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

MALDI Matrix: Origins, Innovations, and Frontiers

MALDI矩阵:起源、创新与前沿

Wu, Ran; Liu, Rui; Hu, Hao; Qin, Liang; Chen, Lulu; Bao, Zhibin; Fu, Jinxiang; Guo, Hua; Wang, Lei; Wang, Anna; Wang, Zihan; Yang, Chenyu; Cheng, Xiangrui; Chen, Difan; Liu, Haiqiang; Jing, Yanping; Guo, Shuai; Fu, Yujie; Wang, Xiaodong

Adenosine signalling drives antidepressant actions of ketamine and ECT.

腺苷信号传导驱动氯胺酮和电休克疗法的抗抑郁作用。

Yue Chenyu, Wang Na, Zhai Haojiang, Yuan Zhengwei, Cui Yuting, Quan Jing, Zhou Yu, Fan Xiaofeng, Wang Hongshuang, Wu Zhaofa, Mi Huijie, Ge Wooping, Li Yulong, Wang Xiaohui, Luo Minmin

GRSF1 Protects Against Heart Failure by Maintaining BCAA Homeostasis

GRSF1通过维持BCAA稳态来预防心力衰竭

Wang, Hu; Wang, Jiaxing; Zhu, Min; Jin, Ling; Cui, Hao; Liu, Cihang; Fan, Chenyu; Li, Hui; Yang, Jichun; Cui, Ming; Song, Jiangping; Wang, Wengong; Xu, Ming

Amorphous phase-change memory alloy with no resistance drift

无电阻漂移的非晶相变存储合金

Wang, Xiaozhe; Wang, Ruobing; Sun, Suyang; Xu, Ding; Nie, Chao; Zhou, Zhou; Wen, Chenyu; Zhang, Junying; Chu, Ruixuan; Shen, Xueyang; Zhou, Wen; Song, Zhitang; Wang, Jiang-Jing; Ma, En; Zhang, Wei

Single-Atom Ru in CoFe-LDH Drives Efficient Charge Separation on BiVO(4) for Solar Water Splitting

CoFe-LDH中的单原子Ru驱动BiVO(4)上高效的电荷分离,用于太阳能分解水

Deng, Wenhui; He, Gaoshuang; Zhou, Haozhi; He, Wenhao; Gan, Lei; Zhang, Chenyu; Wang, Keke; Qiu, Xiaoqing; Liu, Yang; Li, Wenzhang

Electrically Tunable Friction: From Sticky to Slippery with Ionic Hydrogels

电可调摩擦力:离子水凝胶实现从粘性到滑性的转变

Liu, Chenxu; Yao, Yuan; Wang, Yuanyuan; Zhou, Qi; Zhao, Ziqian; Qiao, Chenyu; Sun, Yongxiang; Meng, Yonggang; Tian, Yu; Zeng, Hongbo

Designed bone-targeting ROS-responsive nanoplatform for precision glycolysis inhibition in postmenopausal osteoporosis

为绝经后骨质疏松症设计了一种靶向骨骼的ROS响应纳米平台,用于精准抑制糖酵解。

Wu, Qihang; Miao, Jiansen; Chen, Yu; Yang, Yayun; Liang, Haibo; Yu, Chenxin; Wang, Chenyu; Tu, Yiting; Wu, Yinuo; Xu, Yining; Yang, Xiao; Kwan, Kenny Yat Hong; Shi, Changcan; Wang, Xiangyang; Xu, Jiake; Jin, Haiming

Corrigendum to "Engineering aortic valves via transdifferentiating fibroblasts into valvular endothelial cells without using viruses or iPS cells" [Bioact. Mater. 45 (2025), 181-200]

对“通过将成纤维细胞转分化为瓣膜内皮细胞来构建主动脉瓣膜,而无需使用病毒或iPS细胞”的更正[Bioact. Mater. 45 (2025), 181-200]

Tang, Peng; Wei, Fuxiang; Qiao, Weihua; Chen, Xing; Ji, Chenyang; Yang, Wanzhi; Zhang, Xinyu; Chen, Sihan; Wu, Yanyan; Jiang, Mingxing; Ma, Chenyu; Shen, Weiqiang; Dong, Qi; Cao, Hong; Xie, Minghui; Cai, Ziwen; Xu, Li; Shi, Jiawei; Dong, Nianguo; Chen, Junwei; Wang, Ning

Spermidine reduces peri-implant inflammation and fibrosis to nurture osseointegration

亚精胺可减轻种植体周围的炎症和纤维化,从而促进骨整合。

Liu, Qiming; Wu, Qianqian; Cao, Tingting; Miao, Rundong; Wang, Chenyu; Zhang, Jiawei; Gao, Xue; Wang, Li; Shi, Guoxin; Lai, Jinyu; Yang, Runjiao; Piao, Xianshu; Yu, Jiaao; Wang, Jincheng; Liang, Song; Kou, Shuqing; Roberts, Thomas M; Wang, Bingdi; Liu, Zhenning

Construction of biomimetic gradient-structured cartilage organoids and mechanistic study of their application for cartilage rejuvenation

构建仿生梯度结构软骨类器官及其在软骨再生中的应用机制研究

Miao, Xiangwan; Kong, Keyu; Rong, Kewei; Song, Qianqian; Guo, Tingxian; Zhang, Chenyu; Wu, Qiang; Zhai, Zanjing; Sun, Ye; Gan, Yaokai; Xiang, Mingliang; Dai, Kerong; Atala, Anthony; Lu, Zuyan