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

mTOR-driven integrin β4-enriched extracellular vesicles from lenvatinib-resistant hepatocellular carcinoma fuel lung metastasis via fibroblast-niche formation

来自耐乐伐替尼肝细胞癌的mTOR驱动的富含整合素β4的细胞外囊泡通过成纤维细胞微环境的形成促进肺转移。

Zou, Tiantian; Wang, Xufeng; Sun, Haoting; Hu, Beiyuan; Li, Jianhua; Guo, Yu; Tian, Zilu; Xu, Hao; Zheng, Yan; Su, Yinghan; Chan, Chak Lam; Zhu, Le; Shen, Keyu; Shen, Xiaotian; Dong, Qiongzhu; Qin, Lun-Xiu

Self-Sensing NiFe@N-doped Carbon Aerogel: Integrating Excellent Radar Stealth, Inherent Structural Health Monitoring, Thermal Management, and Flame Retardancy

自感知NiFe@N掺杂碳气凝胶:集成优异的雷达隐身性能、固有结构健康监测、热管理和阻燃性能

Du, Xiaosen; Zhou, Jianhua; Yu, Jiarui; Nie, Xiaoyan; Luo, Mingyu; He, Xingyuan; Xiao, Anguo

Rezivertinib in EGFR-Mutated Non-Small Cell Lung Cancer Patients with Central Nervous System Metastasis: Central Nervous System Efficacy from the Phase III REZOR Study

瑞维替尼治疗伴有中枢神经系统转移的EGFR突变型非小细胞肺癌患者:来自III期REZOR研究的中枢神经系统疗效

Yang, Sheng; Zhao, Yanqiu; Sun, Meili; Bi, Minghong; Zhu, Bo; Chen, Zhaohong; Yu, Huiqing; Zhang, Liangming; Wu, Lin; Zhou, Rui; Yao, Wenxiu; Li, Xingya; Han, Zhigang; Wang, Ke; Wang, Lijun; Wen, Meiling; Guo, Yanzhen; Lin, Yingcheng; Sun, Shenghua; Guo, Shuliang; Yi, Tienan; Zhao, Wenhua; Yu, Zhuang; Qin, Jianwen; Pan, Yueyin; He, Zhiyong; Ye, Feng; Shi, Huaqiu; Fang, Jian; Ma, Rui; Lu, Hong; Zhang, Hua; Shi, Jianhua; Gao, Jinghua; Cui, Jiuwei; Li, Manxiang; Yi, Shanyong; Cang, Shundong; Shu, Yongqian; Zhang, Don; Peng, Jirong; Gao, Feng; Wang, Tingting; Zhou, Anqi; Shi, Yuankai

Advancements in dual-targeting nanoparticle strategies for enhanced atherosclerosis therapy: Overcoming limitations of single-targeting approaches

双靶向纳米颗粒策略在增强动脉粥样硬化治疗中的应用进展:克服单靶向方法的局限性

Yang, Can; Mo, Liqing; Zhang, Guizhi; Dai, Yingxuan; Li, Binxiang; Tan, Zihan; Guo, Yujie; Lu, Shan; Hong, Yi; He, Hongliang; Yang, Hu; He, Jianhua

Evolutionary convergence and divergence of hippocampal cytoarchitecture between rodents and primates revealed by single-cell spatial transcriptomics

单细胞空间转录组学揭示啮齿动物和灵长类动物海马细胞结构的趋同与分化

Fei, Tianyi; Dong, Yu; Gou, Xiaojuan; Zhang, Jiahao; Wang, Guangling; Yuan, Nini; Zhuang, Zhenkun; Chen, Duoyuan; Wu, Zihan; Zhan, Lijie; Liang, Ning; Mitsios, Nicholas; Pan, Jingfang; Zhan, Yafeng; Cao, Mengdi; Xia, Ying; Yan, Haotian; Zhu, Xiaojia; Huang, Yuzhe; Chen, Shishuo; Yang, Hao; Gu, Liqin; Wang, He; Zhong, Yanqing; Yu, Qian; An, Yingjie; Wang, Ruiqi; Li, Shenyu; Song, Jingjing; Zhou, Wanqiu; Zhang, Shuzhen; Ren, Biyu; Lu, Yanbing; Ding, Wenqun; Li, Shuting; Cao, Huateng; Lin, Junkai; Dou, Yannong; Jiang, Xuyin; Xie, Chun; Li, Yan; Tan, Xing; Xu, Yuanfang; Song, Xinxiang; Li, Huanhuan; Chen, Mengni; Wang, Shiwen; Zheng, Mingyuan; Fang, Jiao; Zhang, Ruiyi; Chai, Qinwen; Wang, Mingli; Li, Li; Gao, Taosha; Qian, Liuqin; Jin, Chenxi; Huang, Jiawen; Deng, Wei; Li, Minghai; Li, Chao; Liu, Zhiyong; Liang, Zhifeng; Xu, Shengjin; Uhlén, Mathias; Poo, Mu-Ming; Yao, Jianhua; Liu, Shiping; Liu, Cirong; Shen, Zhiming; Sun, Yan-Gang; Li, Chengyu T; Mulder, Jan; Cao, Gang; Sun, Yidi; Xu, Chun

Human type-1 innate lymphoid cells control leukemia stem cell differentiation and limit acute myeloid leukemia development

人类1型固有淋巴细胞控制白血病干细胞分化并限制急性髓系白血病的发展。

Li, Zhenlong; Ma, Rui; Tang, Hejun; Liu, Ningyuan; Zhang, Jianying; Marcucci, Guido; Caligiuri, Michael A; Yu, Jianhua

Molecular fence Cu-based catalyst for CO(2) hydrogenation to CO with high activity and durability

一种高活性和耐久性的分子栅栏铜基催化剂,用于CO₂加氢制CO。

Su, Weige; Jia, Xuehui; Deng, Xintan; Fan, Xu; Shah, Syed Jalil; Li, Changhao; Zeng, Jiajun; Lou, Yilin; Chen, Jianhua; Zhao, Zhongxing; Zhao, Zhenxia

Micro-LED/van der Waals heterointegration for in-pixel processing display architecture

用于像素内处理显示架构的微型LED/范德华异质集成

Wang, Fei; Wu, Yuchun; Chu, Hongling; Yang, Jingbo; Liu, Zhaorui; Liu, Siqi; Yang, Zhu; Li, Enlong; Liu, Jingjing; Yin, Luqiao; Li, Mengjiao; Zhang, Jianhua

Methanoperedenaceae archaea: a 20-year research journey

甲烷氧化菌科古菌:20年的研究历程

Liu, Tao; Zhang, Xueqin; Hu, Shihu; Yuan, Zhiguo; Guo, Jianhua

Engineered VPg saRNA achieves cap-independent, low-immunogenic and precise encoding of therapeutic proteins in vivo

工程化VPg saRNA实现了体内治疗性蛋白的非依赖性、低免疫原性和精确编码。

Feng, Zunyong; Chu, Liuxi; Li, Qiang; Zhou, Jing; Wu, Ping; Zhang, Xuanbo; Pan, Yuanbo; Zou, Jianhua; Chen, Qun; Xu, Zhiliang; Yan, Liang; Huang, Yanjiao; Li, Xiaokun; Wang, Zhouguang; Chen, Xiaoyuan