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靶向线粒体肿瘤代谢物:克服癌症耐药性的新方法

Targeting Mitochondrial Oncometabolites: A New Approach to Overcome Drug Resistance in Cancer.

作者信息

Godel Martina, Ortone Giacomo, Anobile Dario Pasquale, Pasino Martina, Randazzo Giulio, Riganti Chiara, Kopecka Joanna

机构信息

Department of Oncology, University of Torino, via Santena 5/bis, 10126 Torino, Italy.

出版信息

Pharmaceutics. 2021 May 20;13(5):762. doi: 10.3390/pharmaceutics13050762.

Abstract

Drug resistance is the main obstacle for a successful cancer therapy. There are many mechanisms by which cancers avoid drug-mediated death, including alterations in cellular metabolism and apoptotic programs. Mitochondria represent the cell's powerhouse and the connection between carbohydrate, lipid and proteins metabolism, as well as crucial controllers of apoptosis, playing an important role not only in tumor growth and progression, but also in drug response. Alterations in tricarboxylic acid cycle (TCA) caused by mutations in three TCA enzymes-isocitrate dehydrogenase, succinate dehydrogenase and fumarate hydratase-lead to the accumulation of 2-hydroxyglutarate, succinate and fumarate respectively, collectively known as oncometabolites. Oncometabolites have pleiotropic effects on cancer biology. For instance, they generate a pseudohypoxic phenotype and induce epigenetic changes, two factors that may promote cancer drug resistance leading to disease progression and poor therapy outcome. This review sums up the most recent findings about the role of TCA-derived oncometabolites in cancer aggressiveness and drug resistance, highlighting possible pharmacological strategies targeting oncometabolites production in order to improve the efficacy of cancer treatment.

摘要

耐药性是癌症治疗成功的主要障碍。癌症规避药物介导死亡的机制有很多,包括细胞代谢和凋亡程序的改变。线粒体是细胞的动力源,是碳水化合物、脂质和蛋白质代谢之间的联系,也是凋亡的关键调控因子,不仅在肿瘤生长和进展中起重要作用,而且在药物反应中也起重要作用。由三种三羧酸循环(TCA)酶(异柠檬酸脱氢酶、琥珀酸脱氢酶和富马酸水合酶)突变引起的三羧酸循环改变,分别导致2-羟基戊二酸、琥珀酸和富马酸的积累,这些统称为致癌代谢物。致癌代谢物对癌症生物学具有多效性作用。例如,它们产生假低氧表型并诱导表观遗传变化,这两个因素可能促进癌症耐药性,导致疾病进展和治疗效果不佳。本综述总结了关于TCA衍生的致癌代谢物在癌症侵袭性和耐药性中作用的最新发现,强调了针对致癌代谢物产生的可能药理学策略,以提高癌症治疗效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fddf/8161136/3b7ca7fbcc4a/pharmaceutics-13-00762-g001.jpg

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