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十八烷基功能化核壳磁性二氧化硅纳米颗粒作为一种强大的纳米复合吸附剂用于提取尿液挥发性有机代谢物。

Octadecyl functionalized core-shell magnetic silica nanoparticle as a powerful nanocomposite sorbent to extract urinary volatile organic metabolites.

作者信息

Qiao Zheng, Perestrelo Rosa, Reyes-Gallardo Emilia M, Lucena R, Cárdenas S, Rodrigues João, Câmara José S

机构信息

CQM, Centro de Química da Madeira, Universidade da Madeira, 9000-390 Funchal, Portugal.

Department of Analytical Chemistry, Institute of Fine Chemistry and Nanochemistry, Marie Curie Building, Campus de Rabanales, University of Córdoba, 14071 Córdoba, Spain.

出版信息

J Chromatogr A. 2015 May 8;1393:18-25. doi: 10.1016/j.chroma.2015.03.026. Epub 2015 Mar 14.

Abstract

In this present study, magnetic Fe3O4@SiO2 nanoparticles (MNPs) functionalized with octadecyl groups (Fe3O4@SiO2-C18 NPs) were synthesized, characterized and employed, for the first time, as powerful nanosorbent to extract endogenous volatile organic metabolites (EVOMs) namely, hexanal, heptanal, decanal, benzaldehyde, 4-heptanone, 5-methyl-2-furfural and phenol, described as potential biomarkers of cancer, from human urine. By using co-precipitation, surface modification methods, the carbon-ferromagnetic nanocomposite was synthesized and characterized by infrared spectrum (IR) and transmission electron microscopy (TEM). By coupling with gas chromatography-mass spectrometry (GC-qMS), a reliable, sensitive and cost-effective method was validated. To test the extraction efficiency of the carbon-ferromagnetic nanocomposite toward urinary EVOMs experimental variables affecting the extraction performance, including nanosorbent amount, adsorption time, elution time, and nature of elution solvent, were investigated in detail. The extraction process was performed by dispersing Fe3O4@SiO2-C18 NPs into working solution containing targeted VOMs, and into urine samples, and then eluted with an adequate organic solvent. The eluate was collected, concentrated and analyzed by GC-qMS. Under the optimized conditions, the LODs and LOQs achieved were in the range of 9.7-57.3 and 32.4-190.9ng/mL, respectively. Calibration curves were linear (r(2)≥0. 988) over the concentration ranges from 0.25 to 250ng/mL. In addition, a satisfying reproducibility was achieved by evaluating the intra- and inter-day precisions with relative standard deviations (RSDs) less than 3 and 11%, respectively. The method also afforded satisfactory results in terms of the matrix effect (72.8-96.1%) and recoveries (accuracy) higher than 75.1% for most of the studied EVOMs. The Fe3O4@SiO2-C18 NPs-based sorbent extraction combined with GC-qMS revealed that the new nanosorbent had a strong ability to retain the target metabolites providing a new, reliable and high throughput strategy for isolation of targeted EVOMs in human urine, suggesting their potential to be applied in other EVOMs.

摘要

在本研究中,首次合成、表征并应用了用十八烷基官能化的磁性Fe3O4@SiO2纳米颗粒(MNPs,即Fe3O4@SiO2-C18 NPs)作为强大的纳米吸附剂,从人尿液中提取内源性挥发性有机代谢物(EVOMs),即己醛、庚醛、癸醛、苯甲醛、4-庚酮、5-甲基-2-糠醛和苯酚,这些被描述为癌症的潜在生物标志物。通过共沉淀、表面改性方法合成了碳-铁磁纳米复合材料,并通过红外光谱(IR)和透射电子显微镜(TEM)对其进行了表征。通过与气相色谱-质谱联用(GC-qMS),验证了一种可靠、灵敏且经济高效的方法。为了测试碳-铁磁纳米复合材料对尿液中EVOMs的提取效率,详细研究了影响提取性能的实验变量,包括纳米吸附剂用量、吸附时间、洗脱时间和洗脱溶剂的性质。提取过程是将Fe3O4@SiO2-C18 NPs分散到含有目标挥发性有机代谢物的工作溶液和尿液样品中,然后用适当的有机溶剂洗脱。收集洗脱液,浓缩并通过GC-qMS进行分析。在优化条件下,实现的检测限(LOD)和定量限(LOQ)分别在9.7 - 57.3和32.4 - 190.9 ng/mL范围内。校准曲线在0.25至250 ng/mL的浓度范围内呈线性(r(2)≥0.988)。此外,通过评估日内和日间精密度,相对标准偏差(RSD)分别小于3%和11%,实现了令人满意的重现性。该方法在基质效应(72.8 - 96.1%)方面也给出了令人满意的结果,并且对于大多数研究的EVOMs,回收率(准确度)高于75.1%。基于Fe3O4@SiO2-C18 NPs的吸附剂提取与GC-qMS联用表明,这种新型纳米吸附剂具有很强的保留目标代谢物的能力,为分离人尿液中的目标EVOMs提供了一种新的、可靠且高通量的策略,表明它们有潜力应用于其他EVOMs的分析。

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