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7-取代的5-氨基-2-(2-呋喃基)吡唑并[4,3-e]-1,2,4-三唑并[1,5-c]嘧啶作为A2A腺苷受体拮抗剂:侧链修饰对活性和溶解性影响的研究

7-Substituted 5-amino-2-(2-furyl)pyrazolo[4,3-e]-1,2,4-triazolo[1,5-c]pyrimidines as A2A adenosine receptor antagonists: a study on the importance of modifications at the side chain on the activity and solubility.

作者信息

Baraldi Pier Giovanni, Cacciari Barbara, Romagnoli Romeo, Spalluto Giampiero, Monopoli Angela, Ongini Ennio, Varani Katia, Borea Pier Andrea

机构信息

Dipartimento di Scienze Farmaceutiche, Università degli Studi di Ferrara, Via Fossato di Mortara 17/19, I-44100 Ferrara, Italy.

出版信息

J Med Chem. 2002 Jan 3;45(1):115-26. doi: 10.1021/jm010924c.

Abstract

It was demonstrated in the early 1990s that adenosine exerts many physiological functions through the interaction with four different receptors, named A1, A2A, A2B, and A3. In the past few years, our group has been involved in the development of A2A antagonists, which led to the synthesis of SCH 58261 (1), the first potent and selective adenosine A2A antagonist, which has been widely used as a reference compound. In this paper, we present an extended series of pyrazolotriazolopyrimidines synthesized with the aim to investigate the influence of the substitutions on the pyrazole ring. The choice of the substituents was based on their capability to improve water solubility while retaining high affinity and selectivity at the human A2A adenosine receptor subtype. In this series, some structural characteristics that are important for activity, i.e., tricyclic structure, free amino group at 5-position, furan ring, and substituent at 7-position on the pyrazole moiety, have been maintained. We focused our attention on the nature of the phenyl ring substituent to improve water solubility. Following this strategy, we developed new compounds with good affinity and selectivity for A2A adenosine receptors, such as 8d (K(i) 0.12 nM; hA1/hA2A ratio = 1025; R(m) = 2.8), 8h (K(i) 0.22; hA1/hA2A ratio = 9818; R(m) = 3.4), 8i (K(i) 0.18 nM; hA1/hA2A ratio = 994; R(m) = 2.8), 8k (K(i) 0.13 nM; hA1/hA2A ratio = 4430; R(m) = 3.6), and 14b (K(i) 0.19 nM; hA1/hA2A ratio = 2273; R(m) = 2.7). All the new synthesized compounds have no significant interaction with either A2B or A3 receptor subtypes. This new series of compounds deeply enlightens some structural requirements to display high affinity and selectivity for the A2A adenosine receptor subtype, although our goal of identifying new compounds with increased water solubility was not completely achieved. On this basis, other strategies will be devised to improve this class of compounds with a profile that appears to be promising for treatment of neurodegenerative disorders, such as Parkinson's disease.

摘要

20世纪90年代初已证实,腺苷通过与四种不同的受体(命名为A1、A2A、A2B和A3)相互作用发挥多种生理功能。在过去几年中,我们团队一直致力于A2A拮抗剂的研发,这导致了SCH 58261(1)的合成,它是首个强效且选择性的腺苷A2A拮抗剂,已被广泛用作参考化合物。在本文中,我们展示了一系列扩展的吡唑并三唑并嘧啶,其合成目的是研究吡唑环上取代基的影响。取代基的选择基于它们在提高水溶性的同时,在人A2A腺苷受体亚型上保持高亲和力和选择性的能力。在这个系列中,一些对活性重要的结构特征,即三环结构、5位的游离氨基、呋喃环以及吡唑部分7位的取代基,得以保留。我们将注意力集中在苯环取代基的性质上以提高水溶性。按照这个策略,我们开发了对A2A腺苷受体具有良好亲和力和选择性的新化合物,如8d(抑制常数Ki为0.12 nM;人A1/人A2A比值 = 1025;相对亲和力比值R(m) = 2.8)、8h(Ki为0.22;人A1/人A2A比值 = 9818;R(m) = 3.4)、8i(Ki为0.18 nM;人A1/人A2A比值 = 994;R(m) = 2.8)、8k(Ki为0.13 nM;人A1/人A2A比值 = 4430;R(m) = 3.6)和14b(Ki为0.19 nM;人A1/人A2A比值 = 2273;R(m) = 2.7)。所有新合成的化合物与A2B或A3受体亚型均无显著相互作用。尽管我们识别出水溶性增加的新化合物这一目标并未完全实现,但这一系列新化合物深刻揭示了对A2A腺苷受体亚型表现出高亲和力和选择性的一些结构要求。在此基础上,将设计其他策略来改进这类化合物,其特性对于治疗神经退行性疾病(如帕金森病)似乎很有前景。

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