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胶质母细胞瘤干细胞中的能量代谢:PPARα作为肿瘤内微环境的代谢适配器。

Energy metabolism in glioblastoma stem cells: PPARα a metabolic adaptor to intratumoral microenvironment.

作者信息

Fidoamore Alessia, Cristiano Loredana, Laezza Chiara, Galzio Renato, Benedetti Elisabetta, Cinque Benedetta, Antonosante Andrea, d'Angelo Michele, Castelli Vanessa, Cifone Maria Grazia, Ippoliti Rodolfo, Giordano Antonio, Cimini Annamaria

机构信息

Department of Life, Health and Environmental Sciences, University of L'Aquila, L'Aquila, Italy.

Institute of Endocrinology and Experimental Oncology, IEOS, CNR, Naples, Italy.

出版信息

Oncotarget. 2017 Jul 7;8(65):108430-108450. doi: 10.18632/oncotarget.19086. eCollection 2017 Dec 12.

DOI:10.18632/oncotarget.19086
PMID:29312541
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5752454/
Abstract

Glioblastoma (GB), the most-common cancer in the adult brain, despite surgery and radio/ chemotherapy, is to date almost incurable. Many hypoxic tumors, including GB, show metabolic reprogramming to sustain uncontrolled proliferation, hypoxic conditions and angiogenesis. Peroxisome Proliferator-activated Receptors (PPAR), particularly the α isotype, have been involved in the control of energetic metabolism. Herein, we characterized patient-derived GB neurospheres focusing on their energetic metabolism and PPARα expression. Moreover, we used a specific PPARα antagonist and studied its effects on the energetic metabolism and cell proliferation/survival of GB stem cells. The results obtained demonstrate that tumor neurospheres are metabolically reprogrammed up-regulating glucose transporter, glucose uptake and glycogen and lipid storage, mainly under hypoxic culture conditions. Treatment with the PPARα antagonist GW6471 resulted in decreased cell proliferation and neurospheres formation. Therefore, PPARα antagonism arises as a potent new strategy as adjuvant to gold standard therapies for GB for counteracting recurrences and opening the way for pre-clinical trials for this class of compounds. When tumor neurospheres were grown in hypoxic conditions in the presence of different glucose concentrations, the most diluted one (0.25g/L) mimicking the real concentration present in the neurosphere core, PPARα increase/PPARγ decrease, increased proliferation and cholesterol content, decreased glycogen particles and LDs were observed. All these responses were reverted by the 72 h treatment with the PPARα antagonist.

摘要

胶质母细胞瘤(GB)是成人脑中最常见的癌症,尽管进行了手术和放/化疗,但迄今为止几乎无法治愈。许多缺氧肿瘤,包括GB,都表现出代谢重编程以维持不受控制的增殖、缺氧状态和血管生成。过氧化物酶体增殖物激活受体(PPAR),特别是α亚型,参与了能量代谢的调控。在此,我们对源自患者的GB神经球进行了表征,重点关注其能量代谢和PPARα表达。此外,我们使用了一种特异性PPARα拮抗剂,并研究了其对GB干细胞能量代谢和细胞增殖/存活的影响。获得的结果表明,肿瘤神经球主要在缺氧培养条件下进行代谢重编程,上调葡萄糖转运蛋白、葡萄糖摄取以及糖原和脂质储存。用PPARα拮抗剂GW6471处理导致细胞增殖和神经球形成减少。因此,PPARα拮抗作用作为一种有效的新策略出现,可作为GB金标准疗法的辅助手段,用于对抗复发并为这类化合物的临床前试验开辟道路。当肿瘤神经球在不同葡萄糖浓度存在的缺氧条件下生长时,最稀释的一种(0.25g/L)模拟神经球核心中存在的实际浓度,观察到PPARα增加/PPARγ减少、增殖增加和胆固醇含量增加、糖原颗粒和脂滴减少。所有这些反应在使用PPARα拮抗剂处理72小时后均被逆转。

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