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Benzopyridooxathiazepine derivatives as novel potent antimitotic agents.

机译:苯并吡喃并氧杂氮杂卓衍生物作为新型有效的抗有丝分裂剂。

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摘要

Herein, we describe the structure-activity relationship study of a new 1-(arylalkyl)-11H-benzo[f]-1,2-dihydropyrido[3,2,c][1,2,5]oxathiazepine 5,5-dioxide series of antimitotic agents. The pharmacological results obtained from previous works allowed us to identify compound 1 as a new cytotoxic agent inhibiting tubulin polymerization. We have undertaken the synthesis of its non-methylated analogue 7 and have extended our investigations to a novel, structurally related benzopyridooxathiazepine dioxide series. Among all analogues synthesized in this study, compound 10b was the most promising, being 12-fold more potent than compound 1. Its activity over a panel of five tumoral cell lines was in the nanomolar range for all of the histological types tested and flow cytometric studies performed on L1210 cells showed an accumulation of the cells in the G2/M phases of the cell cycle with a significant percentage of tetraploid cells (8N DNA content). This interesting pharmacological profile, resulting from inhibition of tubulin polymerization, encouraged us to perform preliminary in vivo studies.
机译:在这里,我们描述了新的1-(芳基烷基)-11H-苯并[f] -1,2-二氢吡啶并[3,2,c] [1,2,5]奥沙西平5,5-的构效关系研究二氧化系列抗分裂剂。从以前的工作中获得的药理结果使我们能够确定化合物1为抑制微管蛋白聚合的新细胞毒剂。我们已经进行了其非甲基化类似物7的合成,并将研究范围扩展到与结构相关的新型二苯并吡啶并恶二氧杂环丁烷系列。在这项研究中合成的所有类似物中,化合物10b是最有前途的,比化合物1的效力高12倍。对于所有测试的组织学类型和流式细胞术,其在一组5种肿瘤细胞系中的活性均在纳摩尔范围内对L1210细胞进行的研究表明,细胞周期的G2 / M期细胞蓄积,其中四倍体细胞的百分比很高(8N DNA含量)。这种由于抑制微管蛋白聚合而产生的有趣的药理作用,促使我们进行了初步的体内研究。

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