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JL 13是氯氮平的潜在后续药物,对氧化现象不太敏感。

JL 13, a potential successor to clozapine, is less sensitive to oxidative phenomena.

作者信息

Liégeois J F, Mouithys-Mickalad A, Bruhwyler J, Delarge J, Petit C, Kauffmann J M, Lamy M

机构信息

Laboratory of Medicinal Chemistry, University of Liège F1, Belgium.

出版信息

Biochem Biophys Res Commun. 1997 Sep 8;238(1):252-5. doi: 10.1006/bbrc.1997.7270.

Abstract

The oxidation behaviour of JL 13, a promising antipsychotic, was investigated in comparison with clozapine and loxapine, by measuring their direct "radical scavenging" abilities and their efficacies in inhibiting the lipid peroxidation. In the lipid peroxidation system, the reactivity of these compounds with free radicals produced by gamma-irradiation of linoleic acid may be presented as follows: JL 13 = loxapine < clozapine. In two enzymatic systems (HRP/GSH and HRP/H2O2/ GSH) which generate the thiyl free radicals, clozapine produces a strong enhancement of the thiyl-radical EPR signal intensity while JL 13 and loxapine exhibit no or minimal effect on this signal. The redox potential values for the three derivatives confirm the spectro-photometric and EPR results. Following this study, we show that JL 13, although presenting a preclinical clozapine-like profile, appears less sensitive to oxidation than clozapine.

摘要

通过测量 JL 13(一种有前景的抗精神病药物)、氯氮平和洛沙平的直接“自由基清除”能力及其抑制脂质过氧化的功效,对其氧化行为进行了研究。在脂质过氧化体系中,这些化合物与亚油酸经γ射线辐照产生的自由基的反应活性如下:JL 13 = 洛沙平 < 氯氮平。在两个产生硫自由基的酶体系(HRP/GSH 和 HRP/H₂O₂/GSH)中,氯氮平能显著增强硫自由基的 EPR 信号强度,而 JL 13 和洛沙平对该信号无影响或影响极小。三种衍生物的氧化还原电位值证实了分光光度法和 EPR 的结果。经过这项研究,我们发现 JL 13 虽然呈现出类似氯氮平的临床前特征,但对氧化的敏感性似乎低于氯氮平。

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