Abstract A novel dual labeling approach enables converting fluorescence labeling reagents into fluorogenic ones <ce:italic>via</ce:italic> introduction of purification tags. Application to determination of glyoxylic acid in serum
首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >A novel dual labeling approach enables converting fluorescence labeling reagents into fluorogenic ones via introduction of purification tags. Application to determination of glyoxylic acid in serum
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A novel dual labeling approach enables converting fluorescence labeling reagents into fluorogenic ones via introduction of purification tags. Application to determination of glyoxylic acid in serum

机译:一种新型双标记方法使荧光标记试剂能够将荧光标记试剂转化为荧光的试剂通过纯化标签引入。 血清中乙醛酸测定的应用

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AbstractPre-column derivatization with fluorescence labeling reagents involves many problems including crowded chromatograms, possibility of the introduction of analytical errors, and poor selectivity. Herein we report a novel purification tag/fluorophore dual labeling approach based on a multi-component reaction to solve this major problem. Glyoxylic acid was recently identified as an early biomarker for diabetes, thus it was selected as a model analyte for our new dual labeling approach. Using the multi-component Petasis reaction, we could introduce a fluorophore (1-pyreneboronic acid, 1-PyBA) and a purification tag (taurine) to our target analyte (glyoxylic acid) in one step reaction. Using taurine as the amine reactant in Petasis reaction leads to the formation of a reaction product with a terminal sulfonic acid group which can be selectively retained on an anion exchange sorbent allowing excess fluorescent 1-PyBA reagent and its fluorescent decomposition products to be washed away. Then, quantification of the formed analyte-fluorophore-purification tag adduct was carried out by a simple isocratic HPLC-fluorescence detection method. The newly developed technique allowed highly selective, very rapid and efficient determination of glyoxylic acid in human serum eliminating endogenous components and excess reagent interference. Glyoxylic acid was determined in serum at a final concentration down to 30nM (600 fmol/injection) with good recovery (87.0%), accuracy (? 2.2 to 9.2) and precision (%RSD ≤ 8.7).
机译:<![cdata [ 抽象 用荧光标记试剂的列前衍生化涉及许多问题,包括具有拥挤色谱图,包括引入分析误差的可能性,以及较差的选择性。在此,我们报告了一种基于多组分反应的新型纯化标签/荧光团双标记方法,以解决这一主要问题。最近将拟甲氧基酸鉴定为糖尿病的早期生物标志物,因此选择了新的双标签方法的模型分析物。使用多组分胶囊反应,在一步反应中,我们可以将荧光团(1-芘硼酸,1-PYBA)和纯化标签(牛磺酸)引入我们的靶分析物(乙醛酸)。使用牛磺酸作为唾液反应中的反应物导致与末端磺酸基团的反应产物形成,其可以选择性地保留在阴离子交换吸附剂上,允许过量的荧光1-PIBA试剂及其荧光分解产物被洗掉。然后,通过简单的等物质HPLC-荧光检测方法进行形成的分析物 - 荧光纯化标签加合物的定量。新开发的技术允许高度选择性,非常快速有效地测定人血清中的乙醛酸消除内源性组分和过量的试剂干扰。在血清中以最终浓度测定甘油酸,较低至30nm(600 fmol /注射),恢复良好(87.0%),精度(α2.2至9.2)和精确度(%RSD≤8.7)。

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