Zinellu Angelo, Pisanu Salvatore, Zinellu Elisabetta, Lepedda Antonio J, Cherchi Gian Mario, Sotgia Salvatore, Carru Ciriaco, Deiana Luca, Formato Marilena
Dipartimento di Scienze Biomediche, Cattedra di Biochimica Clinica, Università degli Studi di Sassari, Italia.
Electrophoresis. 2007 Jul;28(14):2439-47. doi: 10.1002/elps.200600668.
The report describes a rapid and simple CE method using LIF detection for the analysis of unsaturated disaccharides obtained from enzymatic depolymerization of plasma chondroitin sulfate (CS) isomers. The disaccharide reducing groups were labeled with 2-aminoacridone (AMAC). The fluorotagged products can be separated by reversed-polarity CE using a sodium acetate buffer, pH 3.8, in the presence of 0.05% methylcellulose. The choice of the appropriate electrophoretic conditions was performed after a deep analysis of the most important parameters affecting analyte separation. In particular, the effect of both run buffer concentration and pH on resolution, efficiency, migration times, and peak area was evaluated. The selected electrophoretic conditions allowed us to separate the CS isomers-derived Delta-disaccharides in less than 12 min, also resolving the nonsulfated disaccharides released from CS isomers from those released from hyaluronan (HA). Moreover, these conditions gave a good reproducibility of both the migration times (CV%, 0.25) and the peak areas (CV%, 1.4). Intra- and interassay CV were 5.37 and 7.23%, respectively, and analytical recovery was about 86%. The applicability of the above method to the quantitative and structural disaccharide analyses of plasma CS isomers was investigated. Data obtained from 44 healthy human subjects were compared with those obtained by a fluorophore-assisted carbohydrate electrophoresis (FACE) reference assay, by using the Passing and Bablok regression and Bland-Altman tests. The developed method could represent a good tool for an ultrasensitive analysis of CS isomers in biological samples from different sources, particularly when samples are available in very low amounts.
该报告描述了一种快速简便的毛细管电泳(CE)方法,采用激光诱导荧光(LIF)检测,用于分析从血浆硫酸软骨素(CS)异构体酶解聚合得到的不饱和二糖。二糖还原基团用2-氨基吖啶酮(AMAC)标记。在0.05%甲基纤维素存在下,使用pH 3.8的醋酸钠缓冲液,通过反相极性CE可分离荧光标记产物。在深入分析影响分析物分离的最重要参数后,选择了合适的电泳条件。特别评估了运行缓冲液浓度和pH对分离度、效率、迁移时间和峰面积的影响。所选的电泳条件使我们能够在不到12分钟内分离CS异构体衍生的Δ-二糖,还能将CS异构体释放的非硫酸化二糖与透明质酸(HA)释放的二糖区分开来。此外,这些条件下迁移时间(变异系数,0.25)和峰面积(变异系数,1.4)都具有良好的重现性。批内和批间变异系数分别为5.37%和7.23%,分析回收率约为86%。研究了上述方法在血浆CS异构体定量和结构二糖分析中的适用性。通过使用Passing和Bablok回归以及Bland-Altman检验,将44名健康人类受试者的数据与荧光辅助碳水化合物电泳(FACE)参考测定法获得的数据进行了比较。所开发的方法可能是一种用于超灵敏分析不同来源生物样品中CS异构体的良好工具,特别是当样品量非常少时。