首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Aldehyde dehydrogenase inhibitors: alpha,beta-acetylenic N-substituted aminothiolesters are reversible growth inhibitors of normal epithelial but irreversible apoptogens for cancer epithelial cells from human prostate in culture.
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Aldehyde dehydrogenase inhibitors: alpha,beta-acetylenic N-substituted aminothiolesters are reversible growth inhibitors of normal epithelial but irreversible apoptogens for cancer epithelial cells from human prostate in culture.

机译:醛脱氢酶抑制剂:α,β-炔属N-取代的氨基硫醇酯是正常上皮细胞的不可逆生长抑制剂,但对于人类前列腺癌中的癌症上皮细胞而言是不可逆的凋亡。

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摘要

The pharmacomodulation of the N atom of alpha,beta-acetylenic aminothiolesters or the replacement of the thiolester moiety by more electrophilic groups did not permit any clear rationale to be established for improving the selective growth-inhibitory activity of this family of compounds over that of the previously synthesized alpha,beta-acetylenic aminothiolesters DIMATE and MATE [G. Quash, G. Fournet, J. Chantepie, J. Gore, C. Ardiet, D. Ardail, Y. Michal, U. Reichert, Biochem Pharmacol 64 (2002) 1279-92]. Hence DIMATE and MATE were investigated more thoroughly for selectivity and growth-inhibitory activity using human prostate epithelial normal cells (HPENC) on the one hand and human prostate epithelial cancer cells (DU145) on the other. Unequivocal evidence was obtained showing that both compounds were reversible growth inhibitors of HPENC but irreversible growth inhibitors of DU145. Growth-inhibition of DU145 was due to the induction of early apoptosis as revealed by the flow cytometric analytical profile of inhibitor-treated cells, of the decrease in the redox potential and increase in superoxide anion content of their mitochondria. Of the two intracellular enzymes: aldehyde dehydrogenases 1 and 3 (ALDH1 and ALDH3) targeted by DIMATE and MATE, ALDH3 was inhibited to the same extent by both compounds whereas ALDH1 was less susceptible to inhibition by MATE. As the induction of ALDH3 by xenobiotics is hormone-dependent, MATE, the more selective of the two inhibitors, is a useful tool not only for examining the role of the ALDH3 isoform in hormone-sensitive and resistant prostate cancer cells in culture but also for investigating if it can inhibit the growth of xenografts of prostate cancer in immunodeficient mice.
机译:α,β-炔属氨基巯基酯的N原子的药物代谢或更多亲电子基团取代的巯基部分不允许建立明确的理由来改善该化合物家族的选择性生长抑制活性。先前合成的α,β-炔属氨基硫醇酯DIMATE和MATE [G. Quash,G.Fournet,J.Chantepie,J.Gore,C.Ardiet,D.Ardail,Y.Michal,U.Reichert,Biochem Pharmacol 64(2002)1279-92]。因此,一方面使用人前列腺上皮正常细胞(HPENC),另一方面使用人前列腺上皮癌细胞(DU145)对DIMATE和MATE进行了更全面的选择性和生长抑制活性研究。获得的明确证据表明,这两种化合物都是HPENC的可逆生长抑制剂,但是DU145的不可逆生长抑制剂。 DU145的生长抑制归因于早期凋亡的诱导,如抑制剂处理细胞的流式细胞仪分析所揭示的,氧化还原电位的降低和线粒体超氧阴离子含量的增加。在DIMATE和MATE靶向的两种细胞内酶:醛脱氢酶1和3(ALDH1和ALDH3)中,两种化合物对ALDH3的抑制程度相同,而ALDH1对MATE抑制的敏感性较小。由于异源生物对ALDH3的诱导是激素依赖性的,因此两种抑制剂中更具选择性的MATE是一种有用的工具,不仅可用于检查ALDH3亚型在荷尔蒙敏感和耐药的前列腺癌细胞中的作用,而且还可用于研究它是否可以抑制免疫缺陷小鼠的前列腺癌异种移植物的生长。

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