Pharmaceutical Chemistry, School of Pharmacy, University of the Western Cape, Private Bag X17, Bellville, 7535, South Africa.
Department of Medical Biosciences, University of the Western Cape, Private Bag X17, Bellville, 7535, South Africa.
Eur J Med Chem. 2020 Oct 15;204:112617. doi: 10.1016/j.ejmech.2020.112617. Epub 2020 Jul 17.
The neuroprotective effects of closed polycyclic cage molecules such as NGP1-01, memantine and amantadine have been extensively explored. These effects are mostly linked to the antagonism of the N-methyl-d-aspartate (NMDA) receptor- and the blockage of voltage gated calcium channels (VGCC). The synthesis of structurally related open and rearranged cage derivatives has been studied in depth. However, very little is known on their neuroprotective effects. In this study, a series of open and rearranged polycyclic cage molecules containing a norbornane derived scaffold were synthesised and evaluated for cytotoxicity, neuroprotection and calcium blocking effects via the NMDA receptor and VGCC on neuroblastoma cells at a 10 μM concentration. All compounds showed negligible cytotoxicity and were able to significantly attenuate MPP-induced neurotoxicity between 26.07 ± 12.50% to 48.42 ± 0.76%, with compound 14 showing the best neuroprotective effect. In comparison to known NMDA receptor antagonists, all compounds demonstrated moderate to excellent calcium blocking effects of 26.50 ± 2.28 to 72.95 ± 3.38%. Docking studies suggest that these compounds are able to show significant NMDA receptor channel blocking ability since they bind in a comparable manner to the crystallographic pose of MK-801 inside the NMDAR ion channel. Some compounds were also able to attenuate calcium influx through VGCC channels between 21.28 ± 3.69% to 50.34 ± 7.67%. Compound 4 and 15 showed the highest inhibition of calcium influx at the VGCC and NMDA receptor, respectively. The compounds exhibiting good cytotoxicity-, neuroprotective- and calcium blocking profiles could potentially act as neuroprotective agents to clinically benefit people suffering from neurodegenerative disorders.
已广泛研究了封闭多环笼状分子(如 NGP1-01、美金刚和金刚烷胺)的神经保护作用。这些作用主要与 N-甲基-D-天冬氨酸(NMDA)受体拮抗和电压门控钙通道(VGCC)阻断有关。还深入研究了结构相关的开环和重排笼状衍生物的合成。然而,关于它们的神经保护作用知之甚少。在这项研究中,合成了一系列含有降冰片烷衍生支架的开环和重排多环笼状分子,并在 10 μM 浓度下通过 NMDA 受体和 VGCC 对神经母细胞瘤细胞的细胞毒性、神经保护和钙阻断作用进行了评估。所有化合物的细胞毒性都可以忽略不计,并且能够显著减轻 MPP 诱导的神经毒性,范围从 26.07±12.50%到 48.42±0.76%,化合物 14 表现出最佳的神经保护作用。与已知的 NMDA 受体拮抗剂相比,所有化合物均表现出中等至极好的钙阻断作用,范围为 26.50±2.28%至 72.95±3.38%。对接研究表明,这些化合物能够表现出显著的 NMDA 受体通道阻断能力,因为它们以类似于 MK-801 在 NMDAR 离子通道中的晶体构象的方式结合。一些化合物还能够减轻 VGCC 通道的钙内流,范围为 21.28±3.69%至 50.34±7.67%。化合物 4 和 15 分别在 VGCC 和 NMDA 受体中表现出最高的钙内流抑制作用。具有良好细胞毒性、神经保护和钙阻断谱的化合物可能具有神经保护作用,使患有神经退行性疾病的患者受益。