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Physiological impact of in?vivo stable isotope tracing on cancer metabolism

机译:体内稳定同位素追踪癌代谢的生理影响

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Background There is growing interest in the analysis of tumor metabolism to identify cancer-specific metabolic vulnerabilities and therapeutic targets. Finding of such candidate metabolic pathways mainly relies on the highly sensitive identification and quantitation of numerous metabolites and metabolic fluxes using metabolomics and isotope tracing analyses. However, nutritional requirements and metabolic routes used by cancer cells cultivated in?vitro do not always reflect the metabolic demands of malignant cells within the tumor milieu. Therefore, to understand how the metabolism of tumor cells in its physiological environment differs from that of normal cells, these analyses must be performed in?vivo . Scope of Review This review covers the physiological impact of the exogenous administration of a stable isotope tracer into cancer animal models. We discuss specific aspects of in?vivo isotope tracing protocols based on discrete bolus injections of a labeled metabolite: the tracer administration per se and the fasting period prior to it. In addition, we illustrate the complex physiological scenarios that arise when studying tumor metabolism – by isotopic labeling in animal models fed with a specific amino acid restricted diet. Finally, we provide strategies to minimize these limitations. Major Conclusions There is growing evidence that metabolic dependencies in cancers are influenced by tissue environment, cancer lineage, and genetic events. An increasing number of studies describe discrepancies in tumor metabolic dependencies when studied in in?vitro settings or in?vivo models, including cancer patients. Therefore, in-depth in vivo profiling of tumor metabolic routes within the appropriate pathophysiological environment will be key to identify relevant alterations that contribute to cancer onset and progression.
机译:背景技术对肿瘤代谢分析的兴趣日益增长,以鉴定癌症特异性代谢脆弱性和治疗目标。发现这种候选代谢途径主要依赖于使用代谢物和同位素追踪分析的许多代谢物和代谢通量的高敏感性鉴定和定量。然而,癌症细胞使用的营养需求和代谢途径并不总是反映肿瘤内部恶性细胞的代谢需求。因此,要了解肿瘤细胞在其生理环境中的代谢如何与正常细胞的形态不同,这些分析必须在α体内进行。审查范围本综述涵盖了外源性稳定同位素示踪剂进入癌症动物模型的生理影响。我们讨论了基于标记的代谢物的离散推注:序列给药本身和禁食时期的基于离散推注追踪方案的具体方面。此外,我们说明了在研究肿瘤新陈代谢时出现的复杂的生理情景 - 通过饲喂特定氨基酸限制饮食的动物模型中的同位素标记。最后,我们提供最小化这些限制的策略。主要结论日益增长的证据表明癌症中的代谢依赖性受组织环境,癌症血统和遗传事件的影响。越来越多的研究在体外设置或在内的癌症患者中患有癌症患者时描述肿瘤代谢依赖性的差异。因此,在适当的病理生理环境中深入突破肿瘤代谢途径将是识别有助于癌症发病和进展的相关改变的关键。

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