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α-芳基、N-烷基硝酮的合成、结构、理论和体外抗氧化/药理学性质,作为治疗脑缺血的潜在药物。

Synthesis, structure, theoretical and experimental in vitro antioxidant/pharmacological properties of α-aryl, N-alkyl nitrones, as potential agents for the treatment of cerebral ischemia.

机构信息

Laboratorio de Radicales Libres y Química Computacional, IQOG, CSIC, Madrid, Spain.

出版信息

Bioorg Med Chem. 2011 Jan 15;19(2):951-60. doi: 10.1016/j.bmc.2010.11.053. Epub 2010 Dec 7.

DOI:10.1016/j.bmc.2010.11.053
PMID:21190861
Abstract

The synthesis, structure, theoretical and experimental in vitro antioxidant properties using the DPPH, ORAC, and benzoic acid, as well as preliminary in vitro pharmacological activities of (Z)-α-aryl and heteroaryl N-alkyl-nitrones 6-15, 18, 19, 21, and 23, is reported. In the in vitro antioxidant activity, for the DPPH radical test, only nitrones bearing free phenol groups gave the best RSA (%) values, nitrones 13 and 14 showing the highest values in this assay. In the ORAC analysis, the most potent radical scavenger was nitrone indole 21, followed by the N-benzyl benzene-type nitrones 10 and 15. Interestingly enough, the archetypal nitrone 7 (PBN) gave a low RSA value (1.4%) in the DPPH test, or was inactive in the ORAC assay. Concerning the ability to scavenge the hydroxyl radical, all the nitrones studied proved active in this experiment, showing high values in the 94-97% range, the most potent being nitrone 14. The theoretical calculations for the prediction of the antioxidant power, and the potential of ionization confirm that nitrones 9 and 10 are among the best compounds in electron transfer processes, a result that is also in good agreement with the experimental values in the DPPH assay. The calculated energy values for the reaction of ROS (hydroxyl, peroxyl) with the nitrones predict that the most favourable adduct-spin will take place between nitrones 9, 10, and 21, a fact that would be in agreement with their experimentally observed scavenger ability. The in vitro pharmacological analysis showed that the neuroprotective profile of the target molecules was in general low, with values ranging from 0% to 18.7%, in human neuroblastoma cells stressed with a mixture of rotenone/oligomycin-A, being nitrones 18, and 6-8 the most potent, as they show values in the range 24-18.4%.

摘要

报告了(Z)-α-芳基和杂芳基 N-烷基-亚硝酮 6-15、18、19、21 和 23 的合成、结构、理论和体外抗氧化性能(使用 DPPH、ORAC 和苯甲酸),以及初步的体外药理学活性。在体外抗氧化活性中,对于 DPPH 自由基测试,只有带有游离酚基团的亚硝酮给出了最佳 RSA(%)值,亚硝酮 13 和 14 在该测定中显示出最高值。在 ORAC 分析中,最强的自由基清除剂是吲哚亚硝酮 21,其次是 N-苄基苯型亚硝酮 10 和 15。有趣的是,典型的亚硝酮 7(PBN)在 DPPH 测试中给出了低 RSA 值(1.4%),或者在 ORAC 测定中没有活性。关于清除羟基自由基的能力,所有研究的亚硝酮在该实验中均表现出活性,在 94-97%范围内显示出高值,最强的是亚硝酮 14。抗氧化能力的理论计算和电离潜力证实,亚硝酮 9 和 10 是电子转移过程中最好的化合物之一,这一结果也与 DPPH 测定中的实验值非常吻合。预测 ROS(羟基、过氧自由基)与亚硝酮反应的能量值表明,最有利的加成自旋将发生在亚硝酮 9、10 和 21 之间,这一事实与它们在实验中观察到的清除能力一致。体外药理学分析表明,目标分子的神经保护谱通常较低,范围为 0%至 18.7%,在受到鱼藤酮/寡霉素-A 混合物应激的人神经母细胞瘤细胞中,亚硝酮 18 和 6-8 是最有效的,因为它们的数值在 24-18.4%范围内。

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