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Targeting of lipid metabolism with a metabolic inhibitor cocktail eradicates peritoneal metastases in ovarian cancer cells.

Rain R Chen | Mingo M H Yung | Yang Xuan | Shijie Zhan | Leanne L Leung | Rachel R Liang | Thomas H Y Leung | Huijuan Yang | Dakang Xu | Rakesh Sharma | Karen K L Chan | Siew-Fei Ngu | Hextan Y S Ngan | David W Chan
Communications biology | 2019

Ovarian cancer is an intra-abdominal tumor in which the presence of ascites facilitates metastatic dissemination, and associated with poor prognosis. However, the significance of metabolic alterations in ovarian cancer cells in the ascites microenvironment remains unclear. Here we show ovarian cancer cells exhibited increased aggressiveness in ascites microenvironment via reprogramming of lipid metabolism. High lipid metabolic activities are found in ovarian cancer cells when cultured in the ascites microenvironment, indicating a metabolic shift from aerobic glycolysis to β-oxidation and lipogenesis. The reduced AMP-activated protein kinase (AMPK) activity due to the feedback effect of high energy production led to the activation of its downstream signaling, which in turn, enhanced the cancer growth. The combined treatment of low toxic AMPK activators, the transforming growth factor beta-activated kinase 1 (TAK1) and fatty acid synthase (FASN) inhibitors synergistically impair oncogenic augmentation of ovarian cancer. Collectively, targeting lipid metabolism signaling axis impede ovarian cancer peritoneal metastases.

Pubmed ID: 31372520

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ES-2 (tool)

RRID:CVCL_3509

Cell line ES-2 is a Cancer cell line with a species of origin Homo sapiens (Human)

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