J D Jiang, J Roboz, I Weisz, L Deng, L Ma, J F Holland, J G Bekesi
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引用次数: 0
摘要
这四种标题化合物(迄今未报道)是由3-氨基苯甲酸通过其三氟乙酸-氯酸衍生物,与尿素反应和氨解脱保护制得3-氨基苯甲酰脲,然后进行非常规卤代乙酰化合成的。发现三个关键因素对抗肿瘤活性至关重要:(i)卤素的细胞毒性:i > Br > Cl > F (ID90 0.014->10微米);(ii)卤素的位置:只有3位(元)表达了相关活性;(iii)脲基(1位)的存在。在细胞毒性(非恶性心肌成纤维细胞和CEM白血病细胞的ID50比)和治疗指标(P338白血病小鼠)方面,溴和碘化合物的选择性高于长春花碱和紫杉醇。相关的生物活性机制为有丝分裂阻滞和细胞凋亡。在无细胞系统中,微管组装发生完全抑制(长春花碱为2.8微米,长春花碱为2.1微米);与紫杉醇相反,目标化合物不会干扰微管的分解。溴和碘化合物具有很强的杀癌和抗小管活性,值得进一步探索其在抗肿瘤化疗中的潜力。
Synthesis, cancericidal and antimicrotubule activities of 3-(haloacetamido)-benzoylureas.
The four title compounds (not hitherto reported) were synthesized from 3-aminobenzoic acid through its trifluoroacetic acid-acid chloride derivative, reaction with urea and aminolytic deprotection to yield 3-aminobenzoylurea, followed by unconventional haloacetylation. Three key factors were found essential for antitumor activity: (i) the cytotoxic nature of the halogen: I > Br > Cl > F (ID90 0.014->10 microM); (ii) the position of the halogen: only the 3-position (meta) expressed relevant activity; and (iii) the presence of the urea group (1-position). The selectivity of the bromo and iodo compounds were higher than those of vinblastine and paclitaxel in terms of cytotoxicity (ID50 ratios in nonmalignant myocardial fibroblasts and CEM leukemia cells) and therapeutic indices (P338 leukemia bearing mice). Relevant mechanisms of bioactivity were mitotic arrest and apoptosis. Complete inhibition of microtubule assembly occurred in cell-free systems (at 2.8 versus 2.1 microM for vinblastine); in contrast to paclitaxel, the target compounds did not interfere with microtubule disassembly. The strong cancericidal and antimicrotubular activities of the bromine and iodine compounds justify further exploration of their potential in antineoplastic chemotherapy.