957054-30-7Relevant academic research and scientific papers
PHOSPHOINOSITIDE 3-KINASE INHIBITORS WITH ZINC BINDING MOIETY
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, (2016/10/07)
PROBLEM TO BE SOLVED: To provide phosphoinositide 3-kinase inhibitors with a zinc binding moiety. SOLUTION: There is provided a compound represented by formula (I) in the figure. (X is S, O or the like; Y is CH, N or the like; G1 is optionally substituted N or the like; R1 and R2 are each independently H or the like; C is a substituted heterocycle or the like; B is a linear alkyl or the like; Ra and Rb together with the nitrogen atom coupled to them are morpholino or the like; G2 is an indazole ring or the like; q, r and s are independently from 0 to 1, provided that at least one of them is 1; t is from 0 to 1; n is from 0 to 4; and p is from 0 to 2.) COPYRIGHT: (C)2016,JPOandINPIT
TREATMENT OF CANCERS HAVING K-RAS MUTATIONS
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, (2013/05/08)
The present invention provides a method of treating a cancer associated with a K-ras mutation in a subject in need thereof. The method comprises the steps of: (1) identifying a subject with a cancer associated with a K-ras mutation; and (2) administering to the subject (i) an inhibitor of PI3 kinase and (ii) an HDAC inhibitor, wherein the PI3 kinase inhibitor and the HDAC inhibitor are administered in amounts which together are therapeutically effective.
TREATMENT OF CANCERS HAVING K-RAS MUTATIONS
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, (2011/11/01)
The present invention provides a method of treating a cancer associated with a K- ras mutation in a subject in need thereof. The method comprises the steps of (1) identifying a subject with a cancer associated with a K-ras mutation; and (2) adminsiterign to the subject (i) an inhibitor of PI3 kinase and (ii) an HDAC inhibitor, wherein the PI3 kinase inhibitor and the HDAC inhibitor are administered in amounts which together are therapeutically effective.
The identification of 2-(1H-indazol-4-yl)-6-(4-methanesulfonyl-piperazin-1- ylmethyl)-4-morpholin-4-yl-thieno[3,2-d]pyrimidine (GDC-0941) as a potent, selective, orally bioavailable inhibitor of class I PI3 kinase for the treatment of cancer
Folkes, Adrian J.,Ahmadi, Khatereh,Alderton, Wendy K.,Alix, Sonia,Baker, Stewart J.,Box, Gary,Chuckowree, Irina S.,Clarke, Paul A.,Depledge, Paul,Eccles, Suzanne A.,Friedman, Lori S.,Hayes, Angela,Hancox, Timothy C.,Kugendradas, Arumugam,Lensun, Letitia,Moore, Pauline,Olivero, Alan G.,Pang, Jodie,Patel, Sonal,Pergl-Wilson, Giles H.,Raynaud, Florence I.,Robson, Anthony,Saghir, Nahid,Salphati, Laurent,Sohal, Sukhjit,Ultsch, Mark H.,Valenti, Melanie,Wallweber, Heidi J. A.,Nan, Chi Wan,Wiesmann, Christian,Workman, Paul,Zhyvoloup, Alexander,Zvelebil, Marketa J.,Shuttleworth, Stephen J.
experimental part, p. 5522 - 5532 (2009/09/06)
Phosphatidylinositol-3-kinase (PI3K) is an important target in cancer due to the deregulation of the PI3K/Akt signaling pathway in a wide variety of tumors. A series of thieno[3,2-d]pyrimidine derivatives were prepared and evaluated as inhibitors of PI3 kinase p110α. The synthesis, biological activity, and further profiling of these compounds are described. This work resulted in the discovery of 17, GDC-0941, which is a potent, selective, orally bioavailable inhibitor of PI3K and is currently being evaluated in human clinical trials for the treatment of cancer.
