School of Pharmacy, Faculty of Natural Sciences, University of the Western Cape, Cape Town, Bellville 7550, South Africa.
DST/NRF Centre of Excellence in Biomedical Tuberculosis Research, SA MRC Centre for Tuberculosis Research, Division of Molecular Biology and Human Genetics, Faculty of Medicine and Health Sciences, University of Stellenbosch, Cape Town, Tygerberg 7505, South Africa.
Molecules. 2017 Sep 30;22(10):1644. doi: 10.3390/molecules22101644.
A medium-throughput screen using 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 MIC values of 8.31-29.70 µM and 44.15-57.17 µM on 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.
采用 H37Rv 进行了高通量筛选,以筛选结构多样的化合物库中的抗分枝杆菌活性。在该初步筛选中,11 种 7 位取代香豆素衍生物具有确认的单胺氧化酶-B 和胆碱酯酶抑制活性,在 50μM 时显示出超过 50%的生长抑制。这促使我们进一步探索库中所有的 7 位取代香豆素。四种化合物在 GAST-Fe 和 7H9+OADC 培养基中独立测定时,在 H37Rv 上的 MIC 值分别为 8.31-29.70μM 和 44.15-57.17μM,具有很大的前景。这些化合物被发现与白蛋白结合,这可能解释了两种测定方法中 MIC 的差异。初步数据表明,它们能够在氟喹诺酮耐药分枝杆菌中保持活性。构效关系表明,香豆素骨架的 4 位和/或 7 位的结构修饰可以使选择性针对神经元酶的抑制或抗分枝杆菌作用。这些化合物表现出中等的细胞毒性,并显示出对分枝杆菌的轻微选择性。进一步的神经保护测定表明,无论所选化合物是否具有神经元酶抑制特性,均可对其进行显著的神经保护。因此,这些香豆素分子是有趣的先导化合物,可能为设计新型抗菌和神经保护剂提供思路。