Structure-activity relationships, biological evaluation and structural studies of novel pyrrolonaphthoxazepines as antitumor agents
作者:Margherita Brindisi、Cristina Ulivieri、Gloria Alfano、Sandra Gemma、Francisco de Asís Balaguer、Tuhina Khan、Alessandro Grillo、Giulia Chemi、Grégory Menchon、Andrea E. Prota、Natacha Olieric、Daniel Lucena-Agell、Isabel Barasoain、J. Fernando Diaz、Angela Nebbioso、Mariarosaria Conte、Ludovica Lopresti、Stefania Magnano、Rebecca Amet、Paula Kinsella、Daniela M. Zisterer、Ola Ibrahim、Jeff O'Sullivan、Lucia Morbidelli、Roberta Spaccapelo、Cosima Baldari、Stefania Butini、Ettore Novellino、Giuseppe Campiani、Lucia Altucci、Michel O. Steinmetz、Simone Brogi
DOI:10.1016/j.ejmech.2018.11.004
日期:2019.1
efforts we developed improved pyrrolonaphthoxazepines antitumoragents and their mode of action at the molecular level was elucidated. Compound 6j, one of the most potent analogues, was confirmed by X-ray as a colchicine-site MTA. A comprehensive structural investigation was performed for a complete elucidation of the structure-activityrelationships. Selected pyrrolonaphthoxazepines were evaluated for
Small molecules inhibit STAT3 activation, autophagy, and cancer cell anchorage-independent growth
作者:Donghui Zhou、Maya Z. Springer、David Xu、Degang Liu、Andy Hudmon、Kay F. Macleod、Samy O. Meroueh
DOI:10.1016/j.bmc.2017.03.048
日期:2017.6
and MDA-MB-468 breast cancercells. The effect of 6 on BMX prompted us to evaluate its effect on STAT3 phosphorylation and DNA binding. The compound's inhibition of cell growth led to measurements of survivin, Bcl-XL, p21WAF1/CIP1, and cyclin A2 levels. Finally, LC3B-II levels were quantified following treatment of cells with 6 to determine whether the compound affected autophagy, a process that is known
The present invention is related to substituted amine derivatives notably for use as pharmaceutically active compounds, as well as to pharmaceutical formulations containing such amine derivatives of formula (I). Said substituted amine derivatives are efficient modulators, in particular inhibitors, of the Bax function and/or activation. The present invention is furthermore related to novel substituted amine derivatives as well as methods of their preparation.
Novel N-Alkyl-4-(6-fluoro-1H-indol-3-yl)benzamide Derivatives as Anticancer Agents: Design, Synthesis,
Biological Evaluation, and Molecular Docking Study
作者:K. K. Vallri、P. V. V. S. Nagaraju、I. V. K. Viswanath、R. V. Singh
DOI:10.1134/s1070428020030252
日期:2020.3
AbstractA number of novel N-alkyl-4-(6-fluoro-1H-indol-3-yl)benzamide derivatives were synthesized and characterized with modern spectroscopic techniques (NMR, IR, and MS). The synthesized compounds were assessed for their cytotoxic activities against two cancer cell lines, namely HeLa (cervical cancer) and MCF-7 (breast cancer), by MTT assay. The results showed that the compounds with 3-fluorobenzyl
[EN] ARGININE METHYLTRANSFERASE INHIBITORS AND USES THEREOF<br/>[FR] INHIBITEURS D'ARGININE MÉTHYLTRANSFÉRASE ET LEURS UTILISATIONS
申请人:EPIZYME INC
公开号:WO2016044585A1
公开(公告)日:2016-03-24
Described herein are compounds of Formula (I), pharmaceutically acceptable salts thereof, and pharmaceutical compositions thereof. Compounds described herein are useful for inhibiting arginine methyltransferase activity. Methods of using the compounds for treating arginine methyltransferase-mediated disorders are also described.