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DNA 定向烷化剂。3. 吖啶连接苯胺氮芥的构效关系:连接链长度变化的影响。

DNA-directed alkylating agents. 3. Structure-activity relationships for acridine-linked aniline mustards: consequences of varying the length of the linker chain.

作者信息

Valu K K, Gourdie T A, Boritzki T J, Gravatt G L, Baguley B C, Wilson W R, Wakelin L P, Woodgate P D, Denny W A

机构信息

School of Medicine, Department of Pathology, University of Auckland, New Zealand.

出版信息

J Med Chem. 1990 Nov;33(11):3014-9. doi: 10.1021/jm00173a016.

Abstract

Four series of acridine-linked aniline mustards have been prepared and evaluated for in vitro cytotoxicity, in vivo antitumor activity, and DNA cross-linking ability. The anilines were attached to the DNA-intercalating acridine chromophores by link groups (-O-, -CH2-, -S-, and -SO2-) of widely varying electronic properties, providing four series of widely differing mustard reactivity where the alkyl chain linking the acridine and mustard moieties was varied from two to five carbons. Relationships were sought between chain length and biological properties. Within each series, increasing the chain length did not alter the reactivity of the alkylating moiety but did appear to position it differently on the DNA, since cross-linking ability (measured by agarose gel assay) altered with chain length, being maximal with the C4 analogue. The in vivo antitumor activities of the compounds depended to some extent on the reactivity of the mustard, with the least reactive SO2 compounds being inactive. However, DNA-targeting did appear to allow the use of less reactive mustards, since the S-linked acridine mustards showed significant activity whereas the parent S-mustard did not. Within each active series, the most active compound was the C4 homologue, suggesting some relationship between activity and extent of DNA alkylation.

摘要

已制备了四类吖啶连接的苯胺氮芥,并对其体外细胞毒性、体内抗肿瘤活性和DNA交联能力进行了评估。苯胺通过具有广泛不同电子性质的连接基团(-O-、-CH2-、-S-和-SO2-)连接到DNA插入吖啶发色团上,提供了四类具有广泛不同氮芥反应性的化合物,其中连接吖啶和氮芥部分的烷基链长度从两个碳到五个碳不等。研究了链长与生物学性质之间的关系。在每个系列中,增加链长不会改变烷基化部分的反应性,但似乎会使其在DNA上的定位不同,因为交联能力(通过琼脂糖凝胶分析测量)随链长而改变,在C4类似物中最大。化合物的体内抗肿瘤活性在一定程度上取决于氮芥的反应性,反应性最低的SO2化合物无活性。然而,DNA靶向似乎确实允许使用反应性较低的氮芥,因为S连接的吖啶氮芥显示出显著活性,而母体S氮芥则没有。在每个活性系列中,活性最高的化合物是C4同系物,表明活性与DNA烷基化程度之间存在某种关系。

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