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Chemistry

D-Index
47
Citations
7860
World Ranking
15655
National Ranking
2424

Overview

Jinyi Xu is affiliated with China Pharmaceutical University in China and has contributed extensively to the fields of Medicine, Biochemistry, Genetics and Molecular Biology, and Chemistry. Their research spans a diverse range of subfields such as Molecular Biology, Organic Chemistry, Pharmacology, Oncology, and Cardiology and Cardiovascular Medicine.

Their research topics include:

  • Protein Degradation and Inhibitors
  • Peptidase Inhibition and Analysis
  • Synthesis and Biological Activity
  • Cholinesterase and Neurodegenerative Diseases
  • Computational Drug Discovery Methods
  • Ubiquitin and Proteasome Pathways
  • Click Chemistry and Applications

Jinyi Xu's work features in several frequent publication venues, including:

  • Journal of Medicinal Chemistry
  • European Journal of Medicinal Chemistry
  • Bioorganic Chemistry
  • Bioorganic & Medicinal Chemistry
  • SSRN Electronic Journal

Some of the recent papers by Xu include:

  • Discovery of Novel Tacrine-Pyrimidone Hybrids as Potent Dual AChE/GSK-3 Inhibitors for the Treatment of Alzheimer's Disease, 2021, Journal of Medicinal Chemistry
  • Discovery of Norbornene as a Novel Hydrophobic Tag Applied in Protein Degradation, 2023, Angewandte Chemie International Edition
  • Small-Molecule Hydrophobic Tagging: A Promising Strategy of Druglike Technology for Targeted Protein Degradation, 2023, Journal of Medicinal Chemistry
  • Development of Alectinib-Based PROTACs as Novel Potent Degraders of Anaplastic Lymphoma Kinase (ALK), 2021, Journal of Medicinal Chemistry
  • NF-κB-p62-NRF2 Survival Signaling Is Associated with High ROR1 Expression in Chronic Lymphocytic Leukemia, 2020, Cell Death and Differentiation

Among frequent co-authors collaborating with Xu are:

  • Shengtao Xu
  • Zheying Zhu
  • Hong Yao
  • Huajian Zhu
  • Xinnan Li

The focus of their scientific contributions centers on strategies for targeted protein degradation, dual enzyme inhibition relevant to neurodegenerative diseases, and molecular approaches to oncology and pharmacology.

Best Publications

  • The structural modification of natural products for novel drug discovery.

    Hong Yao;Junkai Liu;Shengtao Xu;Zheying Zhu

  • Multi-target design strategies for the improved treatment of Alzheimer's disease

    Pengfei Zhang;Shengtao Xu;Zheying Zhu;Jinyi Xu

  • Efficient Iron-Catalyzed N-Arylation of Aryl Halides with Amines

    Diliang Guo;He Huang;Jinyi Xu;Hualiang Jiang

  • Insights into drug discovery from natural products through structural modification.

    Jichao Chen;Wenlong Li;Hequan Yao;Jinyi Xu

  • Efficient Construction of Fused Indolines with a 2-Quaternary Center via an Intramolecular Heck Reaction with a Low Catalyst Loading

    Lei Zhao;Ziyuan Li;Lin Chang;Jinyi Xu

  • Synthesis of spiro[2.5]octa-4,7-dien-6-one with consecutive quaternary centers via 1,6-conjugate addition induced dearomatization of para-quinone methides

    Kuo Gai;Xinxin Fang;Xuanyi Li;Jinyi Xu

  • Tubulin inhibitors targeting the colchicine binding site: a perspective of privileged structures

    Wenlong Li;Honghao Sun;Shengtao Xu;Zheying Zhu

  • A pharmacological probe identifies cystathionine β-synthase as a new negative regulator for ferroptosis.

    Li Wang;Hao Cai;Youtian Hu;Fan Liu

  • Development of Inhibitors of the Programmed Cell Death-1/Programmed Cell Death-Ligand 1 Signaling Pathway.

    Tianyu Wang;Xiaoxing Wu;Changying Guo;Kuojun Zhang

  • Discovery of Novel Quinoline–Chalcone Derivatives as Potent Antitumor Agents with Microtubule Polymerization Inhibitory Activity

    Wenlong Li;Feijie Xu;Wen Shuai;Honghao Sun

  • Solvent-Controlled Switchable C–H Alkenylation of 4-Aryl-1H-pyrrole-3-carboxylates: Application to the Total Synthesis of (±)-Rhazinilam

    Youla Su;Haipin Zhou;Jiaxuan Chen;Jinyi Xu

  • A Novel Potent Anticancer Compound Optimized from a Natural Oridonin Scaffold Induces Apoptosis and Cell Cycle Arrest through the Mitochondrial Pathway

    Shengtao Xu;Hong Yao;Shanshan Luo;Yun-Kai Zhang

  • Multiple Roles of the Pyrimidyl Group in the Rhodium-Catalyzed Regioselective Synthesis and Functionalization of Indole-3-carboxylic Acid Esters

    Hui Jiang;Shang Gao;Jinyi Xu;Xiaoming Wu

  • Ligand-free iron/copper cocatalyzed N-arylations of aryl halides with amines under microwave irradiation

    Diliang Guo;Diliang Guo;He Huang;Yu Zhou;Jinyi Xu

  • Pd(II)-catalyzed direct C5-arylation of azole-4-carboxylates through double C–H bond cleavage

    Ziyuan Li;Ling Ma;Jinyi Xu;Lingyi Kong

  • The conversion of oridonin to spirolactone-type or enmein-type diterpenoid: synthesis and biological evaluation of ent-6,7-seco-oridonin derivatives as novel potential anticancer agents.

    Lei Wang;Dahong Li;Shengtao Xu;Hao Cai

  • Copper-catalyzed C5-selective thio/selenocyanation of 8-aminoquinolines

    Jichao Chen;Tianyu Wang;Tong Wang;Tong Wang;Aijun Lin

  • A Mannich/cyclization cascade process for the asymmetric synthesis of spirocyclic thioimidazolidineoxindoles

    Hao Cai;Hao Cai;Yu Zhou;Dong Zhang;Dong Zhang;Jinyi Xu

  • Cell-Permeable Iminocoumarine-Based Fluorescent Dyes for Mitochondria

    Diliang Guo;Tao Chen;Deju Ye;Jinyi Xu

  • Design, synthesis and biological evaluation of quinoline-indole derivatives as anti-tubulin agents targeting the colchicine binding site.

    Wenlong Li;Wen Shuai;Honghao Sun;Feijie Xu

  • Synthesis and biological evaluation of novel 1-O- and 14-O-derivatives of oridonin as potential anticancer drug candidates.

    Jinyi Xu;JingYi Yang;Qian Ran;Lei Wang

Frequent Co-Authors

Hequan Yao
Hequan Yao China Pharmaceutical University
Hong Liu
Hong Liu Shandong University
Osamu Muraoka
Osamu Muraoka Kindai University
Zhe-Sheng Chen
Zhe-Sheng Chen St. John's University
Wen-Cai Ye
Wen-Cai Ye Jinan University
Yu Zhou
Yu Zhou Chinese Academy of Sciences
Ling-Yi Kong
Ling-Yi Kong China Pharmaceutical University
Hualiang Jiang
Hualiang Jiang Chinese Academy of Sciences
Kaixian Chen
Kaixian Chen Chinese Academy of Sciences
Qinglong Guo
Qinglong Guo China Pharmaceutical University

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