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Synthesis and Biological Evaluations of NO-Donating Oxa- and Aza-Pentacycloundecane Derivatives as Potential Neuroprotective Candidates

机译:NO加成的氧杂-和氮杂-五环十一烷衍生物作为潜在的神经保护候选物的合成及生物评价。

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摘要

In order to utilize the neuroprotective properties of polycyclic cage compounds, and explore the NO-donating ability of nitrophenyl groups, an array of compounds was synthesized where the different nitrophenyl groups were appended on oxa and aza-bridged cage derivatives. Biological evaluations of the compounds were done for cytotoxicity, neuroprotective abilities, the inhibition of N-methyl-d-aspartate (NMDA)-mediated Ca2+ influx, the inhibition of voltage-mediated Ca2+ influx, and S-nitrosylation abilities. All of the compounds showed low toxicity. With a few exceptions, most of the compounds displayed good neuroprotection and showed inhibitory activity for NMDA-mediated and voltage-gated calcium influx, ranging from high (>70%) to low (20–39%) inhibition. In the S-nitrosylation assay, the compounds with the nitro moiety as the NO-donating group exhibited low to good nitrosylation potency compared to the positive controls. From the biological evaluation of the tested compounds, it was not possible to obtain a simple correlation that could explain the results across all of the biological study domains. This can be ascribed to the independent processes evaluated in the different assays, which reiterate that neuroprotection is a result of multifactorial biochemical mechanisms and interactions. However, these results signify the important aspects of the pentacylcoundecylamine neuroprotectants across different biological study realms.
机译:为了利用多环笼化合物的神经保护特性,并探索硝基苯基的NO供体能力,合成了一系列化合物,其中不同的硝基苯基被附加在oxa和氮杂桥联的笼衍生物上。对该化合物进行了细胞毒性,神经保护能力,N-甲基-d-天冬氨酸(NMDA)介导的Ca 2 + 流入抑制,电压介导的Ca 抑制的生物学评估。 2 + 涌入和S-亚硝基化能力。所有化合物均显示出低毒性。除少数例外,大多数化合物对NMDA介导的和电压门控的钙流具有良好的神经保护作用,并表现出抑制活性,抑制程度从高(> 70%)到低(20-39%)。在S-亚硝基化测定中,与阳性对照相比,具有硝基部分作为NO-供体基团的化合物表现出低至良好的亚硝基化能力。从被测化合物的生物学评估中,不可能获得一个简单的相关性来解释所有生物学研究领域的结果。这可以归因于在不同测定法中评估的独立过程,这重申了神经保护作用是多因素生化机制和相互作用的结果。然而,这些结果表明了戊烯二氰胺神经保护剂在不同生物学研究领域中的重要方面。

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