首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >On-line in-tube solid phase microextraction coupled to capillary liquid chromatography-diode array detection for the analysis of caffeine and its metabolites in small amounts of biological samples
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On-line in-tube solid phase microextraction coupled to capillary liquid chromatography-diode array detection for the analysis of caffeine and its metabolites in small amounts of biological samples

机译:在线管内固相微萃取偶联至毛细管液相色谱 - 二极管阵列检测,用于分析咖啡因及其代谢物,少量生物样品

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摘要

In-tube solid phase microextraction (IT-SPME) coupled on-line to capillary liquid chromatography with diode array detection provides a simple and fast analytical methodology for the simultaneous quantitation of caffeine and its three primary metabolites (theobromine, paraxanthine and theophylline) in micro samples of serum, saliva and urine matrices. The sample amount required for one analysis was only 2.5 mu L of saliva, 6.25 mu L of serum or 40 mu L of urine, a requirement for its implementation in a hospital laboratory for preterm newborns, where sample availability is a major problem. In standard conditions, 25 mu L of diluted saliva or serum (or 100 mu L, of urine) were processed by IT-SPME in 30 cm of commercially available capillary GC column coated with ZB-FFAP (100% nitroterephthalic modified polyethylene glycol). The retained compounds were desorbed from the IT-SPME capillary by the mobile phase (a gradient mixture of water and methanol) and the separation was carried out in a C18 column (150 mm x 0.5 mm i.d., 5 mu m particle size). Analytes eluted before 14 min, at a flow rate of 15 mu L min(-1), and were detected by absorbance at 275 nm. The calibration graphs presented good linearity (R-2 > 0.99), without the presence of matrix effect, and recoveries between 84 and 112% were obtained. Limits of detection (S/N =3) were 0.1 mu g.mL(-1) in serum and 0.5 mu g.mL(-1) in saliva and urine samples, for all compounds, and the intra- and inter-day variation coefficients (n = 3) were between 3 and 17%. Analytical figures of merit were similar to those proposed by other methodologies, but using lower sample volume and a faster and simpler sample treatment and analysis. Paired samples of serum and saliva from preterm newborns treated with caffeine at the pediatric intensive care unit were analyzed by the method, with statistically equivalent results for caffeine concentrations. (C) 2019 Elsevier B.V. All rights reserved.
机译:管中固相微萃取(IT-SPME)与二极管阵列检测耦合到毛细管液相色谱,提供了一种简单而快速的分析方法,用于同时定量咖啡因及其三种主要代谢物(Theobromine,Paraxanthine和Theophylline)的微量血清,唾液和尿基质样品。一种分析所需的样品仅为2.5亩唾液,6.25亩血清或40亩尿液,这是其在医院实验室的实施要求,以便样品可用性是一个主要问题。在标准条件下,通过IT-SPME在30cm的市售毛细血管GC柱中加工25μl稀释的唾液或尿液中的血清(或100μl),涂有Zb-FFAP(100%亚透明术改性聚乙二醇)。通过流动相(水和甲醇的梯度混合物)从IT-SPME毛细管中解吸所保留的化合物,并在C18柱(150mM×0.5mM I.D.,5μm粒度)中进行分离。在14分钟之前洗脱的分析物,流速为15μlmin(-1),并通过275nm的吸光度检测。校准图呈现出良好的线性度(R-2> 0.99),而不存在基质效应,并获得84至112%之间的回收率。用于血清中检测限值(S / N = 3)为0.1μmg.ml(-1)唾液中的0.5μmg.ml(-1),所有化合物和尿液样本中的尿液和尿液变异系数(n = 3)在3到17%之间。优异的分析图与其他方法提出的那些类似,但使用较低的样品体积和更快,更简单的样品处理和分析。通过该方法分析来自在儿科重症监护单元的咖啡因处理的早产的血清和唾液的血清和唾液的样品,咖啡因浓度的统计上等同的结果。 (c)2019 Elsevier B.v.保留所有权利。

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