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Ultrasensitive Quantification of Serum Vitamin D Metabolites Using Selective Solid-Phase Extraction Coupled to Microflow Liquid Chromatography and Isotope-Dilution Mass Spectrometry

机译:选择性固相萃取结合微流液相色谱和同位素稀释质谱法对血清维生素D代谢产物进行超灵敏定量

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The capacity for quantification of active metabolites of vitamin D (VitD) is highly valuable to evaluate the risks and therapies for numerous diseases such as multiple sclerosis. However, the extremely low circulating levels and poor detectability of some dihydroxyl metabolites such as the 1alpha,25-dihydroxy-VitD_(3) constitute a daunting challenge. Based on the combination of a selective solid-phase extraction (SPE) and a microflow liquid chromatography tandem mass spectrometry ((mu)LC-MS/MS), we developed an ultrasensitive method for the robust, selective, and accurate quantification of four key VitD metabolites, including 25-hydroxy-VitD_(2), 25-hydroxy-VitD_(3), 24(R),25-dihydroxy-VitD_(3), and 1alpha,25-dihydroxy-VitD_(3), in serum samples. A one-step derivatization was employed to improve the ionization efficiency of the metabolites. The SPE procedure was optimized so that the analytes were selectively extracted from serum, while the sample matrix was substantially simplified. By eliminating majority of undesirable compounds from the matrix, the selective SPE enabled a high sample loading volume on the (mu)LC column without causing overcapacity of the (mu)LC column and thus helped to achieve ultralow detect limits in serum. An on-column sample focusing approach was employed to prevent band-broadening, and a sufficient (mu)LC separation was achieved to eliminate endogenous interferences and to minimize ion suppression effect. Detect limits of the four metabolites ranged from 0.5-1 pg/mL, and the linearity was excellent for all compounds. The method showed high quantitative accuracy (error < 13.8percent) and precision (CV < 14.1percent). For 1alpha,25-dihydroxy-VitD_(3), a lower limit of quantification (LLOQ) of 5 pg/mL was validated. This high level of sensitivity, for the first time, enabled the robust and consistent LC/MS/MS-based analysis of the four metabolites in a large-scale clinical investigation. Serum samples from 281 multiple sclerosis patients and 22 healthy subjects were analyzed, and it was discovered that the levels of both 24(R),25-dihydroxy-VitD_(3) and 1alpha,25-dihydroxy-VitD_(3) were significantly lower in patients than healthy subjects (P < 0.05). This novel observation may imply that the incidence of multiple sclerosis is inversely associated with the levels of the two metabolites. Moreover, the method was highly robust and reproducible as evaluated extensively in the clinical analysis; therefore, it could serve as a more selective and accurate alternative to immunoassay for large-scale clinical studies.
机译:维生素D(VitD)活性代谢产物的定量能力对于评估多种疾病(如多发性硬化症)的风险和治疗方法非常有价值。然而,极低的循环水平和一些二羟基代谢物如1alpha,25-dihydroxy-VitD_(3)的可检测性很差,这是一个艰巨的挑战。基于选择性固相萃取(SPE)和微流液相色谱串联质谱(μLC-MS/ MS)的组合,我们开发了一种超灵敏方法,可对四个关键组分进行稳定,选择性和准确的定量血清中的VitD代谢产物,包括25-羟基-VitD_(2),25-羟基-VitD_(3),24(R),25-二羟基-VitD_(3)和1alpha,25-二羟基-VitD_(3)样品。采用一步衍生化以提高代谢物的电离效率。优化了SPE程序,以便从血清中选择性提取分析物,同时大大简化了样品基质。通过从基质中消除大多数不希望的化合物,选择性SPE使得μLC色谱柱的样品上样量大,而不会引起μLC色谱柱的超载,从而有助于实现血清中超低检测限。采用柱上样品聚焦方法来防止谱带展宽,并且获得了足够的μLC分离,以消除内源性干扰并使离子抑制效果最小化。四种代谢物的检出限为0.5-1 pg / mL,所有化合物的线性均非常好。该方法显示出很高的定量准确度(误差<13.8%)和精确度(CV <14.1%)。对于1alpha,25-dihydroxy-VitD_(3),验证了5 pg / mL的定量下限(LLOQ)。如此高的灵敏度首次使大规模临床研究中的四种代谢物能够进行基于LC / MS / MS的可靠且一致的分析。分析了281名多发性硬化症患者和22名健康受试者的血清样本,发现24(R),25-二羟基-VitD_(3)和1alpha,25-二羟基-VitD_(3)的水平均显着降低患者的健康状况高于健康受试者(P <0.05)。这种新颖的观察可能暗示多发性硬化症的发生与两种代谢物的含量成反比。而且,该方法具有很高的鲁棒性和可重复性,在临床分析中得到了广泛评估。因此,它可以作为大规模临床研究中免疫测定的一种更具选择性和准确性的替代方法。

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