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电氧化电位作为新型更安全氯氮平类类似物早期筛选的工具。

Electrooxidation potential as a tool in the early screening for new safer clozapine-like analogues.

作者信息

Mouithys-Mickalad A, Kauffmann J M, Petit C, Bruhwyler J, Liao Y, Wikström H, Damas J, Delarge J, Deby-Dupont G, Géczy J, Liégeois J F

机构信息

Center for Oxygen Research and Development, University of Liège, 17 allée de la Chimie (B6a), B-4000 Liège 1, Belgium.

出版信息

J Med Chem. 2001 Mar 1;44(5):769-76. doi: 10.1021/jm000221f.

Abstract

The chemical modification of clozapine (1) has permitted the finding of new analogues, e.g., olanzapine (2), quetiapine (3), 5-(4-methylpiperazin-1-yl)-8-chloropyrido[2,3-b][1,5]benzoxazepine fumarate (9), with a clinical or psychopharmacological profile similar to that of clozapine. However, when developing new derivatives, the designers are discouraged by the development of clozapine-induced agranulocytosis. Different researchers have raised the role played by the oxidizability of the molecule in such a deleterious effect. In the present paper, we examined the oxidation profile (direct scavenging abilities, efficacy in inhibiting lipid peroxidation, and electrooxidation potential) of newly developed methoxy and trifluoromethylsulfonyloxy analogues related to clozapine, some of them being described as putative antipsychotic. The oxazepine derivative 7, unlike the other diazepine derivatives (6, 10--12), was not readily oxidized. Using a statistical predictive model for hematotoxicity previously described, 7 was found in the cluster of potentially nontoxic compounds while diazepine derivatives 6 and 10-12 were classified as potentially toxic compounds. Among these original compounds, 7, which presents a preclinical clozapine-like profile and a low sensitivity to oxidation, could be a promising antipsychotic candidate with low side effects. Considering the tricyclic derivatives examined so far, some elements of structure-oxidation relationship (SOR) might be pointed out. Regarding the nature of the tricyclic ring substituent, from the most to the least sensitive to oxidation, the sequence was as follows: HO > Cl > CH(3)O > CF(3)SO(2)O. The nature of the tricyclic ring influenced also the sensitivity to oxidation; the diazepine moiety appeared to be the most reactive ring compared to oxa- and thiazepine congeners. These parameters could be advantageously integrated in the early design of new safer clozapine-like analogues.

摘要

氯氮平(1)的化学修饰使得能够发现新的类似物,例如奥氮平(2)、喹硫平(3)、5-(4-甲基哌嗪-1-基)-8-氯吡啶并[2,3 - b][1,5]苯并恶唑富马酸盐(9),其临床或精神药理学特征与氯氮平相似。然而,在开发新衍生物时,氯氮平诱导的粒细胞缺乏症的发生让设计者们望而却步。不同的研究人员提出了分子的氧化性在这种有害作用中所起的作用。在本文中,我们研究了新开发的与氯氮平相关的甲氧基和三氟甲磺酰氧基类似物的氧化特征(直接清除能力、抑制脂质过氧化的功效以及电氧化电位),其中一些被描述为推定的抗精神病药物。与其他二氮杂卓衍生物(6、10 - 12)不同,恶唑嗪衍生物7不容易被氧化。使用先前描述的血液毒性统计预测模型,发现7属于潜在无毒化合物类别,而二氮杂卓衍生物6和10 - 12被归类为潜在有毒化合物。在这些原始化合物中,7具有临床前类似氯氮平的特征且对氧化敏感性低,可能是一种有前景的低副作用抗精神病候选药物。考虑到迄今为止所研究的三环衍生物,可以指出一些结构 - 氧化关系(SOR)的要素。关于三环环取代基的性质,从对氧化最敏感到最不敏感的顺序如下:HO>Cl>CH(3)O>CF(3)SO(2)O。三环环的性质也影响氧化敏感性;与恶唑和噻二氮杂卓同系物相比,二氮杂卓部分似乎是反应性最高的环。这些参数可以有利地整合到新的更安全的氯氮平类似物的早期设计中。

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