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用于游离胆红素前沿分析及其与人血清白蛋白相互作用研究的微芯片毛细管电泳

Microchip capillary electrophoresis for frontal analysis of free bilirubin and study of its interaction with human serum albumin.

作者信息

Nie Zhou, Fung Ying Sing

机构信息

Department of Chemistry, The University of Hong Kong, Hong Kong SAR, P. R. China.

出版信息

Electrophoresis. 2008 May;29(9):1924-31. doi: 10.1002/elps.200700596.

Abstract

To meet the need for bedside monitoring of free bilirubin for neonates under critical conditions, a microfluidic chip was fabricated and tested for its coupling with CE/frontal analysis (FA) to determine free bilirubin and study of its binding interaction with HSA, which regulated its concentration in plasma. The poly(methyl methacrylate) (PMMA) multichannel chip was fabricated by CO2 laser ablation and bonded with a fused-silica separation capillary for CE/FA separation with UV detection. The chip was designed to allow a complete assay of four electrophoretic runs using preconditioned channels to speed up the determination of free bilirubin and to deliver quick results for bedside monitoring. Under optimized conditions, the linear working range for free bilirubin was from 10 to 200 micromol with RSDs from 2.1 to 5.0% for n=3, and the LOD at 9 micromol for S/N=3. From a binding study between bilirubin and HSA under FA condition, the second binding constant for bilirubin-HSA was determined as 1.07x10(5) L/mol and the number of binding sites per HSA as 3.46. The results enabled the calculation of free bilirubin for jaundiced infants based on the clinically significant level of total bilirubin, producing a range of 118.3-119.4 micromol/L. The developed method is shown to meet the clinical requirement with additional margin of protection to detect the early rising level of free bilirubin prior to jaundice condition. The low-cost microchip CE/FA device is shown to produce quick results with high potential to deliver a suitable bed-side monitoring method for bilirubin management in neonates.

摘要

为满足对危重新生儿进行床旁游离胆红素监测的需求,制备了一种微流控芯片,并测试了其与毛细管电泳/前沿分析(CE/FA)联用测定游离胆红素以及研究其与血浆中调节其浓度的人血清白蛋白(HSA)结合相互作用的性能。聚甲基丙烯酸甲酯(PMMA)多通道芯片通过CO2激光烧蚀制备,并与熔融石英分离毛细管键合,用于CE/FA分离及紫外检测。该芯片设计为利用预处理通道进行四次电泳运行的完整分析,以加快游离胆红素的测定并为床旁监测提供快速结果。在优化条件下,游离胆红素的线性工作范围为10至200 μmol,n = 3时相对标准偏差(RSD)为2.1%至5.0%,信噪比(S/N)= 3时检测限为9 μmol。通过在FA条件下胆红素与HSA的结合研究,确定胆红素 - HSA的二级结合常数为1.07×10(5) L/mol,每个HSA的结合位点数为3.46。这些结果能够根据临床显著的总胆红素水平计算黄疸婴儿的游离胆红素,范围为118.3 - 119.4 μmol/L。所开发的方法显示出符合临床要求,并有额外的保护余量以检测黄疸发生前游离胆红素的早期上升水平。低成本的微芯片CE/FA装置显示出能快速产生结果,极有可能为新生儿胆红素管理提供合适的床旁监测方法。

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