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通过多纤维交换-固相微萃取结合快速气相色谱/负化学-电子电离/质谱法对尿酮进行新型自动化高通量定量分析。

New automated and high-throughput quantitative analysis of urinary ketones by multifiber exchange-solid phase microextraction coupled to fast gas chromatography/negative chemical-electron ionization/mass spectrometry.

作者信息

Pacenti Marco, Dugheri Stefano, Traldi Pietro, Degli Esposti Filippo, Perchiazzi Nicola, Franchi Elena, Calamante Massimo, Kikic Ireneo, Alessi Paolo, Bonacchi Alice, Salvadori Edoardo, Arcangeli Giulio, Cupelli Vincenzo

机构信息

Occupational Health Division, Department of Public Health, Viale Morgagni 48, University of Florence, 50100 Florence, Italy.

出版信息

J Autom Methods Manag Chem. 2010;2010:972926. doi: 10.1155/2010/972926. Epub 2010 Jun 15.

Abstract

The present research is focused on automation, miniaturization, and system interaction with high throughput for multiple and specific Direct Immersion-Solid Phase Microextraction/Fast Gas Chromatography analysis of the urinary ketones. The specific Mass Spectrometry instrumentation, capable of supporting such the automated changeover from Negative Chemical to Electron Ionization mode, as well as the automation of the preparation procedure by new device called MultiFiber Exchange, through change of the fibers, allowed a friendly use of mass spectrometry apparatus with a number of advantages including reduced analyst time and greater reproducibility (2.01-5.32%). The detection limits for the seven ketones were less than 0.004 mg/L. For an innovative powerful meaning in high-throughput routine, the generality of the structurally informative Mass Spectrometry fragmentation patterns together with the chromatographic separation and software automation are also investigated.

摘要

本研究聚焦于自动化、小型化以及系统的高通量交互,用于对尿酮进行多种特定的直接浸入式固相微萃取/快速气相色谱分析。特定的质谱仪器能够支持从负化学电离模式到电子电离模式的自动切换,并且通过一种名为多纤维交换的新设备,通过更换纤维实现样品制备过程的自动化,这使得质谱仪的使用更加便捷,具有诸多优势,包括减少分析人员时间以及更高的重现性(2.01 - 5.32%)。七种酮的检测限均小于0.004 mg/L。为了在高通量常规分析中具有创新的强大意义,还对结构信息丰富的质谱裂解模式的通用性以及色谱分离和软件自动化进行了研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e65a/2902044/fbc9c138f778/JAMMC2010-972926.001.jpg

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