靶向胰腺腺癌中的癌细胞代谢。

Targeting cancer cell metabolism in pancreatic adenocarcinoma.

作者信息

Cohen Romain, Neuzillet Cindy, Tijeras-Raballand Annemilaï, Faivre Sandrine, de Gramont Armand, Raymond Eric

机构信息

INSERM U728, Beaujon University Hospital (AP-HP - PRES Paris 7 Diderot), Clichy La Garenne, France.

Department of Medical Oncology, Henri Mondor University Hospital, Créteil, France.

出版信息

Oncotarget. 2015 Jul 10;6(19):16832-47. doi: 10.18632/oncotarget.4160.

Abstract

Pancreatic ductal adenocarcinoma (PDAC) is expected to become the second leading cause of cancer death by 2030. Current therapeutic options are limited, warranting an urgent need to explore innovative treatment strategies. Due to specific microenvironment constraints including an extensive desmoplastic stroma reaction, PDAC faces major metabolic challenges, principally hypoxia and nutrient deprivation. Their connection with oncogenic alterations such as KRAS mutations has brought metabolic reprogramming to the forefront of PDAC therapeutic research. The Warburg effect, glutamine addiction, and autophagy stand as the most important adaptive metabolic mechanisms of cancer cells themselves, however metabolic reprogramming is also an important feature of the tumor microenvironment, having a major impact on epigenetic reprogramming and tumor cell interactions with its complex stroma. We present a comprehensive overview of the main metabolic adaptations contributing to PDAC development and progression. A review of current and future therapies targeting this range of metabolic pathways is provided.

摘要

预计到2030年,胰腺导管腺癌(PDAC)将成为癌症死亡的第二大主要原因。目前的治疗选择有限,迫切需要探索创新的治疗策略。由于包括广泛的促结缔组织增生性基质反应在内的特定微环境限制,PDAC面临着主要的代谢挑战,主要是缺氧和营养剥夺。它们与致癌改变(如KRAS突变)的关联已将代谢重编程推到了PDAC治疗研究的前沿。瓦伯格效应、谷氨酰胺成瘾和自噬是癌细胞自身最重要的适应性代谢机制,然而代谢重编程也是肿瘤微环境的一个重要特征,对表观遗传重编程以及肿瘤细胞与其复杂基质的相互作用有重大影响。我们全面概述了促成PDAC发展和进展的主要代谢适应性变化。还提供了针对这一系列代谢途径的当前和未来疗法的综述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e5e/4627277/56a9d00a34d9/oncotarget-06-16832-g001.jpg

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