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使用磷-31磁共振波谱对脑肿瘤代谢进行无创研究。

Noninvasive study of brain tumours metabolism using phosphorus-31 magnetic resonance spectroscopy.

作者信息

Hnilicova P, Richterova R, Zelenak K, Kolarovszki B, Majercikova Z, Hatok J

出版信息

Bratisl Lek Listy. 2020;121(7):488-492. doi: 10.4149/BLL_2020_080.

Abstract

Phosphorus-31 magnetic resonance spectroscopy (31P MRS) is currently not accepted as a diagnostic tool in the neuro-oncological practice, although it provides useful non-invasive information about biochemical processes ongoing in the intracranial tumours. This pilot study was aimed to present the diagnostic capability of the 31P MRS in brain tumour examination, even its application on clinical 1.5T MR scanner.Seven patients with brain tumorous lesions (four glioblastomas, one ependymoma, and two lung metastasis) underwent multivoxel in vivo 31P MRS performed on clinical 1.5 T MR scanner within measurement time of 20 minutes. Comparing two selected voxels, one in the tumour and the other one in the normal-appearing brain tissue, enabled to investigate their metabolic differences. Enhanced markers of membrane phospholipids synthesis (significantly increased phosphomonoesters ratios) than markers of their degradation (significantly decreased phosphodiesters ratios) manifested a higher cell proliferation ongoing in tumours. High energetic tumorous tissue demands leading to anaerobic metabolic turnover were present as a significant decline in phosphocreatine ratios and adenosine triphosphates. Intracellular pH evaluation showed a tumorous tendency to alkalize. 31P MRS enables the non-invasive metabolic characterization of intracranial tumours and thus appears to be a clinically useful method for the determination of ongoing tumour pathomechanisms (Fig. 2, Ref. 26). Keywords: brain tumour, 31P MRS, 1.5 Tesla; energetic metabolism.

摘要

磷-31磁共振波谱(31P MRS)目前在神经肿瘤学实践中未被用作诊断工具,尽管它能提供有关颅内肿瘤中正在进行的生化过程的有用非侵入性信息。这项初步研究旨在展示31P MRS在脑肿瘤检查中的诊断能力,甚至是其在临床1.5T MR扫描仪上的应用。7例患有脑肿瘤性病变的患者(4例胶质母细胞瘤、1例室管膜瘤和2例肺转移瘤)在临床1.5T MR扫描仪上进行了多体素活体31P MRS检查,测量时间为20分钟。比较两个选定的体素,一个在肿瘤中,另一个在外观正常的脑组织中,能够研究它们的代谢差异。与膜磷脂降解标志物(磷酸二酯比例显著降低)相比,膜磷脂合成增强标志物(磷酸单酯比例显著增加)表明肿瘤中存在更高的细胞增殖。由于磷酸肌酸比例和三磷酸腺苷显著下降,存在高能肿瘤组织需求导致的无氧代谢转换。细胞内pH评估显示肿瘤有碱化倾向。31P MRS能够对颅内肿瘤进行非侵入性代谢特征分析,因此似乎是一种用于确定正在进行的肿瘤发病机制的临床有用方法(图2,参考文献26)。关键词:脑肿瘤;31P MRS;1.5特斯拉;能量代谢

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