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基于肿瘤细胞代谢特征的抗癌策略:对瓦伯格效应的治疗性靶向作用

Anticancer strategies based on the metabolic profile of tumor cells: therapeutic targeting of the Warburg effect.

作者信息

Chen Xi-Sha, Li Lan-Ya, Guan Yi-di, Yang Jin-Ming, Cheng Yan

机构信息

Department of Pharmacology, School of Pharmaceutical Sciences, Central South University, Changsha 410008, China.

Department of Pharmacology, the Penn State Hershey Cancer Institute, the Pennsylvania State University College of Medicine and Milton S Hershey Medical Center, Hershey, PA 17033, USA.

出版信息

Acta Pharmacol Sin. 2016 Aug;37(8):1013-9. doi: 10.1038/aps.2016.47. Epub 2016 Jul 4.

Abstract

Tumor cells rely mainly on glycolysis for energy production even in the presence of sufficient oxygen, a phenomenon termed the Warburg effect, which is the most outstanding characteristic of energy metabolism in cancer cells. This metabolic adaptation is believed to be critical for tumor cell growth and proliferation, and a number of onco-proteins and tumor suppressors, including the PI3K/Akt/mTOR signaling pathway, Myc, hypoxia-inducible factor and p53, are involved in the regulation of this metabolic adaptation. Moreover, glycolytic cancer cells are often invasive and impervious to therapeutic intervention. Thus, altered energy metabolism is now appreciated as a hallmark of cancer and a promising target for cancer treatment. A better understanding of the biology and the regulatory mechanisms of aerobic glycolysis has the potential to facilitate the development of glycolysis-based therapeutic interventions for cancer. In addition, glycolysis inhibition combined with DNA damaging drugs or chemotherapeutic agents may be effective anticancer strategies through weakening cell damage repair capacity and enhancing drug cytotoxicity.

摘要

肿瘤细胞即使在有充足氧气的情况下,也主要依靠糖酵解来产生能量,这种现象被称为瓦伯格效应,它是癌细胞能量代谢最突出的特征。这种代谢适应被认为对肿瘤细胞的生长和增殖至关重要,包括PI3K/Akt/mTOR信号通路、Myc、缺氧诱导因子和p53在内的许多癌蛋白和肿瘤抑制因子都参与了这种代谢适应的调节。此外,进行糖酵解的癌细胞通常具有侵袭性,并且对治疗干预有抗性。因此,能量代谢改变现在被认为是癌症的一个标志和癌症治疗的一个有前景的靶点。更好地理解有氧糖酵解的生物学特性和调控机制有可能促进基于糖酵解的癌症治疗干预措施的开发。此外,糖酵解抑制与DNA损伤药物或化疗药物联合使用可能是有效的抗癌策略,通过削弱细胞损伤修复能力和增强药物细胞毒性来实现。

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