化学
耐受性
效力
药代动力学
立体化学
甲酰胺
药理学
体内
激酶
组合化学
体外
不利影响
生物化学
医学
生物技术
生物
作者
Qi Chao,Kelly G. Sprankle,Robert M. Grotzfeld,Andiliy Lai,Todd A. Carter,Anne Marie Velasco,Ruwanthi N. Gunawardane,Merryl Cramer,Michael F. Gardner,Joyce James,Patrick P. Zarrinkar,Hitesh Patel,Shripad S. Bhagwat
摘要
Treatment of AML patients with small molecule inhibitors of FLT3 kinase has been explored as a viable therapy. However, these agents are found to be less than optimal for the treatment of AML because of lack of sufficient potency or suboptimal oral pharmacokinetics (PK) or lack of adequate tolerability at efficacious doses. We have developed a series of extremely potent and highly selective FLT3 inhibitors with good oral PK properties. The first series of compounds represented by 1 (AB530) was found to be a potent and selective FLT3 kinase inhibitor with good PK properties. The aqueous solubility and oral PK properties at higher doses in rodents were found to be less than optimal for clinical development. A novel series of compounds were designed lacking the carboxamide group of 1 with an added water solubilizing group. Compound 7 (AC220) was identified from this series to be the most potent and selective FLT3 inhibitor with good pharmaceutical properties, excellent PK profile, and superior efficacy and tolerability in tumor xenograft models. Compound 7 has demonstrated a desirable safety and PK profile in humans and is currently in phase II clinical trials.
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