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首页> 外文期刊>Bioorganic and medicinal chemistry >Discovery of simplified N2-substituted pyrazolo[3,4-d]pyrimidine derivatives as novel adenosine receptor antagonists: Efficient synthetic approaches, biological evaluations and molecular docking studies
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Discovery of simplified N2-substituted pyrazolo[3,4-d]pyrimidine derivatives as novel adenosine receptor antagonists: Efficient synthetic approaches, biological evaluations and molecular docking studies

机译:作为新型腺苷受体拮抗剂的简体N2取代的吡唑唑[3,4-D]嘧啶衍生物的发现:有效的合成方法,生物学评估和分子对接研究

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In the present study, a molecular simplification approach was employed to design novel bicyclic pyrazolo[3,4-d]pyrimidine (PP) derivatives from tricyclic pyrazolo[4,3-e]-1,2,4-triazolo-[1,5-c]pyrimidines (PTP) as promising human A3 adenosine receptor (hA3AR) antagonists. All the target compounds were synthesized using novel and efficient synthetic schemes and the structure-activity relationship studies of these PPs were explored through the synthesis of a series of PTP analogues with various substituents. Substituents with different lipophilicity and steric hindrance (e.g., alkyl and aryl-alkyl) functions were introduced at N2 position of the pyrazole ring, while acyl groups with different electronic properties were introduced at C 6 position of the bicyclic nucleus to probe both electronic and positional effects. Most of the synthesized derivatives of the PP series presented good affinity at the hA3AR, as indicated by the low micromolar range of Ki values and among them, compound 63 with N 2 neopentyl substituents showed most potent hA3AR affinity with Ki value of 0.9 μM and high selectivity (hA 1AR/hA3AR = 111 & hA2AAR/hA 3AR = 111) towards other adenosine receptor subtypes. Interestingly, small isopropyl groups at N2 position displayed high affinity at another receptor subtype (hA2AAR, e.g., compound 55, with Ki hA2AAR = 0.8 μM), while they were less favorable at the hA3AR. Molecular docking analysis was also performed to predict the possible binding mode of target compounds inside the hA3AR and hA2AAR. Overall, PP derivatives represent promising starting points for new AR antagonists.
机译:在本研究中,使用分子简化方法来设计来自三环吡唑的新型双环吡唑[3,4-D]嘧啶(PP)衍生物[4,3-e] -1,2,4-三唑-[1, 5-C]嘧啶(PTP)作为有前途的人A3腺苷受体(HA3AR)拮抗剂。使用新颖的和有效的合成方案合成所有目标化合物,通过合成一系列具有各种取代基的PTP类似物来探索这些PPS的结构 - 活性关系研究。在吡唑环的N2位置引入具有不同亲脂性和空间障碍(例如,烷基和芳基 - 烷基)的取代基,而具有不同电子性质的酰基在双环核的位置引入探针电子和位置效果。 PP系列的大多数合成衍生物在HA3AR上呈现良好的亲和力,如通过低微摩拉范围的Ki值和它们所示,具有N 2新戊基取代基的化合物63显示出最有效的HA3AR亲和力,Ki值为0.9μm和高选择性(HA 1AR / HA3AR =& 111& HA2AAR / HA 3AR =& 111)朝向其他腺苷受体亚型。有趣的是,在N 2位置的小异丙基位于另一个受体亚型(HA2AAR,例如化合物55,用Ki HA2AAR =0.8μm)显示出高亲和力,同时它们在HA3AR上不太有利。还进行了分子对接分析以预测HA3AR和HA2AAR内的目标化合物的可能结合模式。总体而言,PP衍生品代表新AR拮抗剂的有希望的起点。

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