ROCK INHIBITOR AND PREPARATION METHOD THEREFOR AND USE THEREOF
摘要:
The compound represented by formula (I), and racemates, stereoisomers, tautomers, isotopic markers, nitrogen oxides, solvates, polymorphs, metabolites, esters, pharmaceutically acceptable salts, or prodrugs thereof have ROCK inhibitory activity. The compound represented by formula (1) has good safety, good metabolic stability, and a low risk of potential hepatotoxicity. Further, the compound represented by formula (I) has a simple preparation method and is easy to purify, and therefore has good application prospects.
SUBSTITUTED PYRROLOPYRIMIDINE COMPOUNDS, COMPOSITIONS THEREOF, AND METHODS OF TREATMENT THEREWITH
申请人:Signal Pharmaceutical LLC
公开号:US20140200206A1
公开(公告)日:2014-07-17
Provided herein are Pyrrolopyrimidine Compounds having the following structure:
wherein R
1
, R
2
, R
3
, and L are as defined herein, compositions comprising an effective amount of a Pyrrolopyrimidine Compound, and methods for treating or preventing breast cancer, more particularly triple negative breast cancer, comprising administering an effective amount of such Pyrrolopyrimidine Compounds to a subject in need thereof.
The present invention provides PLK1 inhibitor compounds of formula I:
useful in the treatment or control of cell proliferative disorders, particularly oncological disorders. These compounds and formulations containing such compounds may be useful in the treatment or control of solid tumors, such as, for example, breast, colon, lung and prostate tumors and other oncological diseases such as non-Hodgkin's lymphomas. Also provided are intermediate compounds useful in the synthesis of compounds of formula I.
Lead Optimization of a Pyrrole-Based Dihydroorotate Dehydrogenase Inhibitor Series for the Treatment of Malaria
作者:Sreekanth Kokkonda、Xiaoyi Deng、Karen L. White、Farah El Mazouni、John White、David M. Shackleford、Kasiram Katneni、Francis C. K. Chiu、Helena Barker、Jenna McLaren、Elly Crighton、Gong Chen、Inigo Angulo-Barturen、Maria Belen Jimenez-Diaz、Santiago Ferrer、Leticia Huertas-Valentin、Maria Santos Martinez-Martinez、Maria Jose Lafuente-Monasterio、Rajesh Chittimalla、Shatrughan P. Shahi、Sergio Wittlin、David Waterson、Jeremy N. Burrows、Dave Matthews、Diana Tomchick、Pradipsinh K. Rathod、Michael J. Palmer、Susan A. Charman、Margaret A. Phillips
DOI:10.1021/acs.jmedchem.0c00311
日期:2020.5.14
Compounds with nanomolar potency versus Plasmodium DHODH and Plasmodium parasites were identified with good pharmacological properties. X-ray studies showed that the pyrroles bind an alternative enzyme conformation from 1 leading to improved species selectivity versus mammalianenzymes and equivalent activity on Plasmodium falciparum and Plasmodium vivax DHODH. The best lead DSM502 (37) showed in vivo efficacy