9-SUBSTITUTED ACRIDINE-DERIVATIVES WITH LONG HALF-LIFE AND POTENT ANTITUMOR-ACTIVITY - SYNTHESIS AND STRUCTURE-ACTIVITY-RELATIONSHIPS

被引:89
作者
SU, TL
CHOU, TC
KIM, JY
HUANG, JT
CISZEWSKA, G
REN, WY
OTTER, GM
SIROTNAK, FM
WATANABE, KA
机构
[1] Sloan-Kettering Institute for Cancer Research, Memorial Sloan-Kettering Cancer Center, Sloan-Kettering Division, Cornell University, Graduate School of Medical Sciences, New York
关键词
D O I
10.1021/jm00017a006
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
A series of DNA-intercalating 9-anilinoacridines, namely 9-(phenoxyacridines, 9-(phenylthio)acridines, and 9-(3',5'-disubstituted anilino)acridines, were synthesized as potential antitumor agents with inhibitory effects on DNA topoisomerase II. Unlike amsacrine (m-AMSA), these agents were designed to avoid the oxidative metabolic pathway. These acridine derivatives were, therefore, expected to have long half-life in plasma. Both 9-phenoxyacridines and 9-(phenylthio)acridines were found to have moderate cytotoxicity against mouse leukemia L1210 and human leukemic HL-60 cell growth in culture. Among 9-(3',5'-disubstituted anilino)acridines, 3-(9-acridinylamino)-5-(hydroxymethyl)aniline (AHMA) was found to be a potent topoisomerase II inhibitor and exhibited significant antitumor efficacy both in vitro and in vivo. Chemotherapy of solid-tumor-bearing mice with 10, 10, and 5 mg/kg (QD x 4, ip) AHMA, VP-16, and m-AMSA, respectively, resulted in more tumor volume reduction by AHMA than by VP-16 or m-AMSA for E0771 mammary adenocarcinoma and B-16 melanoma. For Lewis lung carcinoma, AHMA was as potent as VP-16 but more active than m-AMSA. Structure-activity relationships of AHMA derivatives are discussed.
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页码:3226 / 3235
页数:10
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