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SAR Studies on Truxillic Acid Mono Esters as a New Class of Antinociceptive Agents Targeting Fatty Acid Binding Proteins

机译:特鲁西林酸单酯作为针对脂肪酸结合蛋白的新型抗伤害药的SAR研究

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摘要

Fatty acid binding proteins (FABPs) serve as critical modulators of endocannabinoid signaling by facilitating the intracellular transport of anandamide and whose inhibition potentiates anandamide signaling. Our previous work has identified a novel small-molecule FABP inhibitor, α-truxillic acid 1-naphthyl monoester (SB-FI-26, >3) that has shown efficacy as an antinociceptive and anti-inflammatory agent in rodent models. In the present work, we have performed an extensive SAR study on a series of >3-analogs as novel FABP inhibitors based on computer-aided inhibitor drug design and docking analysis, chemical synthesis and biological evaluations. The prediction of binding affinity of these analogs to target FABP3, 5 and 7 isoforms was performed using the AutoDock 4.2 program, using the recently determined co-crystal structures of >3 with FABP5 and FABP7. The compounds with high docking scores were synthesized and evaluated for their activities using a fluorescence displacement assay against FABP3, 5 and 7. During lead optimization, compound >3l emerged as a promising compound with the Ki value of 0.21 μM for FABP 5, 4-fold more potent than >3 (Ki, 0.81 μM). Nine compounds exhibit similar or better binding affinity than >3, including compounds >4b (Ki, 0.55 μM) and >4e (Ki, 0.68 μM). Twelve compounds are selective for FABP5 and 7 with >10 μM Ki values for FABP3, indicating a safe profile to avoid potential cardiotoxicity concerns. Compounds >4f, >4j and >4k showed excellent selectivity for FABP5 and would serve as other new lead compounds. Compound >3a possessed high affinity and high selectivity for FABP7. Compounds with moderate to high affinity for FABP5 displayed antinociceptive effects in mice while compounds with low FABP5 affinity lacked in vivo efficacy. In vivo pain model study in mice revealed that exceeding hydrophobicity significantly affects the efficacy. Thus, among the compounds with high affinity to FABP5 in vitro, the compounds with moderate hydrophobicity were identified as promising new lead compounds for the next round of optimization, including compounds >4b and >4j. For select cases, computational analysis of the observed SAR, especially the selectivity of new inhibitors to particular FABP isoforms, by comparing docking poses, interaction map, and docking energy scores has provided useful insights.
机译:脂肪酸结合蛋白(FABP)通过促进Anandamide在细胞内的运输而成为内源性大麻素信号传导的关键调节剂,其抑制作用增强了Anandamide信号传导。我们以前的工作已经确定了一种新颖的小分子FABP抑制剂,α-truxillicacid 1-萘基单酯(SB-FI-26,> 3 ),该药物在人体中具有抗伤害感受和消炎作用。啮齿动物模型。在目前的工作中,我们基于计算机辅助抑制剂药物设计和对接分析,化学合成和生物学评估,对作为新型FABP抑制剂的一系列> 3 类似物进行了广泛的SAR研究。使用AutoDock 4.2程序,使用最近确定的> 3 与FABP5和FABP7的共晶体结构,对这些类似物与目标FABP3、5和7同种型的结合亲和力进行了预测。合成了具有高对接分数的化合物,并使用针对FABP3、5和7的荧光置换试验评估了其活性。在优化前导期间,化合物> 3l 成为有前途的化合物,Ki值为0.21μM FABP 5的效力比> 3 (Ki,0.81μM)高4倍。九种化合物具有比> 3 相似或更好的结合亲和力,包括化合物> 4b (Ki,0.55μM)和> 4e (Ki,0.68μM)。十二种化合物对FABP5和7具有选择性,FABP3的Ki值> 10μM,表明安全,避免了潜在的心脏毒性问题。化合物> 4f ,> 4j 和> 4k 对FABP5表现出优异的选择性,并可以用作其他新的先导化合物。化合物> 3a 对FABP7具有高亲和力和高选择性。对FABP5具有中等至高亲和力的化合物在小鼠中显示出抗伤害作用,而具有低FABP5亲和力的化合物则缺乏体内功效。在小鼠体内进行的疼痛模型研究表明,超过疏水性会显着影响疗效。因此,在体外对FABP5具有高亲和力的化合物中,具有中等疏水性的化合物被确定为有望用于下一轮优化的新的先导化合物,包括化合物> 4b 和> 4j 。对于特定情况,通过比较对接位姿,相互作用图和对接能值,对观察到的SAR进行计算分析,尤其是新抑制剂对特定FABP亚型的选择性,提供了有用的见解。

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