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Synthetic polyamines activating autophagy: Effects on cancer cell death

机译:合成多胺激活自噬:对癌细胞死亡的影响

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The ability of symmetrically substituted long chain polymethylene tetramines, methoctramine (1) and its analogs 2-4 to kill cancer cells was studied.We found that an elevated cytotoxicity was correlated with a 12 methylene chain length separating the inner amine functions (6-12-6 carbon backbone), together with the introduction of diphenylethyl moieties on the terminal nitrogen atoms (compound 4) of a tetramine backbone. Compound 4 triggered dissipation of mitochondrial transmembrane potential and increased intracellular peroxide levels, leading to a caspase-independent HeLa cell death associated with a rapid activation of autophagy. The antioxidant N-acetylcysteine inhibited cell death and activation of autophagy, indicating a link between oxidative stress and autophagy. Autophagy was rapidly triggered even by tetramines 2 and 3 , indicating that is related to their polyamine structure. Autophagy did not protect HeLa cells against cytotoxicity elicited by compound 4. The present study shows that, by modifications of the methoctramine structure, it is possible to design polyamine derivatives highly cytotoxic against tumor cells and that the appropriate design of molecules bearing polyamine-like structures leads to powerful inducers of autophagy.
机译:研究了对称取代的长链多亚甲基四胺,甲基辛特拉明(1)及其类似物2-4杀死癌细胞的能力。我们发现,提高的细胞毒性与12条亚甲基链长分隔内部胺功能相关(6-12 -6碳骨架),以及在四胺骨架的末端氮原子(化合物4)上引入二苯乙基部分。化合物4触发线粒体跨膜电位耗散并增加细胞内过氧化物水平,从而导致caspase依赖性HeLa细胞死亡,并导致自噬快速激活。抗氧化剂N-乙酰半胱氨酸抑制细胞死亡和自噬激活,表明氧化应激和自噬之间存在联系。自噬被四胺2和3迅速触发,表明这与它们的多胺结构有关。自噬不能保护HeLa细胞免受化合物4引起的细胞毒性作用。本研究表明,通过修饰甲基辛特拉明结构,可以设计对肿瘤细胞具有高度细胞毒性的多胺衍生物,并且可以适当设计带有多胺样结构的分子导致自噬的强大诱因。

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