227311-99-1Relevant academic research and scientific papers
Tyrosine Kinase Inhibitors. 20. Optimization of Substituted Quinazoline and Pyrido[3,4-d]pyrimidine Derivatives as Orally Active, Irreversible Inhibitors of the Epidermal Growth Factor Receptor Family
Smaill, Jeff B.,Gonzales, Andrea J.,Spicer, Julie A.,Lee, Helen,Reed, Jessica E.,Sexton, Karen,Althaus, Irene W.,Zhu, Tong,Black, Shannon L.,Blaser, Adrian,Denny, William A.,Ellis, Paul A.,Fakhoury, Stephen,Harvey, Patricia J.,Hook, Ken,McCarthy, Florence O. J.,Palmer, Brian D.,Rivault, Freddy,Schlosser, Kevin,Ellis, Teresa,Thompson, Andrew M.,Trachet, Erin,Winters, R. Thomas,Tecle, Haile,Bridges, Alexander
, p. 8103 - 8124 (2016/10/06)
Structure-activity relationships for inhibition of erbB1, erbB2, and erbB4 were determined for a series of quinazoline- and pyrido[3,4-d]pyrimidine-based analogues of the irreversible pan-erbB inhibitor, canertinib. Cyclic amine bearing crotonamides were determined to provide rapid inhibition of cellular erbB1 autophosphorylation and good metabolic stability in liver microsome and hepatocyte assays. The influence of 4-anilino substitution on pan-erbB inhibitory potency was investigated. Several anilines were identified as providing potent, reversible pan-erbB inhibition. Optimum 4- and 6-substituents with known 7-substituents provided preferred irreversible inhibitors for pharmacodynamic testing in vivo. Quinazoline 54 and pyrido[3,4-d]pyrimidine 71 were identified as clearly superior to canertinib. Both compounds possess a piperidinyl crotonamide Michael acceptor and a 3-chloro-4-fluoroaniline, indicating these as optimized 6- and 4-substituents, respectively. Pharmacokinetic comparison of compounds 54 and 71 across three species selected compound 54 as the preferred candidate. Compound 54 (PF-00299804) has been assigned the nomenclature of dacomitinib and is currently under clinical evaluation.
Tyrosine kinase inhibitors. 15. 4-(Phenylamino)quinazoline and 4- (phenylamino)pyrido[d]pyrimidine acrylamides as irreversible inhibitors of the ATP binding site of the epidermal growth factor receptor
Smaill, Jeff B.,Palmer, Brian D.,Rewcastle, Gordon W.,Denny, William A.,McNamara, Dennis J.,Dobrusin, Ellen M.,Bridges, Alexander J.,Zhou, Hairong,Showalter, H. D. Hollis,Winters, R. Thomas,Leopold, Wilbur R.,Fry, David W.,Nelson, James M.,Slintak, Veronika,Elliot, William L.,Roberts, Billy J.,Vincent, Patrick W.,Patmore, Sandra J.
, p. 1803 - 1815 (2007/10/03)
A series of 6- and 7-acrylamide derivatives of the 4- (phenylamino)quinazoline and -pyridopyrimidine classes of epidermal growth factor receptor (EGFR) inhibitors were prepared from the corresponding amino compounds by reaction with either acryloyl chloride/base or acrylic acid/1- (3-dimethylaminopropyl)-3-ethylcarbodiimide hydrochloride. All of the 6- acrylamides, but only the parent quinazoline 7-acrylamide, were irreversible inhibitors of the isolated enzyme, confirming that the former are better- positioned, when bound to the enzyme, to react with the critical cysteine- 773. Quinazoline, pyrido[3,4-d]pyrimidine, and pyrido[3,2-d]pyrimidine 6- acrylamides were all irreversible inhibitors and showed similar high potencies in the enzyme assay (likely due to titration of the available enzyme). However the pyrido[3,2-d]pyrimidine analogues were 2-6-fold less potent than the others in a cellular autophosphorylation assay for EGFR in A431 cells. The quinazolines were generally less potent overall toward inhibition of heregulin-stimulated autophosphorylation of erbB2 (in MDA-MB- 453-cells), whereas the pyridopyrimidines were equipotent. Selected compounds were evaluated in A431 epidermoid and H125 non-small-cell lung cancer human tumor xenografts. The compounds showed better activity when given orally than intraperitoneally. All showed significant tumor growth inhibition (stasis) over a dose range. The poor aqueous solubility of the compounds was a drawback, requiring formulation as fine particulate emulsions.
