首页> 美国卫生研究院文献>Molecules >Versatility of 7-Substituted Coumarin Molecules as Antimycobacterial Agents Neuronal Enzyme Inhibitors and Neuroprotective Agents
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Versatility of 7-Substituted Coumarin Molecules as Antimycobacterial Agents Neuronal Enzyme Inhibitors and Neuroprotective Agents

机译:7取代的香豆素分子作为抗分枝杆菌剂神经元酶抑制剂和神经保护剂的多功能性。

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摘要

A medium-throughput screen using Mycobacterium tuberculosis H37Rv was employed to screen an in-house library of structurally diverse compounds for antimycobacterial activity. In this initial screen, eleven 7-substituted coumarin derivatives with confirmed monoamine oxidase-B and cholinesterase inhibitory activities, demonstrated growth inhibition of more than 50% at 50 µM. This prompted further exploration of all the 7-substituted coumarins in our library. Four compounds showed promising MIC99 values of 8.31–29.70 µM and 44.15–57.17 µM on M. tuberculosis H37Rv in independent assays using GAST-Fe and 7H9+OADC media, respectively. These compounds were found to bind to albumin, which may explain the variations in MIC between the two assays. Preliminary data showed that they were able to maintain their activity in fluoroquinolone resistant mycobacteria. Structure-activity relationships indicated that structural modification on position 4 and/or 7 of the coumarin scaffold could direct the selectivity towards either the inhibition of neuronal enzymes or the antimycobacterial effect. Moderate cytotoxicities were observed for these compounds and slight selectivity towards mycobacteria was indicated. Further neuroprotective assays showed significant neuroprotection for selected compounds irrespective of their neuronal enzyme inhibitory properties. These coumarin molecules are thus interesting lead compounds that may provide insight into the design of new antimicrobacterial and neuroprotective agents.
机译:使用结核分枝杆菌H37Rv进行中通量筛选,以筛选内部结构多样的化合物库中的抗分枝杆菌活性。在此初始筛选中,有十一种7-取代的香豆素衍生物具有确定的单胺氧化酶B和胆碱酯酶抑制活性,在50 µM时显示出超过50%的生长抑制。这促使我们进一步探索我们图书馆中所有7-取代的香豆素。在使用GAST-Fe和7H9 + OADC介质进行的独立测定中,四种化合物在结核分枝杆菌H37Rv上的MIC99值分别为8.31–29.70 µM和44.15–57.17 µM。发现这些化合物与白蛋白结合,这可以解释两种测定之间MIC的变化。初步数据表明,它们能够在对氟喹诺酮类耐药的分枝杆菌中维持其活性。结构-活性关系表明,香豆素支架的4和/或7位上的结构修饰可以指导选择性抑制神经元酶或抗分枝杆菌作用。观察到这些化合物具有中等的细胞毒性,并且表明对分枝杆菌的选择性很小。进一步的神经保护性测定表明,所选化合物无论其神经元酶抑制特性如何,均具有显着的神经保护作用。因此,这些香豆素分子是有趣的先导化合物,可以为新型抗菌剂和神经保护剂的设计提供见识。

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