Pizzini Francesca, Fatemi Ali S, Barker Peter B, Nagae-Poetscher Lidia M, Horská Alena, Zimmerman Andrew W, Moser Hugo W, Bibat Genila, Naidu Sakkubai
Kennedy Krieger Institute, Baltimore, MD, USA.
AJNR Am J Neuroradiol. 2003 Sep;24(8):1683-9.
Pelizeaus-Merzbacher disease (PMD) is a clinically and molecularly heterogeneous disorder linked to deletion, mutations, or duplication of the proteolipid protein (PLP1) gene locus at Xq22. The current study was conducted to characterize the results of proton MR spectroscopic (MRS) imaging in PMD.
Three boys with PMD (one with the severe connatal form and two with a more mild clinical phenotype [spastic paraplegia type 2]). and three age-matched healthy control subjects (age range, 2-7 years) underwent MR and MRS imaging. All imaging was performed at 1.5 T. For MRS imaging, oblique-axial sections (thickness, 15 mm; intersection gap, 2.5 mm) were recorded parallel to the anterior commissure-posterior commissure line (TR/TE/NEX, 2300/272/1) with lipid and water suppression. Ratios of metabolite peak areas were calculated, and spectra were bilaterally evaluated.
Diffuse or focal reductions in N-acetylaspartate were observed in the affected white matter in all three cases. These reductions seemed to be consistent with axonal damage. In addition, mild increases in choline and creatine levels were observed; these may have been due to astrocytic changes.
Proton MRS imaging may be helpful in evaluating regional pathophysiologic abnormalities in PMD and in distinguishing PMD from other leukodystrophies, which exhibit different metabolic profiles.
佩利措伊斯-梅茨巴赫病(PMD)是一种临床和分子层面均具有异质性的疾病,与位于Xq22的蛋白脂蛋白(PLP1)基因位点的缺失、突变或重复相关。本研究旨在描述PMD患者质子磁共振波谱(MRS)成像的结果。
对3例PMD患儿(1例为严重先天性形式,2例为临床表型较温和的[痉挛性截瘫2型])以及3名年龄匹配的健康对照者(年龄范围2至7岁)进行磁共振成像和MRS成像检查。所有成像均在1.5T条件下进行。对于MRS成像,记录平行于前连合-后连合线的斜轴位层面(层厚15mm;层间距2.5mm)(TR/TE/NEX,2300/272/1),并进行脂肪和水抑制。计算代谢物峰面积比值,并对双侧频谱进行评估。
在所有3例患者的受累白质中均观察到N-乙酰天门冬氨酸弥漫性或局灶性降低。这些降低似乎与轴突损伤一致。此外,还观察到胆碱和肌酸水平轻度升高;这可能是由于星形细胞变化所致。
质子MRS成像可能有助于评估PMD患者的局部病理生理异常,并有助于将PMD与其他表现出不同代谢特征的脑白质营养不良相鉴别。