代谢组学:乳腺癌的现有研究成果、当前研究项目及未来应用

Metabolomics: available results, current research projects in breast cancer, and future applications.

作者信息

Claudino Wederson Marcos, Quattrone Alessandro, Biganzoli Laura, Pestrin Marta, Bertini Ivano, Di Leo Angelo

机构信息

Sandro Pitigliani Medical Oncology Unit, Hospital of Prato, Prato, Italy.

出版信息

J Clin Oncol. 2007 Jul 1;25(19):2840-6. doi: 10.1200/JCO.2006.09.7550. Epub 2007 May 14.

Abstract

Metabolomics is the newest "omics" science. It is a dynamic portrait of the metabolic status of living systems. Metabolomics has brought new insights on metabolic fluxes and a more comprehensive and holistic understanding of a cell's environment. This burgeoning field promises to be a potential tool to fill the gap between genotype and phenotype. As its preceding "omics" sciences (ie, genomics and proteomics), metabolomics' aim is to dredge information hidden in a sea of data. This technology permits simultaneous monitoring of many hundreds, or thousands, of macro- and small molecules, as well as functional monitoring of multiple pivotal cellular pathways. In addition, elucidation of cellular responses to molecular damage, including evolutionarily conserved inducible molecular defense systems, could be achieved with metabolomics and could lead to the discovery of new biomarkers of molecular responses to functional perturbations. If metabolomic information could be translated into diagnostic tests, it might have the potential to impact on clinical practice, and it might lead to the supplementation of traditional biomarkers of cellular integrity, cell and tissue homeostasis, and morphological alterations that result from cell damage or death. In this review the concept and characteristics of metabolomics are introduced. Main current applications of metabolomics in cancer research are reviewed, including its potential in the drug discovery field, and, last but not least, its potential impact in the field of monitoring response and toxicity to anticancer agents. In the last section, research projects ongoing at our institution and future challenges for metabolomics will be presented and briefly discussed.

摘要

代谢组学是最新的“组学”科学。它是生物系统代谢状态的动态写照。代谢组学为代谢通量带来了新的见解,并对细胞环境有了更全面、更整体的理解。这个新兴领域有望成为填补基因型和表型之间差距的潜在工具。与之前的“组学”科学(即基因组学和蛋白质组学)一样,代谢组学的目标是挖掘隐藏在海量数据中的信息。这项技术能够同时监测数百或数千种大分子和小分子,以及对多个关键细胞通路进行功能监测。此外,利用代谢组学可以阐明细胞对分子损伤的反应,包括进化上保守的诱导性分子防御系统,并可能导致发现对功能扰动的分子反应的新生物标志物。如果代谢组学信息能够转化为诊断测试,它可能有潜力影响临床实践,并可能导致补充传统的细胞完整性、细胞和组织稳态以及细胞损伤或死亡导致的形态改变的生物标志物。在这篇综述中,介绍了代谢组学的概念和特点。综述了代谢组学目前在癌症研究中的主要应用,包括其在药物发现领域的潜力,以及最后但同样重要的是,其在监测对抗癌药物的反应和毒性方面的潜力。在最后一部分,将介绍并简要讨论我们机构正在进行的研究项目以及代谢组学未来面临的挑战。

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