Search Result "artemisinin biological mechanism"
Biological Activities of Artemisinin Derivatives Beyond Malaria
Journal: Current Topics in Medicinal Chemistry
Volume: 19 Issue: 3 Year: 2019 Page: 205-222
Author(s): Xiaoyan Liu,Jianguo Cao,Guozheng Huang,Qingjie Zhao,Jingshan Shen
Ferroptosis: A Novel Mechanism of Artemisinin and its Derivatives in Cancer Therapy
Journal: Current Medicinal Chemistry
Volume: 28 Issue: 2 Year: 2021 Page: 329-345
Author(s): Shunqin Zhu,Qin Yu,Chunsong Huo,Yuanpeng Li,Linshen He,Botian Ran,Ji Chen,Yonghao Li,Wanhong Liu
Chemical Instability Determines the Biological Action of the Artemisinins
Journal: Current Medicinal Chemistry
Volume: 14 Issue: 3 Year: 2007 Page: 3243-3259
Author(s): F. Herwig Jansen, Shahid A. Soomro
Malaria and artemisinin derivatives: an updated review
Journal: Mini-Reviews in Medicinal Chemistry
Volume: 13 Issue: 13 Year: 2013 Page: 1879-1902
Author(s): Muhammad Tayyab Ansari,Zafar Saeed Saify,Nighat Sultana,Imran Ahmad,Syed Saeed-Ul-Hassan,Imran Tariq,Munawer Khanum
Artemisinin, Promising Lead Natural Product for Various Drug Developments
Journal: Mini-Reviews in Medicinal Chemistry
Volume: 7 Issue: 4 Year: 2007 Page: 411-422
Author(s): Seokjoon Lee
The Case for Development of 11-Aza-artemisinins for Malaria
Journal: Current Medicinal Chemistry
Volume: 22 Issue: 31 Year: 2015 Page: 3607-3630
Author(s): Rozanne Harmse,Ho Ning Wong,Frans Smit,Richard K. Haynes,David D. N'Da
Considerations on the Mechanism of Action of Artemisinin Antimalarials: Part 1 - The 'Carbon Radical' and 'Heme' Hypotheses
Journal: Infectious Disorders - Drug Targets
Volume: 13 Issue: 4 Year: 2013 Page: 217-277
Author(s): Richard K. Haynes,Kwan-Wing Cheu,David N'Da,Paolo Coghi,Diego Monti
Pharmacokinetic and Pharmacodynamic Profiles of Rapid-Acting Artemisinins in the Antimalarial Therapy
Journal: Current Drug Therapy
Volume: 2 Issue: 3 Year: 2007 Page: 210-223
Author(s): Qigui Li, Peter J. Weina, Wilbur K. Milhous
Molecular Pharmacology and Pharmacogenomics of Artemisinin and its Derivatives in Cancer Cells
Journal: Current Drug Targets
Volume: 7 Issue: 4 Year: 2006 Page: 407-421
Author(s): Thomas Efferth