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新型具有 PPARγ 活性γ-分泌酶调节剂的设计、合成与生物评价。

Design, synthesis, and biological evaluation of a novel class of gamma-secretase modulators with PPARgamma activity.

机构信息

Institute of Pharmaceutical Chemistry, ZAFES/LiFF/Goethe University Frankfurt, Max-von-Laue-Strasse 9, D-60438 Frankfurt am Main, Germany.

出版信息

J Med Chem. 2010 Jun 24;53(12):4691-700. doi: 10.1021/jm1003073.

Abstract

We present a novel class of dual modulators of gamma-secretase and peroxisome proliferator-activated receptor gamma (PPARgamma) based on the structure of 2-(bis(phenethoxy)pyrimidine-2-ylthio)hexanoic acid 8 (IC(50)(Abeta42) = 22.8 microM, EC(50)(PPARgamma) = 8.3 microM). The modulation of both targets with approved drugs (i.e., amyloid-beta 42 (Abeta42)-lowering NSAIDs for gamma-secretase and glitazones for PPARgamma) has demonstrated beneficial effects in in vitro and in vivo models of Alzheimer's disease (AD). However, although NSAIDs and PPARgamma agonists share similar structural features, no druglike compounds with dual activities as gamma-secretase modulators (GSMs) and PPARgamma agonists have been designed so far. On the basis of our initial lead structure 8, we present the structure-activity relationships (SARs) of broad structural variations. A significant improvement was reached by the introduction of p-trifluoromethyl substituents at the phenyl residues yielding compound 16 (IC(50)(Abeta42) = 6.0 microM, EC(50)(PPARgamma) = 11.0 microM) and the replacement of the two phenyl residues of 8 by cyclohexyl yielding compound 22 (IC(50)(Abeta42) = 5.1 microM, EC(50)(PPARgamma) = 6.6 microM).

摘要

我们提出了一类新型的γ-分泌酶和过氧化物酶体增殖物激活受体γ(PPARγ)双重调节剂,基于 2-(双(苯乙氧基)嘧啶-2-基硫)己酸 8 的结构(IC50(Abeta42)=22.8μM,EC50(PPARγ)=8.3μM)。用已批准的药物(即,用于γ-分泌酶的降低 Abeta42 的非甾体抗炎药和用于 PPARγ的噻唑烷二酮类药物)调节这两个靶点,已在阿尔茨海默病(AD)的体外和体内模型中显示出有益的效果。然而,尽管 NSAIDs 和 PPARγ激动剂具有相似的结构特征,但迄今为止尚未设计出具有双重作为γ-分泌酶调节剂(GSMs)和 PPARγ激动剂的活性的类似药物的化合物。基于我们最初的先导化合物 8,我们提出了广泛结构变化的构效关系(SARs)。通过在苯环上引入 p-三氟甲基取代基得到化合物 16(IC50(Abeta42)=6.0μM,EC50(PPARγ)=11.0μM),并取代 8 的两个苯环得到化合物 22(IC50(Abeta42)=5.1μM,EC50(PPARγ)=6.6μM),这显著改善了活性。

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