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Multi-modality imaging to assess metabolic response to dichloroacetate treatment in tumor models

机译:多模态成像评估肿瘤模型中对二氯乙酸治疗的代谢反应

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摘要

Reverting glycolytic metabolism is an attractive strategy for cancer therapy as upregulated glycolysis is a hallmark in various cancers. Dichloroacetate (DCA), long used to treat lactic acidosis in various pathologies, has emerged as a promising anti-cancer drug. By inhibiting the pyruvate dehydrogenase kinase, DCA reactivates the mitochondrial function and decreases the glycolytic flux in tumor cells resulting in cell cycle arrest and apoptosis. We recently documented that DCA was able to induce a metabolic switch preferentially in glycolytic cancer cells, leading to a more oxidative phenotype and decreasing proliferation, while oxidative cells remained less sensitive to DCA treatment. To evaluate the relevance of this observation in vivo, the aim of the present study was to characterize the effect of DCA in glycolytic MDA-MB-231 tumors and in oxidative SiHa tumors using advanced pharmacodynamic metabolic biomarkers. Oxygen consumption, studied by 17O magnetic resonance spectroscopy, glucose uptake, evaluated by 18F-FDG PET and pyruvate transformation into lactate, measured using hyperpolarized 13C-magnetic resonance spectroscopy, were monitored before and 24 hours after DCA treatment in tumor bearing mice. In both tumor models, no clear metabolic shift was observed. Surprisingly, all these imaging parameters concur to the conclusion that both glycolytic tumors and oxidative tumors presented a similar response to DCA. These results highlight a major discordance in metabolic cancer cell bioenergetics between in vitro and in vivo setups, indicating critical role of the local microenvironment in tumor metabolic behaviors.
机译:逆转糖酵解代谢是癌症治疗的一种有吸引力的策略,因为糖酵解上调是各种癌症的标志。长期用于治疗各种病理性乳酸性酸中毒的二氯乙酸盐(DCA)已经成为一种有前途的抗癌药物。通过抑制丙酮酸脱氢酶激酶,DCA重新激活线粒体功能并降低肿瘤细胞中的糖酵解通量,从而导致细胞周期停滞和凋亡。最近,我们记录了DCA能够优先在糖酵解癌细胞中诱导代谢转换,从而导致更多的氧化表型和减少的增殖,而氧化细胞对DCA治疗的敏感性仍然较低。为了评估该观察结果在体内的相关性,本研究的目的是使用先进的药效代谢生物标记物表征DCA在糖酵解MDA-MB-231肿瘤和氧化性SiHa肿瘤中的作用。通过 17 磁共振波谱研究的耗氧量,通过 18 F-FDG PET评估的葡萄糖摄取以及使用超极化的 13 测量的丙酮酸转化为乳酸。在荷瘤小鼠中DCA治疗之前和之后24小时监测C磁共振波谱。在两个肿瘤模型中,均未观察到明显的代谢变化。出乎意料的是,所有这些成像参数均得出结论,即糖酵解肿瘤和氧化性肿瘤均对DCA表现出相似的反应。这些结果突出了体外和体内设置之间代谢癌细胞生物能量学的主要矛盾,表明局部微环境在肿瘤代谢行为中的关键作用。

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