Department of Circulation and Medical Imaging, Norwegian University of Science and Technology (NTNU), Trondheim, Norway.
Department of Radiology, Radboud University Medical Center, Nijmegen, the Netherlands.
Cancer Res. 2014 Sep 1;74(17):4898-907. doi: 10.1158/0008-5472.CAN-14-0008. Epub 2014 Jul 8.
Many patients with glioma harbor specific mutations in the isocitrate dehydrogenase gene IDH1 that associate with a relatively better prognosis. IDH1-mutated tumors produce the oncometabolite 2-hydroxyglutarate. Because IDH1 also regulates several pathways leading to lipid synthesis, we hypothesized that IDH1-mutant tumors have an altered phospholipid metabolite profile that would impinge on tumor pathobiology. To investigate this hypothesis, we performed (31)P-MRS imaging in mouse xenograft models of four human gliomas, one of which harbored the IDH1-R132H mutation. (31)P-MR spectra from the IDH1-mutant tumor displayed a pattern distinct from that of the three IDH1 wild-type tumors, characterized by decreased levels of phosphoethanolamine and increased levels of glycerophosphocholine. This spectral profile was confirmed by ex vivo analysis of tumor extracts, and it was also observed in human surgical biopsies of IDH1-mutated tumors by (31)P high-resolution magic angle spinning spectroscopy. The specificity of this profile for the IDH1-R132H mutation was established by in vitro (31)P-NMR of extracts of cells overexpressing IDH1 or IDH1-R132H. Overall, our results provide evidence that the IDH1-R132H mutation alters phospholipid metabolism in gliomas involving phosphoethanolamine and glycerophosphocholine. These new noninvasive biomarkers can assist in the identification of the mutation and in research toward novel treatments that target aberrant metabolism in IDH1-mutant glioma.
许多患有神经胶质瘤的患者携带有 IDH1 基因的特定突变,这些突变与相对较好的预后相关。IDH1 突变的肿瘤会产生致癌代谢物 2-羟戊二酸。由于 IDH1 还调节导致脂质合成的几种途径,我们假设 IDH1 突变型肿瘤具有改变的磷脂代谢物谱,这将影响肿瘤的病理生物学。为了研究这一假设,我们在四种人类神经胶质瘤的小鼠异种移植模型中进行了 (31)P-MRS 成像,其中一种携带有 IDH1-R132H 突变。来自 IDH1 突变型肿瘤的 (31)P-MR 光谱与三种 IDH1 野生型肿瘤的光谱模式明显不同,其特征在于磷酸乙醇胺水平降低和甘油磷酸胆碱水平升高。这种光谱特征通过对肿瘤提取物的体外分析得到了证实,并且在 IDH1 突变型肿瘤的人类手术活检中也通过 (31)P 高分辨率魔角旋转光谱得到了证实。该图谱对 IDH1-R132H 突变的特异性是通过对过表达 IDH1 或 IDH1-R132H 的细胞提取物进行体外 (31)P-NMR 确定的。总体而言,我们的结果提供了证据表明,IDH1-R132H 突变改变了神经胶质瘤中的磷脂代谢,涉及磷酸乙醇胺和甘油磷酸胆碱。这些新的非侵入性生物标志物可以协助鉴定突变,并为靶向 IDH1 突变型神经胶质瘤异常代谢的新型治疗方法的研究提供帮助。