Denny W A, Cain B F, Atwell G J, Hansch C, Panthananickal A, Leo A
J Med Chem. 1982 Mar;25(3):276-315. doi: 10.1021/jm00345a015.
Quantitative relationships (QSAR) have been derived between antileukemic (L1210) activity and agent physicochemical properties for 509 tumor-active members of the general class of 9-anilinoacridines. One member of this class is the clinical agent m-AMSA (NSC 249992). Agent hydrophobicity proved a significant but not a dominant influence on in vivo potency. The electronic properties of substituent groups proved important, but the most significant effects on drug potency were shown by the steric influence of groups placed at various positions on the 9-anilinoacridine skeleton. The results are entirely consistent with the physiologically important step in the action of these compounds being their binding to double-stranded DNA by intercalation of the acridine chromophore between the base pairs and positioning of the anilino group in the minor groove, as previously suggested. An equation was also derived for the acute toxicities of 643 derivatives of 9-anilinoacridine. This equation took a somewhat similar form to the one modeling antileukemia potency, emphasizing the usual fairly close relationship between potency and acute toxicity for antitumor agents in general. This study demonstrated the power of QSAR techniques to structure very large amounts of biological data and to allow the extraction of useful information from them bearing on the possible site of action of the compounds concerned.
已得出9-苯胺基吖啶类一般类别中509种具有肿瘤活性成员的抗白血病(L1210)活性与药物理化性质之间的定量关系(QSAR)。该类别的一个成员是临床药物m-AMSA(NSC 249992)。药物疏水性被证明对体内效力有显著但非主导性的影响。取代基的电子性质被证明很重要,但对药物效力影响最显著的是位于9-苯胺基吖啶骨架不同位置的基团的空间影响。结果与之前所提出的这些化合物作用过程中生理上重要的一步完全一致,即它们通过吖啶发色团在碱基对之间插入以及苯胺基在小沟中的定位与双链DNA结合。还得出了一个关于9-苯胺基吖啶643种衍生物急性毒性的方程。该方程与模拟抗白血病效力的方程形式有些相似,强调了一般来说抗肿瘤药物效力与急性毒性之间通常相当紧密的关系。这项研究证明了QSAR技术在构建大量生物学数据以及从这些数据中提取与相关化合物可能作用位点有关的有用信息方面的能力。