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A rapid and fully automatic method for the accurate determination of a wide carbon-chain range of per- and polyfluoroalkyl substances (C4-C18) in human serum

机译:快速,全自动的方法,可准确测定人血清中宽范围的全链和多氟烷基物质(C4-C18)的碳链

摘要

A rapid and fully automatic method for determining 21 per- and polyfluoroalkyl substances (with carbon chains ranging from C4 to C18, including 13 PFCAs, 5 PFCAs, 2 Cl-PFESAs, and PFOSA) in human serum samples was developed. The HPLC parameters, Turboflow column, mobile phase, sample injection volume, loading flow rate, and sample cleanup and elution time were optimized. 25 mu L serum sample was directly injected into the developed on-line Turboflow SPE HPLC-MS/MS system for analysis after dilution. Matrix effects were corrected due to the matrix removal efficiency of the Turboflow column and sufficient types of internal isotope standards that were used. The established method showed a good linearity (r(2)>0.99), rapid processing time (20 min per sample), satisfactory recoveries (matrix spiked recoveries range from 84.6% to 114%) and precision (intra-day and inter-day RSDs ranged from 1.5% to 9.2% and from 1.1% to 7.0%, respectively). The limits of detection (LODs) of the 21 analyzed PFASs were between 0.008 and 0.19 ngmL(-1). The LODs of short- and long-chain PFASs, such as PFBA, PFPeA, PFHxDA, and PFODA, were 0.008, 0.022, 0.15 and 0.19 ngmL(-1), respectively; the spiked recoveries of these PFASs were 101, 105, 87.1, and 85.8%, respectively. Both the LODs and recoveries were better than previous studies. Further, serum PFASs concentrations detected by the presented on-line SPE method were consistent with the traditional off-line SPE method (r: 0.98-0.99), which verified the accuracy and applicability of the present method. The method shows good practical prospects in the analysis of trace per- and polyfluoroalkyl substances in human serum. (C) 2016 Elsevier B.V. All rights reserved.
机译:建立了一种快速,全自动的方法,用于测定人血清样品中的21种全氟和多氟烷基物质(碳链范围从C4到C18,包括13种PFCA,5种PFCA,2种Cl-PFESAs和PFOSA)。优化了HPLC参数,Turboflow色谱柱,流动相,样品进样量,上样流速以及样品净化和洗脱时间。将25μL血清样品直接注入已开发的在线Turboflow SPE HPLC-MS / MS系统中,进行稀释后进行分析。由于Turboflow色谱柱的基质去除效率和所用内部同位素标准品的类型足够,可以校正基质效应。建立的方法显示出良好的线性(r(2)> 0.99),快速的处理时间(每个样品20分钟),令人满意的回收率(基质加标回收率从84.6%至114%)和精度(日内和日间) RSD的范围分别为1.5%至9.2%和1.1%至7.0%。 21种分析的PFAS的检出限(LOD)在0.008至0.19 ngmL(-1)之间。短链和长链PFAS的LOD分别为0.008、0.022、0.15和0.19 ngmL(-1),如PFBA,PFPeA,PFHxDA和PFODA。这些PFAS的加标回收率分别为101、105、87.1和85.8%。 LOD和回收率均优于以前的研究。此外,通过提出的在线SPE方法检测的血清PFASs浓度与传统的离线SPE方法一致(r:0.98-0.99),这证明了本方法的准确性和适用性。该方法在人血清中痕量全氟和多氟烷基物质的分析中具有良好的应用前景。 (C)2016 Elsevier B.V.保留所有权利。

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