首页> 外文期刊>Journal of Medicinal Chemistry >Conformationally restricted analogues of 1N,14N-bisethylhomospermine (BE-4-4-4): synthesis and growth inhibitory effects on human prostate cancer cells.
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Conformationally restricted analogues of 1N,14N-bisethylhomospermine (BE-4-4-4): synthesis and growth inhibitory effects on human prostate cancer cells.

机译:1N,14N-双乙基高同精胺的构象受限类似物(BE-4-4-4):对人前列腺癌细胞的合成和生长抑制作用。

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摘要

Twelve analogues of 1N,14N-bisethylhomospermine (BE-4-4-4) with restricted conformations were synthesized in the search for cancer chemotherapeutic agents with higher cytotoxic activities and lower systemic toxicities than BE-4-4-4. The central butane segment of BE-4-4-4 was replaced with a 1,2-substituted cyclopropane ring, a 1,2-substituted cyclobutane ring, and a 2-butene residue. In each case, the cis/trans-isomeric pair was synthesized. Cis-monounsaturation(s) was also introduced at the outer butane segment(s) of BE-4-4-4. The two possible cis-dienes and a cis-triene formally derived from the tetraazaeicosane skeleton of BE-4-4-4 were also prepared. Four cultured human prostate cancer cell lines (LnCap, DU145, DuPro, and PC-3) were treated with the new tetramines to examine their effects on cell growth with a MTT assay. One representative cell line (DuPro) was selected to further study the cellular uptake of the novel tetramines, their effects on intracellular polyamine pools, and their cytotoxicity. All tetramines entered the cells, reduced cellular putrescine and spermidine pools while exerting only a small effect on the spermine pool, inhibited cell growth, and killed 2-3 logs of cells after 6 days of treatment at 10 microM. Four new tetramines, the two cyclopropyl isomers, the trans-cyclobutyl isomer, and the (5Z)-tetraazaeicosene, were more cytotoxic than their saturated counterpart (BE-4-4-4). Their cytotoxicity, however, could not be correlated either with their cellular uptake or with their ability to deplete intracellular polyamine pools. We attribute their cytotoxicity to their specific molecular structures. The cytotoxicity was markedly reduced when the central butane segment was deprived of its rotational freedom by replacing it with a double bond. Introduction of a triple bond or a benzene-1,2-dimethyl residue at the central segment of the polyamine chain, led to complete loss of biological activity. The conformationally restricted alicyclic derivatives were not only more cytotoxic than was the freely rotating BE-4-4-4 by several orders of magnitude but also had much lower systemic toxicities than the latter. Thus, we obtained new tetramines with a wider therapeutic window than BE-4-4-4.
机译:为了寻找比BE-4-4-4具有更高的细胞毒活性和更低的系统毒性的癌症化疗药物,合成了十二种具有限制性构象的1N,14N-双乙基高同精胺(BE-4-4-4)。将BE-4-4-4的中央丁烷链段替换为1,2-取代的环丙烷环,1,2-取代的环丁烷环和2-丁烯残基。在每种情况下,合成顺/反异构体对。在BE-4-4-4的外部丁烷链段上还引入了顺式单不饱和键。还制备了两种可能的形式为BE-4-4-4的四氮杂二十烷骨架的顺式-二烯和顺式-三烯。用新的四胺对四种培养的人前列腺癌细胞系(LnCap,DU145,DuPro和PC-3)进行处理,以通过MTT分析检查其对细胞生长的影响。选择了一种代表性细胞系(DuPro)来进一步研究新型四胺的细胞摄取,它们对细胞内多胺库的影响及其细胞毒性。在以10 microM处理6天后,所有四胺都进入细胞,减少了细胞的腐胺和亚精胺池,而对亚精胺池仅产生很小的影响,抑制了细胞的生长,并杀死了2-3 log的细胞。四个新的四胺,两个环丙基异构体,反式-环丁基异构体和(5Z)-四氮杂二十碳烯比其饱和对应物(BE-4-4-4)具有更高的细胞毒性。但是,它们的细胞毒性与细胞摄取或耗尽细胞内多胺库的能力均无关。我们将其细胞毒性归因于其特定的分子结构。当中央丁烷链段被双键取代而失去旋转自由度时,细胞毒性显着降低。在多胺链的中心部分引入三键或苯-1,2-二甲基残基,导致生物活性完全丧失。构象受限的脂环族衍生物不仅比自由旋转的BE-4-4-4具有几个数量级的细胞毒性,而且全身毒性也比后者低得多。因此,我们获得了比BE-4-4-4具有更宽治疗范围的新四胺。

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