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首页> 外文期刊>Analytical and bioanalytical chemistry >Direct aqueous measurement of 25-hydroxyvitamin D levels in a cellular environment by LC-MS/MS using the novel chemical derivatization reagent MDBP
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Direct aqueous measurement of 25-hydroxyvitamin D levels in a cellular environment by LC-MS/MS using the novel chemical derivatization reagent MDBP

机译:使用新型化学品衍生物试剂MDBP,通过LC-MS / MS直接含水测量25-羟基乙多氨酸水平的细胞环境中的水平

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摘要

Vitamin D measurements in biological fluids by mass spectrometry are challenging at very low concentration levels. As a result, chemical derivatization is often employed to enhance the ionization properties of low abundant vitamin D compounds. Cookson-type reagents such as 4-phenyl-1,2,4-triazoline-3,5-dione (PTAD) or similar derivatives work well but require careful, water-free experimental conditions, as traces of water inactivate the reagent and inhibit or stop the derivatization reactions, thus making quantitative measurements in aqueous samples impossible. We describe a novel electrospray liquid chromatography-tandem mass spectrometry (LC-MS/MS) assay for determining 25-hydroxyvitamin D-3 (25(OH) D-3) directly in aqueous cellular systems using a new derivatization reagent, the ionic liquid 12-(maleimidyl) dodecyl-tri-n-butylphosphonium bromide (MDBP). The proof-of-concept for the MDBP assay was demonstrated by measuring the levels of 25(OH)D-3 in four different human cell types, namely T cells, helper T cells, B cells, and macrophages. In addition to the ability to determine the levels of 25(OH)D-3 directly in aqueous samples, the cellular integrity was maintained in our application. We show the time-dependent uptake of 25(OH)D-3 into the investigated cells to demonstrate the applicability of the new label. Furthermore, the MDBP derivatization technique may be equally useful in imaging mass spectrometry, where it could be used for response enhancements of spatially localized vitamin D metabolites on wet tissue surfaces, without destroying the integrity of the tissue surface.
机译:通过质谱法在生物流体中测量的维生素D测量在非常低的浓度水平上是挑战。结果,通常采用化学衍生化以增强低丰富的维生素D化合物的电离性能。 Cookson型试剂如4-苯基-1,2,4-三唑啉-3,5-二酮(PTAD)或类似衍生物很好,但需要仔细的无水实验条件,因为痕量的水灭活试剂并抑制或停止衍生化反应,从而在不可能的水性样品中进行定量测量。我们描述了一种新型电喷雾液相色谱 - 串联质谱(LC-MS / MS)测定法,用于使用新的衍生试剂,离子液体直接在含水细胞体系中确定25-羟基vitamind-3(25(OH)D-3) 12-(马来酰亚胺)十二烷基 - 三丁基鏻溴化鏻(MDBP)。通过测量四种不同的人细胞类型,即T细胞,辅助T细胞,B细胞和巨噬细胞,通过测量25(OH)D-3的水平来证明MDBP测定的概念。除了在直接在水性样品中确定25(OH)D-3水平的能力之外,我们的应用中将维持细胞完整性。我们将时间依赖于25(OH)D-3进入所研究的细胞,以证明新标签的适用性。此外,MDBP衍生化技术可以同样可用于成像质谱法,其中可用于湿组织表面上的空间局部化维生素D代谢物的响应增强,而不会破坏组织表面的完整性。

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