Tugnoli V, Schenetti L, Mucci A, Nocetti L, Toraci C, Mavilla L, Basso G, Rovati R, Tavani F, Zunarelli E, Righi V, Tosi M R
Dipartimento di Biochimica, Università di Bologna, via Belmeloro 8/2, 40126 Bologna, Italy.
Int J Mol Med. 2005 Aug;16(2):301-7. doi: 10.3892/ijmm.16.2.301.
The present case report was aimed at identifying the molecular profile characteristic of a primitive neuro-ectodermal tumor (PNET) in a 3-year-old child affected by a lesion localized in the cerebellar region. The histological diagnosis was medulloblastoma. In vivo single voxel 1H magnetic resonance spectroscopy (MRS) shows high specificity in detecting the main metabolic alterations in the primitive cerebellar lesion; a very high amount of the choline-containing compounds and very low level of creatine derivatives and N-acetylaspartate. Ex vivo high resolution magic angle spinning (HR-MAS) 1H magnetic resonance spectroscopy, performed at 9.4 Tesla on the neoplastic specimen collected during surgery, allows for the unambiguous identification of several metabolites giving a more in-depth evaluation of the metabolic pattern of the lesion. The ex vivo HR-MAS MR spectra show that the spectral detail is much higher than that obtained in vivo and that, for example, myo-inositol, taurine and phosphorylethanolamine contribute to the in vivo signal at 3.2 ppm, usually attributed to choline-containing compounds. In addition, the spectroscopic data appear to correlate with some morphological features of the medulloblastoma. Consequently, the present study shows that ex vivo HR-MAS 1H MRS is able to strongly improve the clinical possibility of in vivo MRS and can be used in conjunction with in vivo spectroscopy for clinical purposes.
本病例报告旨在确定一名3岁儿童小脑区域病变的原始神经外胚层肿瘤(PNET)的分子特征。组织学诊断为髓母细胞瘤。体内单体素1H磁共振波谱(MRS)在检测原始小脑病变的主要代谢改变方面具有高特异性;含胆碱化合物含量非常高,肌酸衍生物和N-乙酰天门冬氨酸水平非常低。在手术中收集的肿瘤标本上于9.4特斯拉进行的体外高分辨率魔角旋转(HR-MAS)1H磁共振波谱,能够明确鉴定多种代谢物,从而更深入地评估病变的代谢模式。体外HR-MAS磁共振波谱显示,光谱细节比体内获得的高得多,例如,肌醇、牛磺酸和磷酸乙醇胺对通常归因于含胆碱化合物的3.2 ppm处的体内信号有贡献。此外,光谱数据似乎与髓母细胞瘤的一些形态学特征相关。因此,本研究表明,体外HR-MAS 1H MRS能够显著提高体内MRS的临床应用可能性,可与体内波谱联合用于临床目的。