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[癌症中的代谢重编程:平衡的艺术]

[Metabolic reprogramming in cancer: the art of balance].

作者信息

Yi Mei, Xiang Bo, Li Xiaoling, Li Guiyuan

机构信息

Department of Dermatology, Xiangya Hospital, Central South University, Changsha 410008; Cancer Research Institute, Central South University, Changsha 410078, China.

出版信息

Zhong Nan Da Xue Xue Bao Yi Xue Ban. 2013 Nov;38(11):1177-87. doi: 10.3969/j.issn.1672-7347.2013.11.016.

Abstract

Despite seminal studies in the 1920s by Warburg showing a characteristic metabolic pattern for tumors, cancer bioenergetics has often been relegated to the backwaters of cancer biology. Recent studies have shown that metabolism in the tumor tissue is far more complicated than we previously knew. Despite vigorous glycolysis, in fact, the tumor tissue still retains mitochondrial aerobic metabolism. Mitochondria is one of the main sites of the biosynthesis process of tumor cells. Recent studies revealed that abnormal fatty acid metabolism. Amino acid metabolism plays a key role in the tumorigenesis. The metabolic network in tumor cells was reprogrammed, leading to nutrition flux reorganization and re-direction. Metabolism reprogramming in tumor cells facilitates the balance between the needs of energy supply and the synthesis of biological macromolecules. Targeting cell metabolism is not intended to interfere the energy supply of tumor cells but to affect the synthesis of metabolic rate, thereby inhibiting the proliferation of the tumor. The review focuses on the importance of metabolic reprogramming in tumor development and cancer therapy. We summarize what is currently known about metabolic reprogramming and establish a framework to understanding its contribution to the altered metabolism of cancer cells.

摘要

尽管20世纪20年代瓦尔堡的开创性研究表明肿瘤具有特征性的代谢模式,但癌症生物能量学常常被置于癌症生物学的边缘领域。最近的研究表明,肿瘤组织中的代谢远比我们之前所知的更为复杂。事实上,尽管存在活跃的糖酵解,肿瘤组织仍保留线粒体有氧代谢。线粒体是肿瘤细胞生物合成过程的主要场所之一。最近的研究揭示了脂肪酸代谢异常。氨基酸代谢在肿瘤发生中起关键作用。肿瘤细胞中的代谢网络被重新编程,导致营养物质通量重新组织和重新定向。肿瘤细胞中的代谢重编程有助于能量供应需求与生物大分子合成之间的平衡。靶向细胞代谢并非旨在干扰肿瘤细胞的能量供应,而是影响代谢速率的合成,从而抑制肿瘤的增殖。本文综述聚焦于代谢重编程在肿瘤发展和癌症治疗中的重要性。我们总结了目前关于代谢重编程的已知信息,并建立了一个框架来理解其对癌细胞代谢改变的贡献。

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