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酮体对治疗成人和儿童脑胶质母细胞瘤的糖酵解抑制作用的贡献。

The contribution of ketone bodies to glycolytic inhibition for the treatment of adult and pediatric glioblastoma.

机构信息

Department of Neurosurgery, University of Miami Miller School of Medicine, 1095 NW 14th Terrace, Miami, FL, 33136, USA.

Department of Neurosurgery, University of Miami Brain Tumor Initiative, University of Miami Miller School of Medicine, 1095 NW 14th Terrace, Miami, FL, 33136, USA.

出版信息

J Neurooncol. 2020 Apr;147(2):317-326. doi: 10.1007/s11060-020-03431-w. Epub 2020 Feb 24.

Abstract

PURPOSE

Glioblastoma (GBM) remains one of the most lethal primary brain tumors in children and adults. Targeting tumor metabolism has emerged as a promising-targeted therapeutic strategy for GBM and characteristically resistant GBM stem-like cells (GSCs).

METHODS

Gene expression data was obtained from the online patient-histology database, GlioVis. GSC mitochondria morphology was examined by TEM. Cell viability and effect on GSC self-renewal was determined via MTS assay and neurosphere assay, respectively. Proteins were evaluated by Western Blot.

RESULTS

Enzymes necessary for ketone catabolism (BDH1, OXCT1 and ACAT1) are significantly downregulated in adult and pediatric GBM. GSC mitochondrial ultrastructure suggested defects in oxidative phosphorylation. Treatment of both GBM and GSC cell lines resulted in dose-dependent decreases in viability in response to glycolytic inhibitor 2-deoxy-D-glucose (2-DG), and ketone body Acetoacetate (AA), but not β-hydroxybutyrate (βHB). AA induced apoptosis was confirmed by western blot analysis, indicating robust caspase activation and PARP cleavage. AA reduced neurosphere formation at concentrations as low as 1 mM. Combined treatment of low dose 2-DG (50 μM) with AA resulted in more cell death than either treatment alone. The effect was greater than additive at low concentrations of AA, reducing viability approximately 50% at 1 mM AA. AA was found to directly upregulate mitochondrial uncoupling protein 2 (UCP2), which may explain this potential drug synergism via multi-faceted inhibition of the glycolytic pathway.

CONCLUSION

Targeting the metabolic pathway of GBM via glycolytic inhibition in conjunction with ketogenic diet or exogenous ketone body supplementation warrants further investigation as a promising adjunctive treatment to conventional therapy.

摘要

目的

胶质母细胞瘤(GBM)仍然是儿童和成人中最致命的原发性脑肿瘤之一。针对肿瘤代谢已成为 GBM 及其特征性耐药的神经干细胞样细胞(GSCs)的一种有前途的靶向治疗策略。

方法

从在线患者组织学数据库 GlioVis 中获得基因表达数据。通过 TEM 检查 GSC 线粒体形态。通过 MTS 测定和神经球测定分别确定细胞活力和对 GSC 自我更新的影响。通过 Western Blot 评估蛋白质。

结果

酮体分解代谢所需的酶(BDH1、OXCT1 和 ACAT1)在成人和儿科 GBM 中显著下调。GSC 线粒体超微结构表明氧化磷酸化存在缺陷。两种 GBM 和 GSC 细胞系的处理均导致对糖酵解抑制剂 2-脱氧-D-葡萄糖(2-DG)和酮体乙酰乙酸(AA)的剂量依赖性活力降低,但对β-羟丁酸(βHB)没有影响。Western blot 分析证实 AA 诱导的细胞凋亡,表明 caspase 激活和 PARP 切割明显。AA 以低至 1mM 的浓度降低神经球形成。低剂量 2-DG(50μM)与 AA 联合治疗比单独治疗产生更多的细胞死亡。在低浓度的 AA 下,效果大于加性,在 1mM AA 下,降低活力约 50%。发现 AA 直接上调线粒体解偶联蛋白 2(UCP2),这可能通过多方面抑制糖酵解途径解释这种潜在的药物协同作用。

结论

通过与生酮饮食或外源性酮体补充联合进行糖酵解抑制来靶向 GBM 的代谢途径,作为常规治疗的辅助治疗具有很大的研究前景。

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