, Kun; Duga, Sergey; Akhmetyanov, Nikolay; Mamontov, Stepan; Smirnova, Anastasia O; Mamedov, Ilgar; Bobik, Tatiana V; Kostin, Nikita N; Chernov, Aleksandr S; Eliseev, Igor E; Yaroshevich, Igor; Boitsov, Vitali M; Stepanov, Alexey V; Zhang, Ding; Efremov, Roman G; Smirnov, Ivan V; Kardymon, Olga; Zhang, Hongkai; Guo, Yu; Lerner, Richard; Gabibov, Alexander G; Kornberg, Roger D

Targeting the pMHC–TCR Interaction: Molecular Strategies and Therapeutic Potential in Autoimmunity

靶向pMHC-TCR相互作用:自身免疫的分子策略和治疗潜力

Liu, Yanqin; Zhao, Jiliang; Yang, Kailu; Ma, Qiongqiong; Zhang, Dongping; Xu, Lili; Zhang, Zhaoyuan; Yin, Zhongqian; Chen, Jingru; Wang, Yi; Wang, Han; Zhou, Feilong; Han, Minghui; Wang, Jie; Li, Fan; Xu, Yanqin; Yang, Yi; Wang, Wei; Huggett, Spencer; Chung, Alexander; Gan, Jinping; Zhang, Bo; Zhou, Ziying; Cao, Youjia; Ding, Dan; Wang, Meiyun; Zhang, Hongkai; Nechaeva, Alina M; Mamedov, Azad E; Ovchinnikova, Leyla A; Zakharova, Mariya Y

HFB301001, an OX40-based immunotherapy, drives Treg clearance and CTL activation through optimized OX40 receptor clustering.

HFB301001 是一种基于 OX40 的免疫疗法,通过优化 OX40 受体聚集来驱动 Treg 清除和 CTL 活化。

Zhao Jiliang, Zhang Dongping, Lu Yun-Yueh, Jin Ruina, Li Fan, Zhang Zhaoyuan, Ni Wentao, Gong Nanxin, Wang Yi, Yin Zhongqian, Du Yazhuo, Ma Wenxuan, Wang Xiaoqian, Zu Lingling, Liu Shiyu, Yang Kailu, Bai Yiyang, Gan Jinping, Adrian Francisco, Hong Zhangyong, Zhang Sihe, Chang Yunsong, Wang Zhenyu, Jin Xin, Zhong Jianguo, Ge Kunkun, Peng Sibo, Ding Dan, Zheng Wei, Xu Song, Wang Wei, Schweizer Liang, Zhang Hongkai

Multi-agent coordination and uncertainty adaptation in deep learning-assisted hierarchical optimization for renewable-dominated distribution networks

面向可再生能源主导型配电网络的深度学习辅助分层优化中的多智能体协调和不确定性适应

Zheng, Yongle; Li, Huixuan; Wang, Shiqian; Tan, Zhongfu; Jiang, Xiaoliang; Li, Peng; Jiang, Yijun; Zhang, Hongkai

CT angiography features of organ malperfusion and imaging biomarker for postoperative adverse complications in acute type A aortic dissection

CT血管造影在急性A型主动脉夹层中器官灌注不良特征及术后不良并发症影像学生物标志物的应用

Zhong, Xiaohan; Liu, Zhou; Dai, Lu; Zhao, Shuanglei; Zhang, Hongkai; Liang, Jiajun; Lou, Yeting; Ren, Yue; Wang, Meili; Liu, Yuyong; Zhang, Hongjia; Jiang, Wenjian

Updated data of CLL1 CAR-T cell therapy in adult patients with relapsed/refractory acute myeloid leukemia

CLL1 CAR-T细胞疗法治疗复发/难治性急性髓系白血病成人患者的最新数据

Zhang, Xiaomei; Lu, Wenyi; Zhang, Wenjun; He, Xiaoyuan; Zhang, Yu; Jin, Xin; Zhang, Meng; Wang, Yingshuai; Guan, Xuwen; Zhang, Rui; Wang, Bing; Lyu, Hairong; Xiao, Xia; Bai, Xue; Pu, Yedi; Meng, Juanxia; Zhu, Haibo; Wang, Zhao; Zhang, Huan; Lyu, Cuicui; Zhang, Hongkai; Liang, Aibin; Zhao, Mingfeng

Reducing the V(oc) Loss of Hole Transport Layer-Free Carbon-Based Perovskite Solar Cells via Dual Interfacial Passivation

通过双界面钝化降低无空穴传输层碳基钙钛矿太阳能电池的开路电压损失

Zhang, Xian; Liu, Fangzhou; Guan, Yan; Zou, Yu; Wu, Cuncun; Shi, Dongchang; Zhang, Hongkai; Yu, Wenjin; Zou, Dechun; Zhang, Yangyang; Xiao, Lixin; Zheng, Shijian

The crystal structure of coronavirus RBD-TMPRSS2 complex provides basis for the discovery of therapeutic antibodies

冠状病毒RBD-TMPRSS2复合物的晶体结构为发现治疗性抗体提供了基础

Zhao, Zhuoqian; Yang, Qi; Liu, Xiaoce; Li, Mengfei; Duan, Yinkai; Du, Mingjuan; Zhou, Anqi; Liu, Huanzhen; He, Yujia; Wang, Wei; Lu, Yuchi; Zhang, Xiaoyu; Wang, Haofeng; Yang, Xiuna; Zhang, Hongkai; Chen, Xinwen; Rao, Zihe; Yang, Haitao

Direct Observation of Substantial Phonon Nonequilibrium Near Nanoscale Hotspots in Gallium Nitride

直接观测氮化镓纳米尺度热点附近显著的声子非平衡

Xu, Jiaxuan; Huang, Xiaona; Sheng, Yufei; Sun, Qiangsheng; Zhang, Hongkai; Bao, Hua; Yue, Yanan

Single-cell data-driven design of armed oncolytic virus to boost cooperative innate-adaptive immunity against cancer

基于单细胞数据驱动的武装溶瘤病毒设计,以增强抗癌的先天性和适应性协同免疫。

Jiliang Zhao ,Han Wang ,Chunlei Wang ,Fan Li ,Jingru Chen ,Feilong Zhou ,Yiping Zhu ,Jinhua Chen ,Jinming Liu ,Hao Zheng ,Nanxin Gong ,Yazhuo Du ,Yufan Zhang ,Li Deng ,Yuyao Du ,Yanqin Liu ,Yuanke Li ,Na Li ,Hongru Zhang ,Dan Ding ,Shouzhi Yu ,Cuizhu Zhang ,Yingbin Yan ,Wei Wang ,Youjia Cao ,Yuntao Zhang ,Hongkai Zhang