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代谢重塑:对抗肺癌新治疗策略的帮凶

Metabolic Remodelling: An Accomplice for New Therapeutic Strategies to Fight Lung Cancer.

作者信息

Mendes Cindy, Serpa Jacinta

机构信息

CEDOC, Chronic Diseases Research Centre, NOVA Medical School, Faculdade de Ciências Médicas, Universidade NOVA de Lisboa, Campo dos Mártires da Pátria, 130, 1169-056 Lisboa, Portugal.

Instituto Português de Oncologia de Lisboa Francisco Gentil (IPOLFG), Rua Prof Lima Basto, 1099-023 Lisboa, Portugal.

出版信息

Antioxidants (Basel). 2019 Nov 29;8(12):603. doi: 10.3390/antiox8120603.

Abstract

Metabolic remodelling is a hallmark of cancer, however little has been unravelled in its role in chemoresistance, which is a major hurdle to cancer control. Lung cancer is a leading cause of death by cancer, mainly due to the diagnosis at an advanced stage and to the development of resistance to therapy. Targeted therapeutic agents combined with comprehensive drugs are commonly used to treat lung cancer. However, resistance mechanisms are difficult to avoid. In this review, we will address some of those therapeutic regimens, resistance mechanisms that are eventually developed by lung cancer cells, metabolic alterations that have already been described in lung cancer and putative new therapeutic strategies, and the integration of conventional drugs and genetic and metabolic-targeted therapies. The oxidative stress is pivotal in this whole network. A better understanding of cancer cell metabolism and molecular adaptations underlying resistance mechanisms will provide clues to design new therapeutic strategies, including the combination of chemotherapeutic and targeted agents, considering metabolic intervenients. As cancer cells undergo a constant metabolic adaptive drift, therapeutic regimens must constantly adapt.

摘要

代谢重塑是癌症的一个标志,然而其在化疗耐药性中的作用却鲜为人知,而化疗耐药性是癌症控制的一个主要障碍。肺癌是癌症致死的主要原因,主要是由于晚期诊断以及对治疗产生耐药性。靶向治疗药物与综合药物联合常用于治疗肺癌。然而,耐药机制难以避免。在本综述中,我们将探讨其中一些治疗方案、肺癌细胞最终产生的耐药机制、肺癌中已描述的代谢改变和假定的新治疗策略,以及传统药物与基因和代谢靶向治疗的整合。氧化应激在整个网络中起着关键作用。更好地理解癌细胞代谢和耐药机制背后的分子适应性,将为设计新的治疗策略提供线索,包括考虑代谢干预因素的化疗药物和靶向药物联合使用。由于癌细胞不断经历代谢适应性漂移,治疗方案必须不断调整。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20cf/6943435/9932e5eba8a4/antioxidants-08-00603-g001.jpg

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