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| A curcumin derivative activates TFEB and protects against parkinsonian neurotoxicity in vitro Journal article International Journal of Molecular Sciences, 2020,Volume: 21,Issue: 4 Authors: Wang,Ziying; Yang,Chuanbin; Liu,Jia; Tong,Benjamin Chun Kit; Zhu,Zhou; Malampati,Sandeep; Sreenivasmurthy,Sravan Gopalkrishnashetty; Cheung,King Ho; Iyaswamy,Ashok; Su,Chengfu; Lu,Jiahong; Song,Juxian; Li,Min
 Favorite | | TC[WOS]:5 TC[Scopus]:5 | Submit date:2021/03/02 Curcumin derivatives MTORC1 Parkinson’s disease TFEB α-synuclein |
| Selective autophagy of intracellular organelles: Recent research advances Journal article Theranostics, 2020,Volume: 11,Issue: 1,Page: 222-256 Authors: Li,Wen; He,Pengcheng; Huang,Yuge; Li,Yi Fang; Lu,Jiahong; Li,Min; Kurihara,Hiroshi; Luo,Zhuo; Meng,Tian; Onishi,Mashun; Ma,Changle; Jiang,Lei; Hu,Yongquan; Gong,Qing; Zhu,Dongxing; Xu,Yiming; Liu,Rong; Liu,Lei; Yi,Cong; Zhu,Yushan; Ma,Ningfang; Okamoto,Koji; Xie,Zhiping; Liu,Jinbao; He,Rong Rong; Feng,Du
 Favorite | | TC[WOS]:0 TC[Scopus]:0 | Submit date:2021/03/02 Autophagy receptor ER-phagy Lipophagy Lysophagy Mitophagy Nucleophagy Pexophagy Proteaphagy Ribophagy Selective autophagy |
| An integrative multi-omics approach uncovers the regulatory role of CDK7 and CDK4 in autophagy activation induced by silica nanoparticles Journal article Autophagy, 2020 Authors: Ruan,Chen; Wang,Chenwei; Gong,Xuanqing; Zhang,Ying; Deng,Wankun; Zhou,Jiaqi; Huang,Dengtong; Wang,Zining; Zhang,Qiong; Guo,Anyuan; Lu,Jiahong; Gao,Jinhao; Peng,Di; Xue,Yu
 Favorite | | TC[WOS]:3 TC[Scopus]:3 | Submit date:2021/03/02 Autophagy CDK4 CDK7 phosphoproteomics protein kinase silica nanoparticles |
| Autophagy and parkinson’s disease Book chapter 出自: Advances in Experimental Medicine and Biology, 2020, 页码:
21-51 Authors: Lu,Jiahong; Wu,Mingyue; Yue,Zhenyu
 Favorite | | TC[WOS]:3 TC[Scopus]:1 | Submit date:2021/03/02 Autophagy Parkinson disease α-synuclein |
| XIAOPI formula promotes breast cancer chemosensitivity via inhibiting CXCL1/HMGB1-mediated autophagy Journal article Biomedicine and Pharmacotherapy, 2019,Volume: 120 Authors: Wang,Neng; Yang,Bowen; Muhetaer,Gulizeba; Wang,Shengqi; Zheng,Yifeng; Lu,Jiahong; Li,Min; Zhang,Fengxue; Situ,Honglin; Lin,Yi; Wang,Zhiyu
 Favorite | | TC[WOS]:5 TC[Scopus]:3 | Submit date:2021/03/02 Autophagy Breast cancer chemosensitivity CXCL1/HMGB1 axis XIAOPI formula |
| Tetramethylpyrazine Analogue T-006 Promotes the Clearance of Alpha-synuclein by Enhancing Proteasome Activity in Parkinson’s Disease Models Journal article Neurotherapeutics, 2019,Volume: 16,Issue: 4,Page: 1225-1236 Authors: Zhou,Hefeng; Shao,Min; Guo,Baojian; Li,Chuwen; Lu,Yucong; Yang,Xuanjun; ShengnanLi,; Li,Haitao; Zhu,Qi; Zhong,Hanbing; Wang,Yuqiang; Zhang,Zaijun; Lu,Jiahong; Lee,Simon Ming Yuen
 Favorite | | TC[WOS]:7 TC[Scopus]:7 | Submit date:2021/03/01 Degradation LMP7 Parkinson’s disease Proteasome activity α-synuclein |
| Predicting physical stability of solid dispersions by machine learning techniques Journal article Journal of Controlled Release, 2019,Volume: 311-312,Page: 16-25 Authors: Han,Run; Xiong,Hui; Ye,Zhuyifan; Yang,Yilong; Huang,Tianhe; Jing,Qiufang; Lu,Jiahong; Pan,Hao; Ren,Fuzheng; Ouyang,Defang
 Favorite | | TC[WOS]:22 TC[Scopus]:22 | Submit date:2021/03/02 Machine learning Molecular modeling Physical stability Solid dispersion |
| Pharmacological activities of dihydrotanshinone I, a natural product from Salvia miltiorrhiza Bunge Journal article Pharmacological Research, 2019,Volume: 145 Authors: Chen,Xiuping ; Yu,Jie; Zhong,Bingling; Lu,Jiahong; Lu,Jin Jian; Li,Shaojing; Lu,Yang
 Favorite | | TC[WOS]:13 TC[Scopus]:16 | Submit date:2021/03/01 15,16-Dihydrotanshinone I Anti-cancer Anti-inflammation Cardiovascular protection Human antigen R Hypoxia-inducible factor |
| Neuroprotective effects of baicalein in animal models of Parkinson's disease: A systematic review of experimental studies Journal article Phytomedicine, 2019,Volume: 55,Page: 302-309 Authors: Zhu,Qi; Zhuang,Xuxu; Lu,Jiahong
 Favorite | | TC[WOS]:7 TC[Scopus]:8 | Submit date:2021/03/02 Baicalein In-vivo Neuroprotective effects Parkinson's disease PD animal models |
| Research and development of anti-Parkinson’s drugs: an analysis from the perspective of technology flows measured by patent citations Journal article Expert Opinion on Therapeutic Patents, 2019,Volume: 29,Issue: 2,Page: 127-135 Authors: Qu,Jingwen; Lu,Jiahong; Hu,Yuanjia
 Favorite | | TC[WOS]:4 TC[Scopus]:6 | Submit date:2021/03/01 Parkinson’s disease patent citation network research and development technology evolution technology flow |