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

The mRNA-Based Innovative Strategy: Progress and Challenges

基于mRNA的创新战略:进展与挑战

Zhou, Huayuan; Wei, Dali; Chen, Zhejie; Chen, Hao; Dong, Chuhuang; Yao, Wei; Wang, Jiawen; Liu, Xueliang; Li, Yuqing; Yang, Yu; Tan, Weihong

Continuously tunable multistability in DNA replication networks

DNA复制网络中连续可调的多稳态

Zhong, Rui; Fu, Yanjie; Jiang, Shubao; Wang, Shan; Yue, Liang; Tan, Weihong

Cisplatin Promotes Immunosuppression in Ovarian Cancer by Enhancing miR-181a-5p-Enriched Extracellular Vesicles to Drive Regulatory T Cell Differentiation

顺铂通过增强富含 miR-181a-5p 的细胞外囊泡来促进卵巢癌的免疫抑制,从而驱动调节性 T 细胞分化

Zheng, Liyan; Mu, Sijia; Liu, Mingxue; Lei, Panmin; Zhang, Jingchen; Dai, Yuting; He, Chenxi; Qu, Fengli; Tan, Weihong

Evolution of Multivalent Aptamer Corona for High-Throughput Multiplexed Detection of Multiple Cancers

用于高通量多重检测多种癌症的多价适体冠的演化

Wang, Mengjie; Jin, Baichuan; Dai, Xin; Huang, Haozhe; Liu, Qiqi; Zhu, Jianqing; Ju, Haixing; Chen, Qixun; Song, Yongmei; Tan, Weihong; Liu, Yuan

A Membrane-Retained DNA Aptamer Promotes Intracellular Platinum Accumulation and Chemosensitization in Ovarian Cancer

膜滞留DNA适体促进卵巢癌细胞内铂类药物的积累和化疗增敏

Dong, Wei; Xie, Wanlin; Song, Kun; Yuan, Qunying; Xi, Peiyu; Fan, Haoqun; Ma, Lele; Sun, Weidi; Zhang, Hui; Tan, Weihong

Navigating the next frontier in biomedicine: breakthroughs and insights in nucleic acid therapeutics

探索生物医学的下一个前沿领域:核酸疗法的突破与见解

Wu, Shanchao; Zhang, Zhihui; Zhao, Zilong; Cui, Cheng; Tan, Weihong

An aptamer-drug conjugate for promising cancer therapy with comprehensive evaluation from rodents to non-human primates.

一种用于癌症治疗的适体-药物偶联物,已从啮齿动物到非人灵长类动物进行了全面评估

Su Minhui, Liu Yuan, Lin Hongxin, Wang Xiaoxing, Ying Danxia, Zhang Lizhuan, Yang Cai, Jiang Mengyuan, Xu Lujuan, Wang Xie, Sun Yang, Xu Haiyan, Zhang Ziwen, Wang Xiaojia, Fu Ting, Xie Sitao, He Jiaxuan, Liu Xiangsheng, Tan Weihong

An (e)pH-driven DNA nanodevice for impeding metastasis in vivo by selectively blocking cell signaling

一种通过选择性阻断细胞信号传导来抑制体内转移的(e)pH驱动型DNA纳米装置

Yuan, Kun; Meng, Hong-Min; Sun, Hongzhi; Qu, Lingbo; Li, Zhaohui; Tan, Weihong

33 Unresolved Questions in Nanoscience and Nanotechnology

纳米科学与纳米技术领域33个尚未解决的问题

Mirkin, Chad A; Petrosko, Sarah Hurst; Artzi, Natalie; Aydin, Koray; Biaggne, Austin; Brinker, C Jeffrey; Bujold, Katherine E; Cao, Y Charles; Chan, Rachel R; Chen, Chaojian; Chen, Peng-Cheng; Chen, Xiaodong; Chevalier, Olivier J G L; Choi, Chung Hang Jonathan; Crooks, Richard M; Dravid, Vinayak P; Du, Jingshan S; Ebrahimi, Sasha B; Fan, Hongyou; Farha, Omar K; Figg, C Adrian; Fink, Tanner D; Forsyth, Connor M; Fuchs, Harald; Geiger, Franz M; Gianneschi, Nathan C; Gibson, Kyle J; Ginger, David S; Guo, SiShi; Hanes, Justin S; Hao, Liangliang; Huang, Jin; Hunter, Bryan M; Huo, Fengwei; Hwang, Jeongmin; Jin, Rongchao; Kelley, Shana O; Kempa, Thomas J; Kim, Youngeun; Kudruk, Sergej; Kumari, Sneha; Landy, Kaitlin M; Lee, Ki-Bum; Leon, Noel J; Li, Jun; Li, Yuanwei; Li, Zhiwei; Liu, Bin; Liu, Guoliang; Liu, Xiaogang; Liz-Marzán, Luis M; Lorch, Jochen H; Luo, Taokun; Macfarlane, Robert J; Millstone, Jill E; Mrksich, Milan; Murphy, Catherine J; Naik, Rajesh R; Nel, Andre E; Oetheimer, Christopher; Hedlund Orbeck, Jenny K; Park, So-Jung; Partridge, Benjamin E; Peppas, Nicholas A; Personick, Michelle L; Raj, Arindam; Ramani, Namrata; Ross, Michael B; Ross, Stacey Barnaby; Sargent, Edward H; Sengupta, Tanushri; Schatz, George C; Seferos, Dwight S; Seideman, Tamar; Seo, Soyoung Eileen; Shen, Bo; Shim, Wooyoung; Shin, Donghoon; Simon, Ulrich; Sinegra, Andrew J; Smith, Peter T; Spokoyny, Alexander M; Stang, Peter J; Stegh, Alexander H; Stoddart, J Fraser; Swearer, Dayne F; Tan, Weihong; Teplensky, Michelle H; Thaxton, C Shad; Walt, David R; Wang, Mary X; Wang, Zhe; Wei, Wei David; Weiss, Paul S; Winegar, Peter H; Xia, Younan; Xie, Yi; Xu, Xiaoyang; Yang, Peidong; Yang, Yiming; Ye, Zihao; Yoon, Kuk Ro; Zhang, Cuizheng; Zhang, Hua; Zhang, Ke; Zhang, Liangfang; Zhang, Xiaoyu; Zhang, Ye; Zheng, Zijian; Zhou, Wenjie; Zhu, Shengshuang; Zhu, Wei

Author Correction: Osteoclast-derived exosomal miR-214-3p inhibits osteoblastic bone formation

作者更正:破骨细胞来源的外泌体 miR-214-3p 抑制成骨细胞的骨形成

Li, Defang; Liu, Jin; Guo, Baosheng; Liang, Chao; Dang, Lei; Lu, Cheng; He, Xiaojuan; Cheung, Hilda Yeuk-Siu; Xu, Liang; Lu, Changwei; He, Bing; Liu, Biao; Shaikh, Atik Badshah; Li, Fangfei; Wang, Luyao; Yang, Zhijun; Au, Doris Wai-Ting; Peng, Songlin; Zhang, Zongkang; Zhang, Bao-Ting; Pan, Xiaohua; Qian, Airong; Shang, Peng; Xiao, Lianbo; Jiang, Baohong; Wong, Chris Kong-Chu; Xu, Jiake; Bian, Zhaoxiang; Liang, Zicai; Guo, De-An; Zhu, Hailong; Tan, Weihong; Lu, Aiping; Zhang, Ge