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用于生物样品的哈达玛变换毛细管电泳紫外检测

Hadamard transform CE-UV detection for biological samples.

作者信息

McReynolds Jennifer A, Gao Leyi, Barber-Singh Jennifer, Shippy Scott A

机构信息

Department of Chemistry (M/C 111), University of Illinois at Chicago, Chicago, Illinois 60607-7061, USA.

出版信息

J Sep Sci. 2005 Feb;28(2):128-36. doi: 10.1002/jssc.200401923.

Abstract

A Hadamard transform-capillary electrophoresis-UV (HT-CE-UV) detection technique is described for the analysis of biological samples. Pseudorandom injections of sample and buffer according to a simplex matrix obtained from the corresponding Hadamard matrix is performed with conventional capillaries. Alternating injections are achieved with a novel capillary "T" connector created by drilling conventional capillary dimensions through a 1-cm diameter polycarbonate disc. This connector design coupled with a switching system allows for rapid, electrokinetic injections of solution into alternating sample and buffer capillary arms for UV detection. The standard mixtures of nitric oxide (NO) metabolites, nitrite and nitrate, dissolved in physiological saline solution are injected into the separation capillary according to an 83-element injection sequence to obtain a signal-to-noise ratio (S/N) enhancement of ca. 4.5 over a single injection. Nitrite, being the less concentrated metabolite in NO detection and thereby more difficult to detect, was calibrated with the HT-CE-UV method and a limit of detection (LOD) of 0.56 microM was obtained. Rat blood plasma was analyzed with this detection system and demonstrated to be comparable with NO metabolite concentrations of previously published results. This HT-CE-UV method is described where a unique reservoir tube design that contains 8-microL standard nitrite sample volumes is placed over the end of the capillary arm to explore low volume limits for biological samples.

摘要

描述了一种用于生物样品分析的哈达玛变换 - 毛细管电泳 - 紫外(HT - CE - UV)检测技术。使用常规毛细管,根据从相应哈达玛矩阵获得的单纯形矩阵对样品和缓冲液进行伪随机进样。通过在直径为1厘米的聚碳酸酯圆盘上钻出常规毛细管尺寸而制成的新型毛细管“T”形连接器实现交替进样。这种连接器设计与切换系统相结合,可将溶液快速电动注入交替的样品和缓冲液毛细管臂中进行紫外检测。将溶解在生理盐溶液中的一氧化氮(NO)代谢物亚硝酸盐和硝酸盐的标准混合物按照83元素进样序列注入分离毛细管,与单次进样相比,信噪比(S/N)提高了约4.5倍。亚硝酸盐是NO检测中浓度较低的代谢物,因此更难检测,采用HT - CE - UV方法进行校准,检测限(LOD)为0.56微摩尔。用该检测系统对大鼠血浆进行分析,结果表明其与先前发表的结果中的NO代谢物浓度相当。描述了这种HT - CE - UV方法,其中在毛细管臂末端放置一个独特的储液管设计,该设计包含8微升标准亚硝酸盐样品体积,以探索生物样品的低体积限制。

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