Toward Highly Potent Cancer Agents by Modulating the C-2 Group of the Arylthioindole Class of Tubulin Polymerization Inhibitors
摘要:
New arylthioindole derivatives having different cyclic substituents at position 2 of the indole were synthesized as anticancer agents. Several compounds inhibited tubulin polymerization at submicromolar concentration and inhibited cell growth at low nanomolar concentrations. Compounds 18 and 57 were superior to the previously synthesized S. Compound 18 was exceptionally potent as an inhibitor of cell growth: it showed IC50 = 1.0 nM in MCF-7 cells, and it was uniformly active in the whole panel of cancer cells and superior to colchicine and combretastatin A-4. Compounds 18, 20, 55, and 57 were notably more potent than vinorelbine, vinblastine, and paclitaxel in the NCl/ADR-RES and Messa/Dx5 cell lines, which overexpress P-glycoprotein. Compounds 18 and 57 showed initial vascular disrupting effects in a tumor model of liver rhabdomyosarcomas at 15 mg/kg intravenous dosage. Derivative 18 showed water solubility and higher metabolic stability than 5 in human liver microsomes.
Toward Highly Potent Cancer Agents by Modulating the C-2 Group of the Arylthioindole Class of Tubulin Polymerization Inhibitors
作者:Giuseppe La Regina、Ruoli Bai、Whilelmina Maria Rensen、Erica Di Cesare、Antonio Coluccia、Francesco Piscitelli、Valeria Famiglini、Alessia Reggio、Marianna Nalli、Sveva Pelliccia、Eleonora Da Pozzo、Barbara Costa、Ilaria Granata、Amalia Porta、Bruno Maresca、Alessandra Soriani、Maria Luisa Iannitto、Angela Santoni、Junjie Li、Marlein Miranda Cona、Feng Chen、Yicheng Ni、Andrea Brancale、Giulio Dondio、Stefania Vultaggio、Mario Varasi、Ciro Mercurio、Claudia Martini、Ernest Hamel、Patrizia Lavia、Ettore Novellino、Romano Silvestri
DOI:10.1021/jm3013097
日期:2013.1.10
New arylthioindole derivatives having different cyclic substituents at position 2 of the indole were synthesized as anticancer agents. Several compounds inhibited tubulin polymerization at submicromolar concentration and inhibited cell growth at low nanomolar concentrations. Compounds 18 and 57 were superior to the previously synthesized S. Compound 18 was exceptionally potent as an inhibitor of cell growth: it showed IC50 = 1.0 nM in MCF-7 cells, and it was uniformly active in the whole panel of cancer cells and superior to colchicine and combretastatin A-4. Compounds 18, 20, 55, and 57 were notably more potent than vinorelbine, vinblastine, and paclitaxel in the NCl/ADR-RES and Messa/Dx5 cell lines, which overexpress P-glycoprotein. Compounds 18 and 57 showed initial vascular disrupting effects in a tumor model of liver rhabdomyosarcomas at 15 mg/kg intravenous dosage. Derivative 18 showed water solubility and higher metabolic stability than 5 in human liver microsomes.
Iridium-Catalyzed α-Selective Arylation of Styrenes by Dual C−H Functionalization
作者:Phillippa Cooper、Giacomo E. M. Crisenza、Lyman J. Feron、John F. Bower
DOI:10.1002/anie.201808299
日期:2018.10.22
An IrI -system modified with a ferrocene derived bisphosphine ligand promotes α-selectivearylation of styrenes by dualC-Hfunctionalization. These studies offer a regioisomeric alternative to the Pd-catalyzed Fujiwara-Moritani reaction.
用二茂铁衍生的双膦配体修饰的 IrI 系统通过双 CH 官能化促进苯乙烯的 α-选择性芳基化。这些研究为 Pd 催化的 Fujiwara-Moritani 反应提供了一种区域异构替代方案。