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线粒体中心的生物能量学特征在癌症干细胞样细胞中。

Mitochondria-centric bioenergetic characteristics in cancer stem-like cells.

机构信息

Yonsei University College of Medicine, Seoul, Korea.

Department of Surgery, Yonsei University Health System, Yonsei University College of Medicine, 50 Yonsei-ro, Seodaemun-gu, Seoul, 120-752, Korea.

出版信息

Arch Pharm Res. 2019 Feb;42(2):113-127. doi: 10.1007/s12272-019-01127-y. Epub 2019 Feb 15.

Abstract

Metabolic and genotoxic stresses that arise during tumor progression and anti-cancer treatment, respectively, can impose a selective pressure to promote cancer evolution in the tumor microenvironment. This process ultimately selects for the most "fit" clones, which generally have a cancer stem cell like phenotype with features of drug resistance, epithelial-mesenchymal transition, invasiveness, and high metastatic potential. From a bioenergetics perspective, these cancer stem-like cells (CSCs) exhibit mitochondria-centric energy metabolism and are capable of opportunistically utilizing available nutrients such as fatty acids to generate ATP and other metabolic substances, providing a selective advantage for their survival in an impermissible environment and metabolic context. Thus, diverse therapeutic strategies are needed to efficiently tackle these CSCs and eliminate their advantage. Here, we review the metabolic and bioenergetic characteristics and vulnerabilities specific to CSCs, which can provide an unprecedented opportunity to curb CSC-driven cancer mortality rates. We particularly focus on the potential of a CSC bioenergetics-targeted strategy as a versatile therapeutic component of treatment modalities applicable to most cancer types. A cancer bioenergetics-targeted strategy can expand the inventory of combinatorial regimens in the current anti-cancer armamentarium.

摘要

在肿瘤进展和抗癌治疗过程中分别产生的代谢和遗传毒性应激可以施加选择性压力,促进肿瘤微环境中的癌症进化。这个过程最终会选择最“适应”的克隆,这些克隆通常具有癌症干细胞样表型,具有耐药性、上皮-间充质转化、侵袭性和高转移潜能等特征。从生物能量学的角度来看,这些癌症干细胞样细胞(CSC)表现出以线粒体为中心的能量代谢,并能够机会性地利用可用的营养物质,如脂肪酸,来产生 ATP 和其他代谢物质,为它们在不可接受的环境和代谢环境中生存提供了选择性优势。因此,需要多种治疗策略来有效地解决这些 CSC 并消除它们的优势。在这里,我们回顾了 CSC 特有的代谢和生物能量学特征和脆弱性,这为抑制 CSC 驱动的癌症死亡率提供了前所未有的机会。我们特别关注 CSC 生物能量学靶向策略的潜力,作为适用于大多数癌症类型的治疗模式的多功能治疗成分。癌症生物能量学靶向策略可以扩大当前抗癌武器库中的组合方案清单。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05df/6399179/f5b3908b3a00/12272_2019_1127_Fig1_HTML.jpg

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