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自旋标记亚硝基脲和三氮烯及其未标记的临床应用类似物——关于其物理化学性质和抗黑素瘤作用的比较研究

Spin labelled nitrosoureas and triazenes and their non-labelled clinically used analogues--a comparative study on their physicochemical properties and antimelanomic effects.

作者信息

Zheleva A M, Gadjeva V G

机构信息

Department of Chemistry and Biochemistry, Medical Faculty, Thracian University, 11 Armeiska Str., 6000, Stara Zagora, Bulgaria.

出版信息

Int J Pharm. 2001 Jan 16;212(2):257-66. doi: 10.1016/s0378-5173(00)00611-6.

DOI:10.1016/s0378-5173(00)00611-6
PMID:11165083
Abstract

Physicochemical properties, such as half life time (tau0.5), alkylating and carbamoylating activity and in vivo antimelanomic effects against B16 melanoma of spin labeled (containing nitroxyl free radical moiety) amino acid nitrosoureas, synthesized in our laboratory, have been studied and compared to those of the antitumor drug N'-cyclohexyl-N-(2-chloroethyl)-N-nitrosourea (lomustine, CCNU). We have shown that the introduction of amino acid moieties and the replacement of cyclohexylamine with nitroxyl moiety leads to a faster decomposition, higher alkylating, lower carbamoylating activity, better antimelanomic activity and lower general toxicity, when compared to those of CCNU. It was also established that spin labeled triazenes, previously synthesized by us, were more stable in phosphate saline than their nonlabeled analogue, 5-(3,3-dimethyltriazene-1-yl)-imidazole-4-carboxamide (dacarbazine, DTIC). A higher cytotoxicity to B16 melanoma cells than to YAC-1 and lymphocytes was demonstrated for all spin labeled triazenes, in comparison with DTIC. An assumption has been made to explain the lower general toxicity of the spin labeled nitrosoureas compared to that of CCNU. Based on the results presented, we accept that a new trend for synthesis of more selective and less toxic nitrosourea and triazene derivatives as potential antimelanomic drugs might be developed.

摘要

我们研究了在我们实验室合成的自旋标记(含有硝酰自由基部分)氨基酸亚硝基脲的物理化学性质,如半衰期(tau0.5)、烷基化和氨基甲酰化活性以及对B16黑色素瘤的体内抗黑色素瘤作用,并与抗肿瘤药物N'-环己基-N-(2-氯乙基)-N-亚硝基脲(洛莫司汀,CCNU)进行了比较。我们已经表明,与CCNU相比,引入氨基酸部分并用硝酰部分取代环己胺会导致更快的分解、更高的烷基化、更低的氨基甲酰化活性、更好的抗黑色素瘤活性和更低的总体毒性。还确定我们之前合成的自旋标记三嗪在磷酸盐盐水中比其未标记的类似物5-(3,3-二甲基三嗪-1-基)-咪唑-4-甲酰胺(达卡巴嗪,DTIC)更稳定。与DTIC相比,所有自旋标记三嗪对B16黑色素瘤细胞的细胞毒性均高于对YAC-1细胞和淋巴细胞的细胞毒性。已做出假设来解释自旋标记亚硝基脲与CCNU相比总体毒性较低的原因。基于所呈现的结果,我们认为可能会开发出一种新的趋势,即合成更具选择性和更低毒性的亚硝基脲和三嗪衍生物作为潜在的抗黑色素瘤药物。

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