首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Ethyl-bridged hybrid column as an efficient alternative for HPLC analysis of plasma amino acids by pre-column derivatization with 6-aminoquinolyl-N-hydroxysuccinimidyl carbamate
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Ethyl-bridged hybrid column as an efficient alternative for HPLC analysis of plasma amino acids by pre-column derivatization with 6-aminoquinolyl-N-hydroxysuccinimidyl carbamate

机译:乙基桥杂化柱可通过6-氨基喹啉基-N-羟基琥珀酰亚胺基氨基甲酸酯的预柱衍生来高效液相色谱分析血浆氨基酸

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Conventional C18 silica columns have proven to be useful for the analysis of amino acids (AA) from protein hydrolysates but undesirable peak overlapping is usually found when analyzing body fluids given that a large number of AAs are present in the samples. As an alternative to silica packings, an ethyl bridged packing for reversed-phase liquid chromatography of derivatized AAs with 6-aminoquinolyl-N-hydroxysuccinimidyl carbamate (AQC) has been evaluated. The new packing material improves the separation efficiency allowing better separations when analyzing biological fluids. Moreover, this packing has advantages for routine AA analysis, such as a decrease in the total running time and an increase in the life-time of the columns. The pH of the mobile phase has a significant effect on the elution behavior of the AQC hydrolysis product (AMQ) and on the AA derivatives. It is not possible to elute AMQ before detecting the first AA derivative, which requires an accurate adjustment of the pH in the range of 5.30-5.35 to obtain good separation and resolution for the most polar compounds. Under the conditions proposed, it is possible to separate all AAs except the Gly-Gln pair, which is not a problem when hydrolyzed samples are analyzed. The AMQ-Ser pair requires either the use of a different mobile phase pH for its baseline separation or the use of fluorescence detection. Two different procedures for protein removal from plasma samples have been evaluated, solvent precipitation and ultrafiltration (UF) and it has been found that UF gives better results as no significant losses of AAs were observed. The validation of the proposed method with UV detection gives method detection limits in the range of 8-12 mu M, with repeatability values <8% (n = 6) and inter-day precision in plasma samples ranging from 4 to 13% (n = 4). (C) 2016 Elsevier B.V. All rights reserved.
机译:事实证明,常规的C18硅胶柱可用于分析蛋白质水解产物中的氨基酸(AA),但由于样品中存在大量AA,因此在分析体液时通常会发现不希望的峰重叠。作为二氧化硅填料的替代品,已评估了用6-氨基喹啉基-N-羟基琥珀酰亚胺基氨基甲酸酯(AQC)进行衍生化AA的反相液相色谱分析的乙基桥接填料。新的填料提高了分离效率,在分析生物流体时可以实现更好的分离。而且,这种填料具有常规AA分析的优势,例如减少了总运行时间并增加了色谱柱的使用寿命。流动相的pH对AQC水解产物(AMQ)和AA衍生物的洗脱行为具有重要影响。在检测到一阶AA衍生物之前不可能洗脱AMQ,这需要在5.30-5.35范围内精确调节pH值才能获得大多数极性化合物的良好分离和分离度。在建议的条件下,可以分离除Gly-Gln对以外的所有AA,这在分析水解样品时不是问题。 AMQ-Ser对需要使用不同的流动相pH值进行基线分离或使用荧光检测。已经评估了两种不同的从血浆样品中去除蛋白质的方法,即溶剂沉淀法和超滤法(UF),并且由于未观察到明显的AA损失,UF的结果更好。通过紫外线检测对提出的方法进行验证,方法检测限为8-12μM,重复性值<8%(n = 6),血浆样品的日间精密度为4%至13%(n = 4)。 (C)2016 Elsevier B.V.保留所有权利。

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