Indanylacetic Acid Derivatives Carrying 4-Thiazolyl-phenoxy Tail Groups, a New Class of Potent PPAR α/γ/δ Pan Agonists: Synthesis, Structure−Activity Relationship, and In Vivo Efficacy
作者:Joachim Rudolph、Libing Chen、Dyuti Majumdar、William H. Bullock、Michael Burns、Thomas Claus、Fernando E. Dela Cruz、Michelle Daly、Frederick J. Ehrgott、Jeffrey S. Johnson、James N. Livingston、Robert W. Schoenleber、Jeffrey Shapiro、Ling Yang、Manami Tsutsumi、Xin Ma
DOI:10.1021/jm061299k
日期:2007.3.1
group derivatives that led to a new class of potent PPAR pan agonists. While most of the tail group modifications imparted potent PPAR delta agonist activity, improvement of PPAR alpha and gamma activity required the introduction of new heterocyclic substituents that were not known in the PPAR literature. Systematic optimization led to the discovery of 4-thiazolyl-phenyl derivatives with potent PPAR
同时激活三种过氧化物酶体增殖物激活受体(PPAR)亚型α,γ和δ的化合物具有解决与糖尿病和代谢综合征相关的不良代谢和心血管疾病的潜力。我们最近确定了茚满基乙酸部分为可调节的PPAR激动剂头基。在这里我们报告了新型芳基尾基衍生物的合成和结构-活性关系(SAR)研究,该衍生物导致了一类新的强效PPAR泛激动剂。尽管大多数尾基修饰均具有强大的PPARδ激动剂活性,但PPARα和γ活性的提高要求引入新的杂环取代基,而这在PPAR文献中是未知的。系统的优化导致发现具有有效PPARα/γ/δ泛激动活性的4-噻唑基-苯基衍生物。与已知的PPARγ活化剂相比,该系列的主要候选物显示出优异的ADME特性和优异的治疗潜力,可通过有利地调节hApoA1小鼠和高脂血症仓鼠的脂质水平,同时使糖尿病啮齿动物模型中的葡萄糖水平正常化。