Antimalarial sulfide, sulfone, and sulfonamide trioxanes
作者:Gary H. Posner、John P. Maxwell、Hardwin O'Dowd、Mikhail Krasavin、Suji Xie、Theresa A. Shapiro
DOI:10.1016/s0968-0896(00)00079-1
日期:2000.6
A series of trioxanes featuring sulfide, sulfone. and sulfonamide snbstituents in diverse positions has been prepared. Structure-activity relationship (SAR) generalizations highlight two major factors controlling the antimalarial potency of these new chemical entities: (1) the proximity of the sulfur-containing substituent to the crucial peroxide bond and (2) the oxidation stale of the sulfur-containing substituent. Generally, sulfones are more antimalarially potent than the corresponding sulfides. (C) 2000 Elsevier Science Ltd. All rights reserved.
Growth inhibition activity of thioacetal artemisinin derivatives against human umbilical vein endothelial cells
作者:Sangtae Oh、In Howa Jeong、Woon-Seob Shin、Seokjoon Lee
DOI:10.1016/j.bmcl.2003.08.023
日期:2003.11
Thioacetal artemisinin derivatives, in particular, 10alpha-phenylthiodihydroartemisinins (5), 10beta-benzenesulfonyl-9-epidihydroartemisinin (9) and 10alpha-mercaptodihydroartemisinin (11), exhibit good growth inhibition activity against HUVEC proliferation at the concentration level of 1 muM. (C) 2003 Elsevier Ltd. All rights reserved.
Synthesis and antiangiogenic activity of thioacetal artemisinin derivatives
作者:Sangtae Oh、In Howa Jeong、Chan Mug Ahn、Woon-Seob Shin、Seokjoon Lee
DOI:10.1016/j.bmc.2004.05.013
日期:2004.7
Various thioacetal artemisinin derivatives can inhibit the angiogenesis and might be angiogenesis inhibitors. In particular, 10 alpha-phenylthiodihydroartemisinins (5), 10 beta-benzenesulfonyl-9-epi-dihydroartemisinin (11) and 10 alpha-mercaptodihydroartemisinin (13) exhibit strong growth inhibition activity against HUVEC proliferation. Compound 11 have a good inhibitiory activity upon HUVEC tube formation