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Maximizing hydrogen evolution via Co–Ni dual atoms and nanoclusters on hierarchically ordered porous carbon framework 有序多级孔碳框架负载的Co–Ni双原子与纳米团簇 高效析氢 Journal article
Li, Qian, Zhang, Pan, Li, Huaiguang, Wang, Yuan, Tang, Dongsheng, Li, Qun, Wu, Jiabin. Maximizing hydrogen evolution via Co–Ni dual atoms and nanoclusters on hierarchically ordered porous carbon framework 有序多级孔碳框架负载的Co–Ni双原子与纳米团簇 高效析氢[J]. SCIENCE CHINA-MATERIALS, 2024.
Authors:  Li, Qian;  Zhang, Pan;  Li, Huaiguang;  Wang, Yuan;  Tang, Dongsheng; et al.
Favorite | TC[WOS]:0 TC[Scopus]:0  IF:6.8/6.6 | Submit date:2024/09/03
Co–ni Dual Atoms  Co–ni Nanoclusters  Her  Synergistic Effect  Three Dimensional Ordered Macroporous  
Machine learning in accelerating microsphere formulation development Journal article
Deng, Jiayin, Ye, Zhuyifan, Zheng, Wenwen, Chen, Jian, Gao, Haoshi, Wu, Zheng, Chan, Ging, Wang, Yongjun, Cao, Dongsheng, Wang, Yanqing, Lee, Simon Ming Yuen, Ouyang, Defang. Machine learning in accelerating microsphere formulation development[J]. Drug Delivery and Translational Research, 2023, 13(4), 966-982.
Authors:  Deng, Jiayin;  Ye, Zhuyifan;  Zheng, Wenwen;  Chen, Jian;  Gao, Haoshi; et al.
Favorite | TC[WOS]:6 TC[Scopus]:8  IF:5.7/5.5 | Submit date:2023/01/30
Drug Release  Machine Learning  Microspheres  Molecular Dynamics Simulation  
Nanoparticles for co-delivery of paclitaxel and curcumin to overcome chemoresistance against breast cancer Journal article
Lin, Xiangping, Wang, Qun, Du, Shuang, Guan, Yucheng, Qiu, Jinmei, Chen, Xiaojia, Yuan, Dongsheng, Chen, Tongkai. Nanoparticles for co-delivery of paclitaxel and curcumin to overcome chemoresistance against breast cancer[J]. Journal of Drug Delivery Science and Technology, 2023, 79.
Authors:  Lin, Xiangping;  Wang, Qun;  Du, Shuang;  Guan, Yucheng;  Qiu, Jinmei; et al.
Favorite | TC[WOS]:22 TC[Scopus]:22  IF:4.5/4.7 | Submit date:2023/02/01
Breast Cancer  Paclitaxel  Curcumin  Co-delivery  Polymeric Nanoparticles  Nf-κb Signaling Pathway  
ChemistGA: A Chemical Synthesizable Accessible Molecular Generation Algorithm for Real-World Drug Discovery Journal article
Wang, Jike, Wang, Xiaorui, Sun, Huiyong, Wang, Mingyang, Zeng, Yundian, Jiang, Dejun, Wu, Zhenxing, Liu, Zeyi, Liao, Ben, Yao, Xiaojun, Hsieh, Chang Yu, Cao, Dongsheng, Chen, Xi, Hou, Tingjun. ChemistGA: A Chemical Synthesizable Accessible Molecular Generation Algorithm for Real-World Drug Discovery[J]. Journal of Medicinal Chemistry, 2022, 65(18), 12482-12496.
Authors:  Wang, Jike;  Wang, Xiaorui;  Sun, Huiyong;  Wang, Mingyang;  Zeng, Yundian; et al.
Favorite | TC[WOS]:9 TC[Scopus]:13  IF:6.8/7.1 | Submit date:2023/01/30
Efficient Sustained-Release Nanoparticle Delivery System Protects Nigral Neurons in a Toxin Model of Parkinson's Disease Journal article
Wang, Qun, Ma, Rui, Liu, Piaoxue, Cheng, Guowang, Yang, Qi, Chen, Xiaojia, Wu, Zhenfeng, Yuan, Dongsheng, Chen, Tongkai. Efficient Sustained-Release Nanoparticle Delivery System Protects Nigral Neurons in a Toxin Model of Parkinson's Disease[J]. Pharmaceutics, 2022, 14(8), 1731.
Authors:  Wang, Qun;  Ma, Rui;  Liu, Piaoxue;  Cheng, Guowang;  Yang, Qi; et al.
Favorite | TC[WOS]:11 TC[Scopus]:10  IF:4.9/5.5 | Submit date:2022/08/26
Polymeric Nanoparticles  Blood-brain Barrier  Drug Delivery  Pharmacokinetics  Brain Accumulation  Parkinsonian Therapy  
Development of in silico methodology for siRNA lipid nanoparticle formulations Journal article
Gao, Haoshi, Kan, Stanislav, Ye, Zhuyifan, Feng, Yuchen, Jin, Lei, Zhang, Xudong, Deng, Jiayin, Chan, Ging, Hu, Yuanjia, Wang, Yongjun, Cao, Dongsheng, Ji, Yuanhui, Liang, Mingtao, Li, Haifeng, Ouyang, Defang. Development of in silico methodology for siRNA lipid nanoparticle formulations[J]. Chemical Engineering Journal, 2022, 442, 136310.
Authors:  Gao, Haoshi;  Kan, Stanislav;  Ye, Zhuyifan;  Feng, Yuchen;  Jin, Lei; et al.
Favorite | TC[WOS]:15 TC[Scopus]:16  IF:13.3/13.2 | Submit date:2022/05/13
Cationic Lipids  Knockdown Efficiency  Lipid Nanoparticle  Machine Learning  Molecular Dynamic Simulation  Sirna  
RELATION: A Deep Generative Model for Structure-Based De Novo Drug Design Journal article
Wang, Mingyang, Hsieh, Chang Yu, Wang, Jike, Wang, Dong, Weng, Gaoqi, Shen, Chao, Yao, Xiaojun, Bing, Zhitong, Li, Honglin, Cao, Dongsheng, Hou, Tingjun. RELATION: A Deep Generative Model for Structure-Based De Novo Drug Design[J]. Journal of Medicinal Chemistry, 2022, 65(13), 9478-9492.
Authors:  Wang, Mingyang;  Hsieh, Chang Yu;  Wang, Jike;  Wang, Dong;  Weng, Gaoqi; et al.
Favorite | TC[WOS]:33 TC[Scopus]:41  IF:6.8/7.1 | Submit date:2023/01/30
Multifunctional Graphene Oxide Nanodelivery Platform for Breast Cancer Treatment Journal article
Yousheng Mo, Wei Liu, Piaoxue Liu, Qiao Liu, Zhongyu Yuan, Qi Wang, Dongsheng Yuan, Xiao-Jia Chen, Tongkai Chen. Multifunctional Graphene Oxide Nanodelivery Platform for Breast Cancer Treatment[J]. International Journal of Nanomedicine, 2022, 17, 6413-6425.
Authors:  Yousheng Mo;  Wei Liu;  Piaoxue Liu;  Qiao Liu;  Zhongyu Yuan; et al.
Favorite | TC[WOS]:3 TC[Scopus]:2  IF:6.6/7.5 | Submit date:2023/01/30
Breast Cancer  Paclitaxel  Targeted Delivery  Multidrug Resistance  
Zebrafish: A Promising Model for Evaluating the Toxicity of Carbon Dot-Based Nanomaterials Journal article
Liu, Wei, Huang, Gang, Su, Xiaoying, Li, Siyi, Wang, Qun, Zhao, Yuying, Liu, Yao, Luo, Jingshan, Li, Ye, Li, Chuwen, Yuan, Dongsheng, Hong, Honghai, Chen, Xiaojia, Chen, Tongkai. Zebrafish: A Promising Model for Evaluating the Toxicity of Carbon Dot-Based Nanomaterials[J]. ACS Applied Materials and Interfaces, 2020, 12(43), 49012-49020.
Authors:  Liu, Wei;  Huang, Gang;  Su, Xiaoying;  Li, Siyi;  Wang, Qun; et al.
Favorite | TC[WOS]:50 TC[Scopus]:53  IF:8.3/8.7 | Submit date:2021/03/02
Carbon Nanomaterials  Developmental Neurotoxicity  Dopamine  Nanotoxicology  Zebrafish (Danio Rerio)  
Enhancement of oral bioavailability and anti-Parkinsonian efficacy of resveratrol through a nanocrystal formulation Journal article
Xiong, Sha, Liu, Wei, Zhou, Yile, Mo, Yousheng, Liu, Yao, Chen, Xiaojia, Pan, Huafeng, Yuan, Dongsheng, Wang, Qi, Chen, Tongkai. Enhancement of oral bioavailability and anti-Parkinsonian efficacy of resveratrol through a nanocrystal formulation[J]. Asian Journal of Pharmaceutical Sciences, 2020, 15(4), 518-528.
Authors:  Xiong, Sha;  Liu, Wei;  Zhou, Yile;  Mo, Yousheng;  Liu, Yao; et al.
Favorite | TC[WOS]:45 TC[Scopus]:48  IF:10.7/9.0 | Submit date:2021/03/02
Anti-parkinsonian Efficacy  Brain Permeability  Nanocrystals  Oral Absorption  Resveratrol