Department of Metabolic Biochemistry, Rouen University Hospital, Rouen 76000, France; Normandie Univ, UNIROUEN, CHU Rouen, INSERM U1245, 76000 Rouen, France; Normandie Univ, UNIROUEN, INSA Rouen, CNRS, COBRA, 76000 Rouen, France.
Normandie Univ, UNIROUEN, INSA Rouen, CNRS, COBRA, 76000 Rouen, France.
Clin Chim Acta. 2017 Dec;475:7-14. doi: 10.1016/j.cca.2017.09.024. Epub 2017 Oct 2.
Application of metabolic phenotyping could expand the pathophysiological knowledge of mucopolysaccharidoses (MPS) and may reveal the comprehensive metabolic impairments in MPS. However, few studies applied this approach to MPS.
We applied targeted and untargeted metabolic profiling in urine samples obtained from a French cohort comprising 19 MPS I and 15 MPS I treated patients along with 66 controls. For that purpose, we used ultra-high-performance liquid chromatography combined with ion mobility and high-resolution mass spectrometry following a protocol designed for large-scale metabolomics studies regarding robustness and reproducibility. Furthermore, 24 amino acids have been quantified using liquid chromatography coupled to tandem mass spectrometry (LC-MS/MS). Keratan sulfate, Heparan sulfate and Dermatan sulfate concentrations have also been measured using an LC-MS/MS method. Univariate and multivariate data analyses have been used to select discriminant metabolites. The mummichog algorithm has been used for pathway analysis.
The studied groups yielded distinct biochemical phenotypes using multivariate data analysis. Univariate statistics also revealed metabolites that differentiated the groups. Specifically, metabolites related to the amino acid metabolism. Pathway analysis revealed that several major amino acid pathways were dysregulated in MPS. Comparison of targeted and untargeted metabolomics data with in silico results yielded arginine, proline and glutathione metabolisms being the most affected.
This study is one of the first metabolic phenotyping studies of MPS I. The findings might help to generate new hypotheses about MPS pathophysiology and to develop further targeted studies of a smaller number of potentially key metabolites.
代谢表型分析的应用可以扩展黏多糖贮积症(MPS)的病理生理学知识,并可能揭示 MPS 中的全面代谢损伤。然而,很少有研究应用这种方法来研究 MPS。
我们对来自法国队列的 19 名 MPS I 患者和 15 名 MPS I 治疗患者以及 66 名对照者的尿液样本进行了靶向和非靶向代谢谱分析。为此,我们使用超高效液相色谱结合离子淌度和高分辨率质谱,采用了针对大规模代谢组学研究的设计,具有稳健性和重现性。此外,还使用液相色谱串联质谱法(LC-MS/MS)定量了 24 种氨基酸。使用 LC-MS/MS 方法也测量了硫酸角质素、硫酸乙酰肝素和硫酸皮肤素的浓度。使用单变量和多变量数据分析来选择有区别的代谢物。使用 mummichog 算法进行途径分析。
使用多变量数据分析,研究组产生了不同的生化表型。单变量统计还揭示了可区分组别的代谢物。具体来说,与氨基酸代谢有关的代谢物。途径分析表明,几种主要的氨基酸途径在 MPS 中失调。靶向和非靶向代谢组学数据与计算机模拟结果的比较显示,精氨酸、脯氨酸和谷胱甘肽代谢受影响最大。
这是 MPS I 代谢表型分析的首批研究之一。这些发现可能有助于产生关于 MPS 病理生理学的新假说,并进一步针对少数潜在关键代谢物进行靶向研究。