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An Optimization of Liquid–Liquid Extraction of Urinary Volatile and Semi-Volatile Compounds and Its Application for Gas Chromatography-Mass Spectrometry and Proton Nuclear Magnetic Resonance Spectroscopy

机译:尿挥发性液液提取的优化及其对气相色谱 - 质谱和质子核磁共振光谱的应用

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摘要

Urinary volatile compounds (VCs) have been recently assessed for disease diagnoses. They belong to very diverse chemical classes, and they are characterized by different volatilities, polarities and concentrations, complicating their analysis via a single analytical procedure. There remains a need for better, lower-cost methods for VC biomarker discovery. Thus, there is a strong need for alternative methods, enabling the detection of a broader range of VCs. Therefore, the main aim of this study was to optimize a simple and reliable liquid–liquid extraction (LLE) procedure for the analysis of VCs in urine using gas chromatography-mass spectrometry (GC-MS), in order to obtain the maximum number of responses. Extraction parameters such as pH, type of solvent and ionic strength were optimized. Moreover, the same extracts were analyzed using Proton Nuclear Magnetic Resonance Spectroscopy ( H-NMR), to evaluate the applicability of a single urine extraction for multiplatform purposes. After the evaluation of experimental conditions, an LLE protocol using 2 mL of urine in the presence of 2 mL of 1 M sulfuric acid and sodium sulphate extracted with dichloromethane was found to be optimal. The optimized method was validated with the external standards and was found to be precise and linear, and allowed for detection of >400 peaks in a single run present in at least 50% of six samples—considerably more than the number of peaks detected by solid-phase microextracton fiber pre-concentration-GC-MS (328 ± 6 vs. 234 ± 4). H-NMR spectroscopy of the polar and non-polar extracts extended the range to >40 more (mainly low volatility compounds) metabolites (non-destructively), the majority of which were different from GC-MS. The more peaks detectable, the greater the opportunity of assessing a fingerprint of several compounds to aid biomarker discovery. In summary, we have successfully demonstrated the potential of LLE as a cheap and simple alternative for the analysis of VCs in urine, and for the first time the applicability of a single urine solvent extraction procedure for detecting a wide range of analytes using both GC-MS and H-NMR analysis to enhance putative biomarker detection. The proposed method will simplify the transport between laboratories and storage of samples, as compared to intact urine samples.
机译:最近已评估尿挥发性化合物(VCS)疾病诊断。它们属于非常多样化的化学类,它们的特征在于不同的挥发性,极性和浓度,通过单一分析程序使其分析复杂化。仍然需要更好,更低成本的VC Biomarker发现方法。因此,存在替代方法的强烈需要,从而能够检测更广泛的VCS。因此,本研究的主要目的是优化使用气相色谱 - 质谱(GC-MS)进行尿液中VCs的简单可靠的液 - 液 - 萃取(LLE)程序,以获得最大数量回复。优化了诸如pH,溶剂类型和离子强度的提取参数。此外,使用质子核磁共振谱(H-NMR)分析相同的提取物,以评估单一尿液提取的适用性以进行多层形目的。在实验条件评价之后,发现使用2mL硫酸2mL尿酸和用二氯甲烷萃取的硫酸钠的尿液中使用2ml尿液的LLE方案是最佳的。用外部标准验证了优化的方法,发现是精确和线性的,并且在六个样品中至少50%的单个运行中检测> 400峰的检测 - 大于固体检测到的峰值数量 - 相片微萃取孔纤维预浓度-GC-MS(328±6 vs.234±4)。极性和非极性提取物的H-NMR光谱延伸到> 40(主要是低挥发性化合物)代谢物(非破坏性),其中大多数与GC-MS不同。可检测到的峰值越多,评估几种化合物的指纹的机会越大,以帮助生物标志物发现。总之,我们已经成功地证明了LLE作为尿液中VCS分析的便宜和简单的替代方案,并且首次使用单一尿溶溶剂提取程序的适用性来检测使用GC-检测各种分析物MS和H-NMR分析提高推定的生物标志物检测。与完整的尿液样本相比,所提出的方法将简化实验室和样品的储存之间的运输。

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