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Reproducibility and Absolute Quantification of Muscle Glycogen in Patients with Glycogen Storage Disease by 13C NMR Spectroscopy at 7 Tesla

机译:糖原贮积病患者肌肉糖原的重现性和绝对定量通过13C NMR光谱在7 Tesla下进行

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摘要

Carbon-13 magnetic resonance spectroscopy (13C MRS) offers a noninvasive method to assess glycogen levels in skeletal muscle and to identify excess glycogen accumulation in patients with glycogen storage disease (GSD). Despite the clinical potential of the method, it is currently not widely used for diagnosis or for follow-up of treatment. While it is possible to perform acceptable 13C MRS at lower fields, the low natural abundance of 13C and the inherently low signal-to-noise ratio of 13C MRS makes it desirable to utilize the advantage of increased signal strength offered by ultra-high fields for more accurate measurements. Concomitant with this advantage, however, ultra-high fields present unique technical challenges that need to be addressed when studying glycogen. In particular, the question of measurement reproducibility needs to be answered so as to give investigators insight into meaningful inter-subject glycogen differences. We measured muscle glycogen levels in vivo in the calf muscle in three patients with McArdle disease (MD), one patient with phosphofructokinase deficiency (PFKD) and four healthy controls by performing 13C MRS at 7T. Absolute quantification of the MRS signal was achieved by using a reference phantom with known concentration of metabolites. Muscle glycogen concentration was increased in GSD patients (31.5±2.9 g/kg w. w.) compared with controls (12.4±2.2 g/kg w. w.). In three GSD patients glycogen was also determined biochemically in muscle homogenates from needle biopsies and showed a similar 2.5-fold increase in muscle glycogen concentration in GSD patients compared with controls. Repeated inter-subject glycogen measurements yield a coefficient of variability of 5.18%, while repeated phantom measurements yield a lower 3.2% system variability. We conclude that noninvasive ultra-high field 13C MRS provides a valuable, highly reproducible tool for quantitative assessment of glycogen levels in health and disease.
机译:碳13磁共振波谱( 13 C MRS)提供了一种非侵入性方法来评估骨骼肌糖原水平并鉴定糖原贮积病(GSD)患者中过量的糖原蓄积。尽管该方法具有临床潜力,但目前尚未广泛用于诊断或后续治疗。尽管可以在较低的场上执行可接受的 13 C MRS,但 13 C的自然丰度低,信噪比自然较低的 13 C MRS希望利用超高磁场提供的增强信号强度的优势进行更精确的测量。然而,与这种优势相伴的是,超高场带来了独特的技术挑战,在研究糖原时需要解决。特别是,必须回答测量重现性的问题,以便使研究人员深入了解有意义的受试者间糖原差异。通过在7T进行 13 C MRS,我们测量了3例McArdle病(MD),1例磷酸果糖激酶缺乏症(PFKD)和4例健康对照的小腿肌肉的体内糖原水平。 MRS信号的绝对定量是通过使用具有已知代谢物浓度的参考模型实现的。与对照组(12.4±2.2 g / kg w。w。)相比,GSD患者的肌肉糖原浓度增加(31.5±2.9 g / kg w。w。)。在三名GSD患者中,还从针刺活检的肌肉匀浆中生化测定了糖原,与对照组相比,GSD患者的肌肉糖原浓度增加了类似的2.5倍。重复的受试者间糖原测量得出的变异系数为5.18%,而重复的体模测量得出的变异系数较低,为3.2%。我们得出的结论是,非侵入性超高磁场 13 C MRS为定量评估健康和疾病中的糖原水平提供了一种有价值的,高度可重复的工具。

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