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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Determination of 3-mercaptopropionic acid by HPLC: A sensitive method for environmental applications
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Determination of 3-mercaptopropionic acid by HPLC: A sensitive method for environmental applications

机译:高效液相色谱法测定3-巯基丙酸:环境应用中的一种敏感方法

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The organic sulfur compound 3-mercaptopropionic acid (3-MPA) is an important thiol intermediate in organic sulfur metabolism in natural environments. It is generated during degradation of sulfur-containing amino acids (e.g. methionine) and from demethylation of dimethylsulfoniopropionate (DMSP). This pathway is an alternative enzymatic process in the DMSP catabolism that routes sulfur away from the climatically-active dimethyl sulfide (DMS). 3-MPA detection and subsequent quantification in different matrices is difficult due to its extreme reactivity. We therefore developed a sensitive method for determination of 3-MPA based on pre-column derivatization with monobromobimane and analysis by high-performance liquid chromatography (HPLC) with fluorescence detection. This methodology was first tested with 3-MPA standards under low (0.005-0.2 mu mol L-1) and high (1-25 mu mol L-1) concentrations. For the optimization of the reaction, CHES and, alternatively, Tris-HCl buffers were evaluated in the derivatization step, with Tris-HCl showing more effective separation of thiol derivatives and a better 3-MPA peak shape. The detection limit was 4.3 nmol L-1 with a 10 mu L sample injection, and mean recoveries of 3-MPA ranged from 97 to 105% in estuarine waters with different salinities (0.17 and 35.9 ppt). The linearity (r> 0.99) and repeatability of detector response, with intra- and inter-day precision (% CV) of 2.68-7.01% and 4.86-12.5%, respectively, confirmed the reliability of the method. Previous 3-MPA analytical methods required immediate analysis due to unstable derivatives, but in this method we achieved high stability of the derivatized samples when stored at 4 degrees C, with only a 3-5% loss after more than one year of storage. This method was successfully applied to measure 3-MPA concentrations and rates of 3-MPA production in a variety of intertidal estuarine sediment slurries. Dissolved 3-MPA concentrations in these sediment slurries varied between 2 and 237 mu mol L-1 and, 3-MPA net fluxes ranged in wet sediments between -3.6 +/- 1.7 and 30 +/- 15 mu mol L-1 g(-1) h(-1). Thus, the application of this optimized methodology showed an efficient performance for measuring 3-MPA in environmental samples, with a straightforward sample derivatization and a simple analysis of stable 3-MPA derivatives. (C) 2015 Elsevier B.V. All rights reserved.
机译:有机硫化合物3-巯基丙酸(3-MPA)是自然环境中有机硫代谢中重要的硫醇中间体。它是在含硫氨基酸(例如蛋氨酸)降解过程中和二甲基磺酸丙酸二甲酯(DMSP)的去甲基化过程中产生的。该途径是DMSP分解代谢中的另一种酶促过程,可将硫从气候活性二甲基硫醚(DMS)转移出去。由于3-MPA具有极高的反应活性,因此很难在不同的基质中进行检测和后续定量。因此,我们开发了一种灵敏的方法,该方法用于基于一溴二苯甲酰胺的柱前衍生化并通过高效液相色谱(HPLC)和荧光检测进行分析。首先使用3-MPA标准在低(0.005-0.2μmol L-1)和高(1-25μmol L-1)浓度下测试此方法。为了优化反应,在衍生化步骤中评估了CHES和Tris-HCl缓冲液,Tris-HCl显示出更有效的硫醇衍生物分离效果和更好的3-MPA峰形。进样量为10 µL时,检出限为4.3 nmol L-1,在不同盐度(0.17和35.9 ppt)的河口水中,3-MPA的平均回收率在97%至105%之间。检测器响应的线性(r> 0.99)和日间精度(%CV)分别为2.68-7.01%和4.86-12.5%,证实了该方法的可靠性。以前的3-MPA分析方法由于不稳定的衍生物而需要立即进行分析,但是在这种方法中,当在4摄氏度下保存时,衍生样品的稳定性很高,在保存一年以上后损失仅为3-5%。该方法已成功应用于各种潮间带河口沉积物泥浆中3-MPA浓度和3-MPA生成速率的测量。这些沉积物浆液中溶解的3-MPA浓度在2至237μmol L-1之间变化,湿沉积物中3-MPA的净通量在-3.6 +/- 1.7至30 +/- 15μmol L-1 g之间变化-1)h(-1)。因此,这种优化方法的应用显示了对环境样品中3-MPA的有效测量,具有简单的样品衍生化和对稳定的3-MPA衍生物的简单分析。 (C)2015 Elsevier B.V.保留所有权利。

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