First Inistitute
[1]Yu, Fan; Zhang, Qianping; Liu, Hanyu; Liu, Jinming; Yang, Song; Luo, Xiaofan; Liu, Wei; Zheng, Hao; Liu, Qiqi; Cui, Yunxi;Chen, Guo; Li, Yanjun;Huang, Xinglu; Yan, Xiyun;Zhou, Jun;Chen, Quan. Dynamic O-GlcNAcylation coordinates ferritinophagy and mitophagy to activate ferroptosis.Cell Discovery, 2022,8(1):40. (IF=38.09)
[2]Liu, Jinjin; Wang, Zhifang; Cheng, Peng; Zaworotko, Michael J. ;Chen, Yao;Zhang, Zhenjie. Post-synthetic modifications of metal-organic cages.Nature Reviews Chemistry, 2022,6(5):339-356. (IF=34.571)
[3]Wang, Kai; Gao, Heqi; Zhang, Yuwen; Yan, Hongyu; Si, Jianghua; Mi, Xingyan; Xia, Shuang; Feng, Xuequan;Liu, Dingbin;Kong, Deling; Wang, Ting;Ding,Dan. Highly Bright AIE Nanoparticles by Regulating the Substituent of Rhodanine for Precise Early Detection of Atherosclerosis and DrugScreening.Advanced Materials, 2022,34(9):2106994. (IF=32.086)
[4]Qi, Ji; Jia, Shaorui; Kang, Xiaoying; Wu, Xinying; Hong, Yuning; Shan, Ke; Kong, Xianglong; Wang, Zhiming;Ding, Dan. Semiconducting Polymer Nanoparticles with Surface-Mimicking Protein Secondary Structure as Lysosome-Targeting Chimaeras for Self-Synergistic Cancer Immunotherapy.Advanced Materials, 2022,34(31):2203309. (IF=32.086)
[5]Wei, Yonghua; Wu, Jin; Wu, Yixuan; Liu, Hongjiang; Meng, Fanqiang; Liu,Qiqi; Midgley, Adam C. ; Zhang, Xiangyun; Qi, Tianyi; Kang, Helong; Chen, Rui;Kong, Deling; Zhuang, Jie; Yan, Xiyun;Huang, Xinglu. Predictionand Design of Nanozymes using Explainable Machine Learning.Advanced Materials, 2022,34(27):2201736. (IF=32.086)
[6]Li, Yinan; Zhang, Heng; Chen, Caihong; Qiao, Kailiang; Li, Zhiyang; Han,Jingxia; Han, Xu; Li, Kun; Lai, Keguan;Liu, Ning;Li, Ang;Xiao, Nannan;Zhang, Yan;Zhao, Xiangshuai; Gao, Wenqing; Zhang, Yang; Liu, Huijuan;Sun, Tao. Biomimetic Immunosuppressive Exosomes that Inhibit Cytokine Storms Contribute to the Alleviation of Sepsis.Advanced Materials, 2022,34(19):2108476. (IF=32.086)
[7]Zhao, Yu; Hou, Xiaoxue; Chai, Jingshan; Zhang, Zhanzhan;Xue, Xue; Huang, Fan; Liu, Jianfeng;Shi, Linqi;Liu, Yang. Stapled Liposomes Enhance Cross-Priming of Radio-Immunotherapy.Advanced Materials, 2022,34(3):2107161. (IF=32.086)
[8]Zhang, Xiangyun; Zhang, Yue; Zhang, Ran; Jiang, Xinbang; Midgley, Adam C. ; Liu, Qiqi; Kang, Helong; Wu, Jin; Khalique, Anila; Qian, Meng; An, Di; Huang, Jing; Ou, Lailiang;Zhao, Qiang; Zhuang, Jie; Yan, Xiyun;Kong, Deling;Huang, Xinglu. Biomimetic Design of Artificial Hybrid Nanocells for Boosted Vascular Regeneration in Ischemic Tissues.Advanced Materials, 2022,34(14):2110352. (IF=32.086)
[9]He, Wenqian; Qian, Dong; Wang, Yang; Zhang, Guanghao; Cheng, Yao; Hu, Xiaoyu; Wen, Kai; Wang, Meilin;Liu, Zunfeng; Zhou, Xiang;Zhu, Meifang. A Protein-Like Nanogel for Spinning Hierarchically Structured Artificial Spider Silk.Advanced Materials, 2022,34(27):2201843. (IF=32.086)
[10]Wang, Heping; Chen, Xi; Qi, Yilin; Wang, Chunxiao; Huang, Liwen; Wang,Ran; Li, Jiamin; Xu, Xihan; Zhou, Yutong;Liu, Yang;Xue, Xue. Self-Propelled Nanomotors with an Alloyed Engine for Emergency Rescue of Traumatic Brain Injury.Advanced Materials, 2022,34(49):e2206779. (IF=32.086)
[11]Tian, Shuang; van der Mei, Henny C. ; Ren, Yijin; Busscher, Henk J. ;Shi, Linqi. Co-Delivery of an Amyloid-Disassembling Polyphenol Cross-Linked in a Micellar Shell with Core-Loaded Antibiotics for Balanced Biofilm Dispersal and Killing. Advanced Functional Materials, 2022,32(51):2209185. (IF=19.924)
[12]Bi, Jinfang; Wang, Wenbin; Zhang, Meng; Zhang, Baoying; Liu, Man; Su, Guangsong; Chen, Fuquan; Chen, Bohan; Shi, Tengfei; Zheng, Yaoqiang; Zhao, Xueyuan; Zhao, Zhongfang; Shi, Jiandang; Li, Peng; Zhang, Lei;Lu, Wange. KLF4 inhibits early neural differentiation of ESCs by coordinating specific 3D chromatin structure.Nucleic Acids Research, 2022,50(21):12235-12250. (IF=19.16)
[13]Huang, Liwen; Zhang, Xiao; Ding, Zhaowen; Qi, Yilin; Wang, Wenjing; Xu, Xihan; Yue, Hua; Bai, Lihuan; Wang, Heping; Feng, Leyan; Ren, Jing;Yang, Xue; Ma, Guanghui; Wei, Wei;Xue, Xue. PEGylated 2D-nanomaterials alleviate Parkinson's disease by shielding PIP2 lipids to inhibit IP3 second messenger signaling.Nano Today, 2022,46:101556. (IF=18.962)
[14]Xu, Linlin; Ding, Yuxun; Ma, Feihe;Chen, Yue; Chen, Guidong; Zhu, Lin;Long, Jiafu; Ma, Rujiang;Liu, Yang; Liu, Jianfeng; Huang, Fan;Shi, Linqi. Engineering a pathological tau-targeted nanochaperone for selective and synergetic inhibition of tau pathology in Alzheimer's Disease.Nano Today,2022,43:101388. (IF=18.962)
[15]Yu, Xiunan; Wang, Hao; Liu, Xin; Huang, Le; Song, Na; Song, Yanqiu; Mo, Xiaowei; Lou, Shaofeng;Shi, Linqi; Yu, Zhilin. Assembling synergistic peptide-drug conjugates for dual-targeted treatment of cancer metastasis. NANO TODAY,2022,46:101594. (IF=18.962)
[16]Li, Sitong; Zhang, Rui; Zhang, Guanghao; Shuai, Luyizheng; Chang, WangHu, Xiaoyu; Zou, Min; Zhou, Xiang; An, Baigang; Qian, Dong;Liu, Zunfeng. Microfluidic manipulation by spiral hollow-fibre actuators.Nature Communications,2022,13(1):1331. (IF=17.694)
[17]Cheng, Yanli; Shen, Zhongtian; Gao, Yaqi; Chen, Feilong; Xu, Huisha; Mo,Qinling; Chu, Xinlei; Peng, Chang-liang; McKenzie, Takese T. ; Palacios, Bridgitte E. ; Hu, Jian; Zhou, Hao;Long, Jiafu. Phase transition and remodeling complex assembly are important for SS18-SSX oncogenic activity insynovial sarcomas.Nature Communications,2022,13(1):2724. (IF=17.694)
[18]Hao, Tian; Qian, Meng; Zhang, Yating; Liu, Qi; Midgley, Adam C. ; Liu, Yangping; Che, Yongzhe; Hou, Jingli;Zhao, Qiang. An Injectable Dual-Function Hydrogel Protects Against Myocardial Ischemia/Reperfusion Injury by Modulating ROS/NO Disequilibrium.Advanced Science,2022,9(15):2105408. (IF=17.521)
[19]Li, Jiatian; Li, Sitong; Huang, Jiayi; Khan, Abdul Qadeer; An, Baigang; Zhou, Xiang;Liu, Zunfeng;Zhu, Meifang. Spider Silk-Inspired Artificial Fibers.Advanced Science,2022,9(5):2103965. (IF=17.521)
[20]Li, Yuanfeng; Su, Linzhu; Zhang, Yongxin; Liu, Yong; Huang, Fan; Ren, Yijin; An, Yingli;Shi, Linqi; van der Mei, Henny C.; Busscher, Henk J.. A Guanosine-Quadruplex Hydrogel as Cascade Reaction Container Consuming Endogenous Glucose for Infected Wound Treatment-A Study in DiabeticMice.Advanced Science,2022,9(7):2103485.(IF=17.521)
[21]Jing, Zhe; Wang, Shuqing; Xu, Keyuan; Tang, Qian; Li, Wenjing; Zheng, Wei; Shi, Haobo; Su, Kailing; Liu, Yanting;Hong, Zhangyong. A Potent Micron Neoantigen Tumor Vaccine GP-Neoantigen Induces Robust Antitumor Activity in Multiple Tumor Models.Advanced Science,2022,9(24):2201496. (IF=17.521)
[22]Fu, Haohao; Chen, Haochuan; Blazhynska, Marharyta; de Lacam, Emma Goulard Coderc; Szczepaniak, Florence; Pavlova, Anna;Shao, Xueguang; Gumbart, James C. ; Dehez, Francois; Roux, Benoit; Cai, Wensheng; Chipot, Christophe. Accurate determination of protein:ligand standard binding free energies from molecular dynamics simulations.Nature Protocols,2022,17(4):1114-1141. (IF=17.021)
[23]Wang, He; Xing, Mengmeng; Deng, Weiliang; Qian, Meng; Wang, Fei;Wang, Kai; Midgley, Adam C. ;Zhao, Qiang. Anti-Sca-1 antibody-functionalized vascular grafts improve vascular regeneration via selective capture of endogenous vascular stem/progenitor cells.Bioactive Materials,2022,16:433-450. (IF=16.874)
[24]Yang, Guang; Wang, Da-Yuan; Liu, Yong; Huang, Fan; Tian, Shuang; Ren,Yijin; Liu, Jianfeng; An, Yingli; van der Mei, Henny C. ; Busscher, Henk J. ;Shi, Linqi. In-biofilm generation of nitric oxide using a magnetically-targetable cascade-reaction container for eradication of infectious biofilms.Bioactive Materials,2022,14:321-334. (IF=16.874)
[25]Zhao, Zhengfeng; Zheng, Dong; Guo, Menglei; Yu, Jiangyue; Zhang, Sainan;Zhang, Zhenjie;Chen, Yao. Engineering Olefin-Linked Covalent OrganicFrameworks for Photoenzymatic Reduction of CO2.Angewandte Chemie-International Edition,2022,61(12):e202200261. (IF=16.823)
[26]Su, Bo; Hartwig, John F. . Development of Chiral Ligands for the Transition-Metal-Catalyzed Enantioselective Silylation and Borylation of C-H Bonds.Angewandte Chemie-International Edition,2022,61(9):e202113343. (IF=16.823)
[27]Duan, Xingchen; Zhang, Guo-Qiang; Ji, Shenglu; Zhang, Yiming; Li, Jun; Ou, Hanlin; Gao, Zhiyuan; Feng, Guangxue;Ding, Dan. Activatable Persistent Luminescence from Porphyrin Derivatives and Supramolecular Probes with Imaging-Modality Transformable Characteristics for Improved BiologicalApplications**.Angewandte Chemie-International Edition,2022,61(24):e202116174. (IF=16.823)
[28]Lin, En; Wang, Zhifang; Zhao, Xiuyu; Liu, Zhaoyi; Yan, Dong; Jin, Fazheng;Chen, Yao; Cheng, Peng;Zhang, Zhenjie. A Class of Rigid-Flexible Coupling Crystalline Crosslinked Polymers as Vapomechanical Actuators.Angewandte Chemie-International Edition,2022,61(12):e202117390. (IF=16.823)
[29]Zheng, Yunlong; Zhang, Sainan; Guo, Jinbiao; Shi, Ruixuan; Yu, Jiangyue;Li, Kaipeng; Li, Ning;Zhang, Zhenjie;Chen, Yao. Green and Scalable Fabrication of High-Performance Biocatalysts Using Covalent Organic Frameworks as Enzyme Carriers.Angewandte Chemie-International Edition,2022,61(39):e202208744. (IF=16.823)
[30]Wu, Xiaohui; Ma, Feihe; Pan, Bin-Bin; Zhang, Yanli; Zhu, Lin; Deng, Fei;Xu, Linlin; Zhao, Yu; Yin, Xu; Niu, Haihong; Su, Xun-Cheng;Shi, Linqi. Tailoring a Nanochaperone to Regulate alpha-Synuclein Assembly.Angewandte Chemie-International Edition,2022,61(19):e202200192. (IF=16.823)
[31]Chen, Bolin; Wu, Qianwei; Xu, Dongdong; Zhang, Xijing; Ding, Yahui; Bao, Shiqi; Zhang, Xuemei; Wang, Liang;Chen, Yue. A Two-Phase Approachto Fusicoccane Synthesis To Uncover a Compound That Reduces Tumourigenesis in Pancreatic Cancer Cells.Angewandte Chemie-International Edition,2022,61(19):e202117476. (IF=16.823)
[32]Gao, Zhiyuan; Jia, Shaorui; Ou, Hanlin; Hong, Yuning; Shan, Ke; Kong, Xianglong; Wang, Zhiming; Feng, Guangxue;Ding, Dan. An Activatable Near-Infrared Afterglow Theranostic Prodrug with Self-Sustainable Magnification Effect of Immunogenic Cell Death.Angewandte Chemie-International Edition,2022,61(40):e202209793. (IF=16.823)
[33]Liu, Can; Wang, Liang; Sun, Yuanjun; Zhao, Xiuhe; Chen, Tianyang; Su, Xiuwen; Guo, Hui; Wang, Qin; Xi, Xiaonan; Ding, Yahui;Chen, Yue. Probe Synthesis Reveals Eukaryotic Translation Elongation Factor 1 Alpha 1 as the Anti-Pancreatic Cancer Target of BE-43547A(2).Angewandte Chemie-International Edition,2022,61(34):e202206953. (IF=16.823)
[34]Mao, Tianhui; Liu, Zhaoyi; Guo, Xiuxiu; Wang, Zhifang; Liu, Jinjin; Wang,Ting; Geng, Shubo;Chen, Yao; Cheng, Peng;Zhang, Zhenjie. Engineering Covalent Organic Frameworks with Polyethylene Glycol as Self-Sustained Humidity-Responsive Actuators.Angewandte Chemie-International Edition,2022,62(4):e202216318. (IF=16.823)
[35]Zhang, Penghui; Wang, Zhifang; Wang, Sa; Wang, Jian; Liu, Jinjin; Wang, Ting;Chen, Yao; Cheng, Peng;Zhang, Zhenjie. Fabricating Industry-Compatible Olefin-Linked COF Resins for Oxoanion Pollutant Scavenging.Angewandte Chemie-International Edition,2022,61(52):e202213247. (IF=16.823)
[36]Liu, Jinjin; Li, Jiamin; Qiao, Shan; Wang, Zhifang; Zhang, Penghui; Fan, Xiangqian; Cheng, Peng; Li, Yue-Sheng;Chen, Yao;Zhang, Zhenjie. Self-Healing and Shape Memory Hypercrosslinked Metal-Organic Polyhedra Polymers via Coordination Post-Assembly.Angewandte Chemie-International Edition,2022,61(43):e202212253. (IF=16.823)
[37]Zheng Chunxiong; Zhao Xinzhi; Wang Ying; Zhao Yu; Zheng Yadan; Zhang Zhanzhan; Liu Qi;Liu Yang;Shi Linqi. Immune modulating nanoparticles depleting tumor-associated macrophages to enhance immune checkpoint blockade therapy.Chemical Engineering Journal,2022,435:134779. (IF=16.744)
[38]Chen, Haixin; Jin, Chaonan; Chen, Xuepeng; Yu, Jiangyue; Yan, Dong; Cheng, Peng;Zhang, Zhenjie; Zhao, Limin;Chen, Yao. Covalent organic frameworks as crystalline sponges for enzyme extraction and production from natural biosystems.Chemical Engineering Journal,2022,444:136624. (IF=16.744)
[39]Wang, Shuo; Bai, Yueping; Wang, Dayuan; Zhai, Yunqian; Qiao, Yanqi; Zhao, Xiujie; Yin, Yongmei;Xi, Rimo; Wang, Wei;Zhao, Wei; Meng, Meng. Reversing tumor to ?Hot?: A NIR light-triggered carrier-free nanoplatform for enhanced tumor penetration and photo-induced immunotherapy.Chemical Engineering Journal,2022,442:136322. (IF=16.744)
[40]Zhang, Yanli; Li, Chang; Wu, Xiaohui; Deng, Fei; Huang, Fan; Zhang, Yumin; Liu, Jinjian; Gui, Han; Ma, Rujiang;Shi, Linqi. Nanochaperones tailored for insulin delivery to reduce immune clearance and enhance bioavailability of insulin.Chemical Engineering Journal,2022,435:134866. (IF=16.744)
[41]Jin, Fazheng; Lin, En; Wang, Tonghai; Geng, Shubo; Wang, Ting; Liu, Wansheng; Xiong, Fanhao; Wang, Zhifang;Chen, Yao; Cheng, Peng;Zhang, Zhenjie. Bottom-Up Synthesis of 8-Connected Three-Dimensional Covalent Organic Frameworks for Highly Efficient Ethylene/Ethane Separation.Journal of the American Chemical Society,2022,144(12):5643-5652. (IF=16.383)
[42]Chen, Chao; Gao, Heqi; Ou, Hanlin; Kwok, Ryan T. K. ; Tang, Youhong; Zheng, Donghui;Ding, Dan. Amplification of Activated Near-Infrared Afterglow Luminescence by Introducing Twisted Molecular Geometry for Understanding Neutrophil-Involved Diseases.Journal of the American Chemical Society,2022,144(8):3429-3441. (IF=16.383)
[43]Liu, Xin; Li, Mingming; Liu, Juanzu; Song, Yanqiu; Hu, Binbin; Wu, Chunxia; Liu, An-An; Zhou, Hao;Long, Jiafu;Shi, Linqi;Yu, Zhilin. In Situ Self-Sorting Peptide Assemblies in Living Cells for Simultaneous Organelle Targeting.Journal of the American Chemical Society,2022,144(21):9312-9323. (IF=16.383)
[44]Chen, Mengtian; Ye, Zhongju; Wei, Lin; Yuan, Jie;Xiao, Lehui. Shining at the Tips: Anisotropic Deposition of Pt Nanoparticles Boosting Hot Carrier Utilization for Plasmon-Driven Photocatalysis.Journal of the American Chemical Society,2022,144(28):12842-12849. (IF=16.383)
[45]Jin, Fazheng; Lin, En; Wang, Ting; Geng, Shubo; Hao, Liqin; Zhu, Qianqian; Wang, Zhifang;Chen, Yao; Cheng, Peng;Zhang, Zhenjie. Rationally Fabricating Three-Dimensional Covalent Organic Frameworks for Propyne/Propylene Separation.Journal of the American Chemical Society,2022,144(50):23081-23088. (IF=16.383)
[46]Liu, Xuehui; Zong, Zhiyou; Liu, Xinzhuo; Li, Qiang;Li, Ang; Xu, Chen;Liu, Dingbin. Stimuli-Mediated Specific Isolation of Exosomes from Blood Plasma for High-Throughput Profiling of Cancer Biomarkers.Small Methods,2022,6(2):2101234. (IF=15.367)
[47]Zhang, Yongxin; Fu, Hao; Chen, Jiajing; Xu, Linlin; An, Yingli; Ma, Rujiang;Zhu, Chunlei;Liu, Yang; Ma, Feihe;Shi, Linqi. Holdase/Foldase Mimetic Nanochaperone Improves Antibody-Based Cancer Immunotherapy.Small Methods,2022,e2201051. (IF=15.367)
[48]Yu, Hua;Cheng, Yue; Wen, Cong; Sun, Yi-Qing; Yin, Xue-Bo. Triple cascade nanocatalyst with laser-activatable O-2 supply and photothermal enhancement for effective catalytic therapy against hypoxic tumor.Biomaterials,2022,280:121308. (IF=15.304)
[49]Chen, Lu-Lu; Zhao, Liang; Wang, Zhi-Gang; Liu, Shu-Lin;Pang, Dai-Wen. Near-Infrared-II Quantum Dots for In Vivo Imaging and Cancer Therapy.Small,2022,18(8):2104567. (IF=15.153)
[50]Wu, Jin; Wei, Yonghua; Lan, Jingping; Hu, Xueyan; Gao, Fangli; Zhang, Xiangyun; Gao, Zhanxia; Liu, Qiqi; Sun, Zhiyuan; Chen, Rui; Zhao, Hanqing; Fan, Kelong; Yan, Xiyun; Zhuang, Jie;Huang, Xinglu. Screening of Protein-Based Ultrasmall Nanozymes for Building Cell-Mimicking Catalytic Vesicles.Small,2022,18(39):2202145. (IF=15.153)
[51]Wang, Zhi-Gang; Zhao, Liang; Chen, Lu-Lu; Liu, Hao-Yang; Wang, Lei; Hu, Yusi; Shi, Xue-Hui; Zhao, Dongbing; Liu, Shu-Lin;Pang, Dai-Wen. Spatiotemporal Quantification of Endosomal Acidification on the Viral Journey.Small,2022,18(2):2104200. (IF=15.153)
[52]Qiao, Yanqi; Ma, Yan; Tong, Yue; Liu, Wenting; Wang, Shuo; Zheng, Ying; Men, Changjun; Yu, Jie; Pan, Jie; Wan, Dong; Yin, Yongmei; Zhao, Xiujie;Xi, Rimo; Meng, Meng. Phototherapy and Mechanism Exploration of Biofilm and Multidrug-Resistant Helicobacter pylori by Bacteria-Targeted NIR Photosensitizer.Small,2022,19(4):e2205248. (IF=15.153)
[53]Li, Xue; Zhang, Yongxin; Wu, Xiaohui; Chen, Jiajing; Yang, Menglin; Ma, Feihe;Shi, Linqi. In Situ Antigen-Capturing Nanochaperone Toward Personalized Nanovaccine for Cancer Immunotherapy.Small,2022,18(32):2203100. (IF=15.153)
[54]Zhi, Dengke; Cheng, Quhan; Midgley, Adam C. ; Zhang, Qiuying; Wei, Tingting; Li, Yi; Wang, Ting; Ma, Tengzhi; Rafique, Muhammad; Xia, Shuang; Cao, Yuejuan; Li, Yangchun; Li, Jing; Che, Yongzhe;Zhu, Meifeng;Wang, Kai;Kong, Deling. Mechanically reinforced biotubes for arterial replacement and arteriovenous grafting inspired by architectural engineering.Science Advances,2022,8(11):eabl3888. (IF=14.98)
[55]Gao, Shaoyan; Li, Xiaohe; Jiang, Qiuyan; Liang, Qing; Zhang, Fangxia; Li, Shuangling; Zhang, Ruiqin; Luan, Jiaoyan; Zhu, Jingyan; Gu, Xiaoting; Xiao, Ting; Huang, Hui; Chen, Shanshan;Ning, Wen; Yang, Guang;Yang, Cheng; Zhou, Honggang. PKM2 promotes pulmonary fibrosis by stabilizing TGF-beta 1 receptor I and enhancing TGF-beta 1 signaling.Science Advances,2022,8(38):eabo0987. (IF=14.98)
[56]Zheng, Debin; Liu, Jingfei; Xie, Limin; Wang, Yuhan; Ding, Yinghao; Peng, Rong; Cui, Min;Wang, Ling; Zhang, Yongjie;Zhang, Chunqiu;Yang, Zhimou. Enzyme-instructed and mitochondria-targeting peptide self-assembly to efficiently induce immunogenic cell death.Acta Pharmaceutica Sinica B,2022,12(6):2740-2750. (IF=14.907)
[57]Liu, Wenjuan; Li, Zhenqiang; Chu, Simeng; Ma, Xiaoyao; Wang, Xiaoying;Jiang, Min;Bai, Gang. Atractylenolide-I covalently binds to CYP11B2, selectively inhibits aldosterone synthesis, and improves hyperaldosteronism.Acta Pharmaceutica Sinica B,2022,12(1):135-148. (IF=14.907)
[58]Li, Wei; Jiang, Hong-Xin; Cui, Meng-Fan; Wang, Rui; Tang, An-Na;Kong,De-Ming. SiO2 templates-derived hierarchical porous COFs sample pretreatment tool for non-targeted analysis of chemicals in foods.Journal of Hazardous Materials,2022,432:128705. (IF=14.224)
[59]Liang, Lu; Liu, Ye; Kang, Bo; Wang, Ru; Sun, Meng-Yu; Wu, Qi; Meng, Xiang-Fei;Lin, Jian-Ping. Large-scale comparison of machine learning algorithms for target prediction of natural products.Briefings In Bioinformatics,2022,23(5):bbac359. (IF=13.994)
[60]Jin, Chaonan; Li, Ning; Lin, En; Chen, Xuepeng; Wang, Ting; Wang, Yan;Yang, Mingfang; Liu, Wansheng; Yu, Jiangyue;Zhang, Zhenjie;Chen, Yao.Enzyme Immobilization in Porphyrinic Covalent Organic Frameworks for Photoenzymatic Asymmetric Catalysis.Acs Catalysis,2022,12(14):8259-8268. (IF=13.7)
[61]Meng, Yuanyuan; Luo, Qian;Chen, Quan;Zhu, Yushan. A noncanonical autophagy function of ATG9A for Golgi integrity and dynamics.Autophagy,2022: 1-2. (IF=13.391)
[62]Ye, Kai; Li, Fan; Wang, Ruikun; Cen, Tianyi; Liu, Shiyu; Zhao, Zhuoqian;Li, Ruonan; Xu, Lili; Zhang, Guanmeng; Xu, Zhaoyuan; Deng, Li; Li, LiliWang, Wei; Stepanov, Alexey; Wan, Yajuan;Guo, Yu; Li, Yuanke; Wang, Yuan; Tian, Yujie; Gabibov, Alexander G; Yan, Yingbin;Zhang, Hongkai.An armed oncolytic virus enhances the efficacy of tumor-infiltrating lymphocyte therapy by converting tumors to artificial antigen-presenting cells in situ. .Molecular Therapy : The Journal of the American Society of Gene Therapy,2022,30(12):3658-3676. (IF=12.91)
[63]Li, Yang; Sun, Jixue; Li, Dongmei;Lin, Jianping. The full activation mechanism of the adenosine A(1) receptor revealed by GaMD and Su-GaMD simulations.Proceedings Of The National Academy Of Sciences Of The United States Of America,2022,119(42):e2203702119. (IF=12.779)
[64]Chen, Feilong; Liu, Beibei; Zhou, Hao;Long, Jiafu. The Paf1 complex is required for RNA polymerase II removal in response to DNA damage.Proceedings Of The National Academy Of Sciences Of The United States Of America,2022,119(40):e2207332119. (IF=12.779)
[65]Han, Cong; Li, Wenjin; Li, Qian; Xing, Wenping; Luo, Hang; Ji, Haishuo;Fang, Xiaona; Luo, Zhaofeng;Zhang, Liyun. CRISPR/Cas12a-Derived electrochemical aptasensor for ultrasensitive detection of COVID-19 nucleocapsidprotein.Biosensors & Bioelectronics,2022,200:113922. (IF=12.545)
[66]Zhang, Yan; Feng, Yu-Sheng; Ren, Xing-Hui; He, Xi-Wen;Li, Wen-You; Zhang, Yu-Kui. Bimetallic molecularly imprinted nanozyme: Dual-mode detection platform.Biosensors & Bioelectronics,2022,196:113718. (IF=12.545)
[67]Li, Xiao; Wang, Zhi-Gang; Zhu, Han; Wen, Hui-Ping; Ning, Di; Liu, Hao-Yang;Pang, Dai-Wen; Liu, Shu-Lin. Inducing Autophagy and Blocking Autophagic Flux via a Virus-Mimicking Nanodrug for Cancer Therapy.Nano Letters,2022,22(22):9163-9173. (IF=12.262)
[68]Yu, Na; Zhang, Xi; Zhong, Haiping; Mu, Jingqing; Li, Xingwei; Liu, Tao;Shi, Xiaoguang; Liang, Xing-Jie;Guo, Shutao. Stromal Homeostasis-Restoring Nanomedicine Enhances Pancreatic Cancer Chemotherapy.Nano Letters,2022,22(21):8744-8754. (IF=12.262)
[69]He, Tian-Sheng; Dang, Longlong; Zhang, Jiahui; Zhang, Junqi; Wang, Guiping; Wang, Enlin; Xia, Huan; Zhou, Weihong;Wu, Shian;Liu, Xinqi. The Hippo signaling component LATS2 enhances innate immunity to inhibit HIV-1 infection through PQBP1-cGAS pathway.Cell Death And Differentiation,2022,29(1):192-205. (IF=12.073)
[70]Sun, Zhiyuan; Liu, Qiqi; Wang, Xinyue; Wu, Jin; Hu, Xueyan; Liu, Miaomiao; Zhang, Xiangyun; Wei, Yonghua; Liu, Zhijun; Liu, Hongjiang; Chen, Rui; Wang, Fei; Midgley, Adam C. ; Li, Aitao; Yan, Xiyun; Wang, Yanming; Zhuang, Jie;Huang, Xinglu. Bioorthogonal catalytic nanozyme-mediated lysosomal membrane leakage for targeted drug delivery.Theranostics,2022,12(3):1132-1147. (IF=11.6)
[71]Liang, Yuexi; Li, Xin; Peng, Fengping; Ye, Xiaohan; Wang, Wei; Cen, Tianyi; Li, Fan; Lu, Yue; Liu, Zhaoyun; Liu, Hui; Ding, Kai; Ye, Kai; Yu, Yang; Ma, Tianyu; Zhang, Sihe; Huang, Yi; Wang, Yuan;Yang, Xue; Fu, Rong;Zhang, Hongkai. Self-assembly of X-shaped antibody to combine the activity of IgG and IgA for enhanced tumor killing.Theranostics,2022,12(18):7729-7744. (IF=11.6)
[72]Gao, Shan; Liu, Yuli; Liu, Meng; Yang, Dongjuan; Zhang, Mingming; Shi,Kai. Biodegradable mesoporous nanocomposites with dual-targeting functionfor enhanced anti-tumor therapy.Journal of Controlled Release,2022,341:383-398. (IF=11.467)
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