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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >A novel ion-exclusion chromatography-mass spectrometry method to measure concentrations and cycling rates of carbohydrates and amino sugars in freshwaters
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A novel ion-exclusion chromatography-mass spectrometry method to measure concentrations and cycling rates of carbohydrates and amino sugars in freshwaters

机译:一种新颖的离子排斥色谱-质谱法,用于测量淡水中碳水化合物和氨基糖的浓度和循环速率

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The concentrations of free neutral carbohydrates and amino sugars were determined in freshwater samples of distinct matrix complexity, including meso-, eu- and dystrophic lakes and ponds, using high- performance ion-exclusion chromatography (HPIEC) coupled to mass spectrometry (MS). In contrast to other methods, our approach allowed the quantification of free neutral carbohydrates and amino sugars at low nM concentrations without derivatization, de-salting or pre-concentration. New sample preparation procedures were applied prior to injection employing syringe and hollow fiber filtration. Analytes were separated on a strong cation exchange resin under 100% aqueous conditions using 0.1% formic acid as a mobile phase. To minimize background noise in MS, analytes were detected in a multiple reaction monitoring scan mode with double ion filtering. Detection limits of carbohydrates and amino sugars ranged between 0.2 and 2nM at a signal-to-noise ratio >5. Error ranged between 1 and 12% at 0.5-500 nM levels. Using a stable isotope dilution approach, both the utilization and recycling of glucose in Lake Zurich was observed. In contrast, N-acetyl-glucosamine was equally rapidly consumed but there was no visible de novo production. The simple and rapid sample preparation makes our protocol suitable for routine analyses of organic compounds in freshwater samples. Application of stable isotope tracers along with accurate measures of carbohydrate and amino sugar concentrations enables novel insights into the compound in situ dynamics.
机译:使用高效离子排阻色谱法(HPIEC)与质谱(MS)结合,测定了基质不同的淡水样品(包括中营养,中营养和营养不良的湖泊和池塘)中游离中性碳水化合物和氨基糖的浓度。与其他方法相比,我们的方法允许定量分析低nM浓度的游离中性碳水化合物和氨基糖,而无需衍生化,脱盐或预浓缩。在进样前采用注射器和中空纤维过滤进行新的样品制备程序。使用0.1%甲酸作为流动相,在100%水性条件下,在强阳离子交换树脂上分离分析物。为了将MS中的背景噪音降至最低,在具有双离子过滤功能的多反应监测扫描模式下检测了分析物。在信噪比> 5的情况下,碳水化合物和氨基糖的检测限介于0.2和2nM之间。在0.5-500 nM的水平下,误差范围为1%至12%。使用稳定的同位素稀释方法,观察到苏黎世湖中葡萄糖的利用和循环利用。相反,N-乙酰基-葡萄糖胺被同样快速消耗,但是没有可见的从头产生。简单快速的样品前处理使我们的方案适合常规分析淡水样品中的有机化合物。稳定同位素示踪剂的应用以及对碳水化合物和氨基糖浓度的准确测量,可以使人们对化合物的原位动力学有了新的认识。

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