首页> 美国卫生研究院文献>Aging (Albany NY) >Doxycycline Azithromycin and Vitamin C (DAV): A potent combination therapy for targeting mitochondria and eradicating cancer stem cells (CSCs)
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Doxycycline Azithromycin and Vitamin C (DAV): A potent combination therapy for targeting mitochondria and eradicating cancer stem cells (CSCs)

机译:强力霉素阿奇霉素和维生素C(DAV):针对线粒体并消除癌症干细胞(CSC)的有效组合疗法

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摘要

Here, we devised a new strategy for eradicating cancer stem cells (CSCs), via a “synthetic-metabolic” approach, involving two FDA-approved antibiotics and a dietary vitamin supplement. This approach was designed to induce a “rho-zero-like” phenotype in cancer cells. This strategy effectively results in the synergistic eradication of CSCs, using vanishingly small quantities of two antibiotics. The 2 metabolic targets are i) the large mitochondrial ribosome and ii) the small mitochondrial ribosome. Azithromycin inhibits the large mitochondrial ribosome as an off-target side-effect. In addition, Doxycycline inhibits the small mitochondrial ribosome as an off-target side-effect. Vitamin C acts as a mild pro-oxidant, which can produce free radicals and, as a consequence, induces mitochondrial biogenesis. Remarkably, treatment with a combination of Doxycycline (1 μM), Azithromycin (1 μM) plus Vitamin C (250 μM) very potently inhibited CSC propagation by >90%, using the MCF7 ER(+) breast cancer cell line as a model system. The strong inhibitory effects of this DAV triple combination therapy on mitochondrial oxygen consumption and ATP production were directly validated using metabolic flux analysis. Therefore, the induction of mitochondrial biogenesis due to mild oxidative stress, coupled with inhibition of mitochondrial protein translation, may be a new promising therapeutic anti-cancer strategy. Consistent with these assertions, Vitamin C is known to be highly concentrated within mitochondria, by a specific transporter, namely SVCT2, in a sodium-coupled manner. Also, the concentrations of antibiotics used here represent sub-antimicrobial levels of Doxycycline and Azithromycin, thereby avoiding the potential problems associated with antibiotic resistance. Finally, we also discuss possible implications for improving health-span and life-span, as Azithromycin is an anti-aging drug that behaves as a senolytic, which selectively kills and removes senescent fibroblasts.
机译:在这里,我们设计了一种通过“合成代谢”方法消除癌症干细胞(CSC)的新策略,其中涉及两种FDA批准的抗生素和膳食维生素补充剂。该方法旨在诱导癌细胞中的“ rho-zero-like”表型。使用少量的两种抗生素,该策略可有效消除CSC的协同作用。 2个代谢目标是:i)大线粒体核糖体和ii)小线粒体核糖体。阿奇霉素抑制大的线粒体核糖体作为脱靶副作用。另外,多西环素抑制小线粒体核糖体作为脱靶副作用。维生素C充当温和的前氧化剂,可产生自由基,并因此诱导线粒体生物发生。值得注意的是,使用MCF7 ER(+)乳腺癌细胞系作为模型系统,强力霉素(1μM),阿奇霉素(1μM)加上维生素C(250μM)的组合非常有效地抑制了CSC的传播> 90%。 。使用代谢通量分析直接验证了这种DAV三联疗法对线粒体耗氧量和ATP产生的强烈抑制作用。因此,由于轻度的氧化应激诱导线粒体生物发生,并抑制线粒体蛋白翻译,可能是一种新的有希望的治疗性抗癌策略。与这些论断一致,已知维生素C通过一种特定的转运蛋白(SVCT2)以钠耦合的方式在线粒体内高度浓缩。同样,此处使用的抗生素浓度代表了强力霉素和阿奇霉素的亚抗菌水平,从而避免了与抗生素耐药性相关的潜在问题。最后,我们还讨论了改善健康寿命和寿命的潜在影响,因为阿奇霉素是一种抗衰老药物,具有镇静作用,选择性杀死并去除衰老的成纤维细胞。

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