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采用毛细管电泳和高效液相色谱法高通量测定尿己糖胺诊断黏多糖贮积症。

High-throughput determination of urinary hexosamines for diagnosis of mucopolysaccharidoses by capillary electrophoresis and high-performance liquid chromatography.

机构信息

Department of Clinical Sciences, Polytechnic University of the Marche, Ospedali Riuniti, Presidio Salesi, Ancona, Italy.

出版信息

Anal Biochem. 2011 Apr 1;411(1):32-42. doi: 10.1016/j.ab.2010.12.016. Epub 2010 Dec 13.

Abstract

Mucopolysaccharidoses (MPS) diagnosis is often delayed and irreversible organ damage can occur, making possible therapies less effective. This highlights the importance of early and accurate diagnosis. A high-throughput procedure for the simultaneous determination of glucosamine and galactosamine produced from urinary galactosaminoglycans and glucosaminoglycans by capillary electrophoresis (CE) and HPLC has been performed and validated in subjects affected by various MPS including their mild and severe forms, Hurler and Hurler-Scheie, Hunter, Sanfilippo, Morquio, and Maroteaux-Lamy. Contrary to other analytical approaches, the present single analytical procedure, which is able to measure total abnormal amounts of urinary GAGs, high molecular mass, and related fragments, as well as specific hexosamines belonging to a group of GAGs, would be useful for possible application in their early diagnosis. After a rapid urine pretreatment, free hexosamines are generated by acidic hydrolysis, derivatized with 2-aminobenzoic acid and separated by CE/UV in ∼10min and reverse-phase (RP)-HPLC in fluorescence in ∼21min. The total content of hexosamines was found to be indicative of abnormal urinary excretion of GAGs in patients compared to the controls, and the galactosamine/glucosamine ratio was observed to be related to specific MPS syndromes in regard to both their mild and severe forms. As a consequence, important correlations between analytical response and clinical diagnosis and the severity of the disorders were observed. Furthermore, we can assume that the severity of the syndrome may be ascribed to the quantity of total GAGs, as high-molecular-mass polymers and fragments, accumulated in cells and directly excreted in the urine. Finally, due to the high-throughput nature of this approach and to the equipment commonly available in laboratories, this method is suitable for newborn screening in preventive public health programs for early detection of MPS disorders, diagnosis, and their treatment.

摘要

黏多糖贮积症(MPS)的诊断常常被延误,而且可能会发生不可逆转的器官损伤,从而降低可能的治疗效果。这凸显了早期和准确诊断的重要性。我们已经采用毛细管电泳(CE)和高效液相色谱(HPLC)对从尿中的糖胺聚糖和氨基葡聚糖衍生的氨基葡萄糖和半乳糖胺进行了高通量的同时测定,并在受各种 MPS 影响的受试者中进行了验证,包括其轻度和重度形式、Hurler 和 Hurler-Scheie、Hunter、Sanfilippo、Morquio 和 Maroteaux-Lamy。与其他分析方法不同,本单一分析程序能够测量尿 GAGs 的总异常量、高分子质量和相关片段,以及属于 GAG 组的特定己糖胺,这对于其早期诊断可能具有应用价值。经过快速的尿液预处理,通过酸性水解生成游离己糖胺,然后用 2-氨基苯甲酸衍生化,在约 10min 内通过 CE/UV 分离,在约 21min 内通过反相(RP)-HPLC 分离荧光。与对照组相比,己糖胺的总量表明患者的尿 GAG 排泄异常,并且观察到半乳糖胺/葡萄糖胺比值与特定 MPS 综合征及其轻度和重度形式有关。因此,观察到分析响应与临床诊断和疾病严重程度之间存在重要相关性。此外,我们可以假设综合征的严重程度可能归因于细胞中积累的总 GAGs、高分子量聚合物和片段的数量,以及直接排泄到尿液中的数量。最后,由于这种方法具有高通量的性质,并且实验室中通常都有设备,因此该方法适用于预防公共卫生计划中的新生儿筛查,以便早期发现 MPS 疾病、诊断和治疗。

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