[EN] PYRROLOPYRIDINEAMINO DERIVATIVES AS MPS1 INHIBITORS<br/>[FR] DÉRIVÉS PYRROLOPYRIDINEAMINO EN TANT QU'INHIBITEURS DE MPS1
申请人:CANCER REC TECH LTD
公开号:WO2012123745A1
公开(公告)日:2012-09-20
The present invention relates to the use of certain pyrrolopyridineamino derivatives (hereinafter referred to as "PPA derivatives"), particularly 1H-pyrrolo[3,2-c]pyridine-6- amino derivatives, to inhibit the spindle checkpoint function of Monospindle 1 (Mps1 – also known as TTK) kinases either directly or indirectly via interaction with the Mps kinase itself. In particular, the present invention relates to PPA derivatives for use as therapeutic agents for the treatment and/or prevention of proliferative diseases, such as cancer. The present invention also relates to processes for the preparation of the PPA derivatives, and pharmaceutical compositions comprising them. Formula (I)
PYRROLOPYRIDINEAMINO DERIVATIVES AS MPS1 INHIBITORS
申请人:Bavetsias Vassilios
公开号:US20130345181A1
公开(公告)日:2013-12-26
The present invention relates to the use of certain pyrrolopyridineamino derivatives (hereinafter referred to as “PPA derivatives”), particularly 1H-pyrrolo[3,2-c]pyridine-6-amino derivatives, to inhibit the spindle checkpoint function of Monospindle 1 (Mps1—also known as TTK) kinases either directly or indirectly via interaction with the Mps kinase itself. In particular, the present invention relates to PPA derivatives for use as therapeutic agents for the treatment and/or prevention of proliferative diseases, such as cancer. The present invention also relates to processes for the preparation of the PPA derivatives, and pharmaceutical compositions comprising them. Formula (I)
Pyrrolopyridineamino derivatives as MPS1 inhibitors
申请人:Bavetsias Vassilios
公开号:US09371319B2
公开(公告)日:2016-06-21
The present invention relates to the use of certain pyrrolopyridineamino derivatives (hereinafter referred to as “PPA derivatives”), particularly 1H-pyrrolo[3,2-c]pyridine-6-amino derivatives, to inhibit the spindle checkpoint function of Monospindle 1 (Mps1—also known as TTK) kinases either directly or indirectly via interaction with the Mps kinase itself. In particular, the present invention relates to PPA derivatives for use as therapeutic agents for the treatment and/or prevention of proliferative diseases, such as cancer. The present invention also relates to processes for the preparation of the PPA derivatives, and pharmaceutical compositions comprising them. Formula (I)
Structure-Based Design of Orally Bioavailable 1<i>H</i>-Pyrrolo[3,2-<i>c</i>]pyridine Inhibitors of Mitotic Kinase Monopolar Spindle 1 (MPS1)
作者:Sébastien Naud、Isaac M. Westwood、Amir Faisal、Peter Sheldrake、Vassilios Bavetsias、Butrus Atrash、Kwai-Ming J. Cheung、Manjuan Liu、Angela Hayes、Jessica Schmitt、Amy Wood、Vanessa Choi、Kathy Boxall、Grace Mak、Mark Gurden、Melanie Valenti、Alexis de Haven Brandon、Alan Henley、Ross Baker、Craig McAndrew、Berry Matijssen、Rosemary Burke、Swen Hoelder、Suzanne A. Eccles、Florence I. Raynaud、Spiros Linardopoulos、Rob L. M. van Montfort、Julian Blagg
DOI:10.1021/jm401395s
日期:2013.12.27
The protein kinase MPS1 is a crucial component of the spindle assembly checkpoint signal and is aberrantly over-expressed in many human cancers. MPS1 is one of the top 25 genes overexpressed in tumors with chromosomal instability and aneuploidy. PTEN-deficient breast tumor cells are particularly dependent upon MPS1 for their survival, making it a target of significant interest in oncology. We report the discovery and optimization of potent and selective MPS1 inhibitors based on the 1H-pyrrolo[3,2-c]pyridine scaffold, guided by structure-based design and cellular characterization of MPS1 inhibition, leading to 65 (CCT251455). This potent and selective chemical tool stabilizes an inactive conformation of MPS1 with the activation loop ordered in a manner incompatible with ATP and substrate-peptide binding; it displays a favorable oral pharmacokinetic profile, shows dose-dependent inhibition of MPS1 in an HCT116 human tumor xenograft model, and is an attractive tool compound to elucidate further the therapeutic potential of MPS1 inhibition.