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NO2+化学电离飞行时间质谱法直接定量分析呼出气中的正戊烷

焦辉敏 谢园园 蒋吉春 张之昊 仓怀文 花磊 邓珊 顾晓洁

质谱学报2026,Vol.47Issue(1):34-41,8.
质谱学报2026,Vol.47Issue(1):34-41,8.DOI:10.7538/zpxb.2025.0037

NO2+化学电离飞行时间质谱法直接定量分析呼出气中的正戊烷

Direct Quantitative Analysis of n-Pentane in Exhaled Breath Using NO2+Chemical Ionization Time-of-Flight Mass Spectrometry

焦辉敏 1谢园园 2蒋吉春 2张之昊 2仓怀文 2花磊 2邓珊 3顾晓洁1

作者信息

  • 1. 大连交通大学交通工程学院,辽宁 大连 116028
  • 2. 中国科学院大连化学物理研究所,辽宁 大连 116023
  • 3. 大连医科大学附属第二医院,辽宁 大连 116027
  • 折叠

摘要

Abstract

The presence of n-pentane in breath mainly originates from lipid peroxidation within the body,a process triggered by free radicals attacking phospholipids in cell membranes.When the level of reactive oxygen species(ROS)increases in the body,it can further exacerbate lipid peroxidation,leading to an elevated release of lipid peroxidation products,including n-pentane.Therefore,the concentration of n-pentane in exhaled breath can serve as an effective biomarker for reflecting the degree of oxidative stress and lipid peroxidation,and its changes are closely related to various disease states.Additionally,the concentration of n-pentane in exhaled breath rises significantly after alcohol consumption,which is closely related to the reactive oxygen species generated during alcohol metabolism.Thus,the development of a direct and rapid method for quantitatively analyzing n-pentane in exhaled breath holds significant scientific value and practical significance.This study introduced a novel chemical ionization source with NO2+(NO2CI)as the reactant ion based on a vacuum ultraviolet(VUV)lamp.By directly ionizing NO2 molecules with VUV photons,NO2+reactant ions with high intensity were generated,which then underwent ion-molecular reactions with n-pentane molecules to produce the characteristic product ion[C5H11]+,achieving a branching ratio of 88.8%.This study also systematically investigated the effects of the humidity and sample flow rate on detection of n-pentane,and the dehumidification performance of a semiconductor cooler was validated.The experimental results showed that the optimized sample flow rate was 23 mL/min and sample humidity can significantly affect production of the reactant ion NO2+and characteristic ion[C5H11]+of n-pentane.The moisture in the sample can be effectively removed using the semiconductor cooler,thereby avoiding the interference on the detection of n-pentane.Under optimal experimental conditions,a good linearity of n-pentane in the concentration range of(10-1 000)×10-9(V/V)with a linear correlation coefficient(R2)of 0.995 4 was achieved.The limit of detection(LOD)was 0.5×10-9,while the quantification limit was 1.7×10-9 under the average measurement condition of 1 min,relative standard deviations(RSDs,n=5)ranged from 2.3%to 6.3%.Finally,this method was applied to directly dynamic quantification of n-pentane in the exhaled breath of two healthy non-smokers before and after alcohol consumption.The findings indicated that the proposed method has the advantages of high sensitivity,speed,and reliability,showcasing promising application potential and broad prospects in the trace-level detection of n-pentane in exhaled breath and related disease studies.

关键词

NO2+化学电离/质谱/呼出气/正戊烷

Key words

NO2+chemical ionization/mass spectrometry/exhaled gas/n-pentane

分类

化学化工

引用本文复制引用

焦辉敏,谢园园,蒋吉春,张之昊,仓怀文,花磊,邓珊,顾晓洁..NO2+化学电离飞行时间质谱法直接定量分析呼出气中的正戊烷[J].质谱学报,2026,47(1):34-41,8.

基金项目

辽宁省科技计划联合计划项目(2024JH2/102600010) (2024JH2/102600010)

中国科学院大连化学物理研究所-大连医科大学附属第二医院交叉学科联合基金项目(DMU-2&DICPUN202306) (DMU-2&DICPUN202306)

质谱学报

1004-2997

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