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1.
建立了在线液相-气相二维色谱测定卷烟主流烟气中的苯并[a]芘方法.采用剑桥滤片捕集烟气粒相物,环己烷萃取,以D12-苯并[a]芘为内标,然后用在线液相-气相二维色谱测定:样品直接进样进入液相色谱,经微型硅胶柱分离,含苯并[a]芘的部位切割进人气相色谱,排干溶剂后启动气相色谱升温,经毛细管柱进行分离,用质谱检测.本方法将烟气苯并[a]芘测定中的硅胶柱层析和气相色谱-质谱分析在线连接起来,可不经样品前处理净化直接进样分析;而且每次进样可达40 μL,与常规气相色谱-质谱分析最大进样2.0 μ.L相比,分析灵敏度提高了20倍.方法线性范围达0.08~ 50 ng/L,相关系数为r2=0.999,回收率为94.2%~105.5%;检出限和定量限分别为0.09和0.30 ng/支,应用本方法对14个不同类型市售卷烟和2R4F标准烟进行了测定,结果与GB/T21130-2007测定结果相符合.  相似文献   

2.
在线电化学/分离分析方法   总被引:1,自引:0,他引:1  
林祥钦  严川伟 《分析化学》1996,24(11):1347-1353
对电化学衍化之后续以分离分析手段的在线联用方法作了 概述,讨论了电化学/质谱,在化学。高效液相色谱/质谱,电质学/质谱/质谱,电化学/高效液相色谱和电化学/气相色谱等的研究与应用,展 望了这个领域的发展前景。  相似文献   

3.
《分析化学》2007,35(8):1024-1024
该书主要介绍了色谱-质谱、色谱-傅立叶变换红外光谱、色谱-原子光谱和色谱-色谱联用技术。该书简述了质谱、傅立叶变换红外光谱、原子光谱和核磁共振仪器的结构、工作原理、以及与色谱联用时对接口的一般要求。该书内容丰富,包括:液相色谱-质谱、毛细管电泳-质谱、色谱-傅立叶变换红外光谱、液相色谱-傅立叶变换红外光谱、薄层色谱-傅立叶变换红外光谱、色谱-原子光谱等联用技术,以及液相色谱-液相色谱、气相色谱-气相色谱、气相色谱-液相色谱等不同的分离模式色谱联用技术的应用实例。该书是《色谱技术丛书》之分册,在第一版基础上作了修改和充实,补充了新近发展的仪器、技术与应用实例。  相似文献   

4.
将复合毒素免疫亲和柱的柱填料填充至不锈钢柱(35 mm×4.6 mm),制成可重复使用的在线免疫亲和净化柱.在线净化过程的上样溶剂为磷酸盐缓冲液(PBS,pH 7.4),清洗溶剂为水,转移溶剂为乙腈-水(1∶1,V/V).采用PBS/甲醇溶液提取样品中真菌毒素,提取液直接进行在线免疫亲和净化-液相色谱-质谱/质谱分析,...  相似文献   

5.
裘亚  秦峰  闻宏亮  赵敬丹  刘浩  杨美成 《色谱》2015,33(12):1314-1319
建立了在线二维液相色谱-四极杆飞行时间质谱检测头孢噻吩钠杂质谱的方法,有效地解决了流动相中含不挥发性磷酸盐的色谱系统不适合用于液相色谱-质谱快速鉴定杂质的难题。一维高效液相色谱(HPLC)以Symmetry C18为色谱柱,以磷酸盐缓冲液(pH 2.5)和乙腈梯度洗脱;二维以ACQUITY UPLC BEH C18为色谱柱,以0.1%(v/v)甲酸水溶液和0.1%(v/v)甲酸乙腈溶液梯度洗脱。以HLB C18为捕集柱,用0.1%(v/v)甲酸水溶液进行捕集和脱盐,采用正离子模式采集数据。对头孢噻吩钠中6个杂质进行了结构鉴定,对其来源进行了分析,并进一步确证了《中国药典》2010年版对头孢噻吩钠杂质A认定有误。采用本方法可以快速、简便、灵敏地对头孢噻吩钠杂质谱进行检测。  相似文献   

6.
自制了一套液相色谱-质谱联用接口,接口包含大气压接口、离子源及连接高效液相色谱进样器和质谱采集软件的电子通讯接口。成功地将赛默飞世尔高效液相色谱戴安U3000与团队自主研制的APITOFMS10000相连。实验结果表明,自行搭建的液质联用仪有很好的稳定性(RSD=5.6%),线性相关系数(r2)为0.995 8,线性范围为2~2 000 pg,定量下限为2 pg,检出限为0.5 pg。可明显检出吡罗昔康、茶碱和泼尼松3种标准药品。实验数据表明自行研发的液相色谱-质谱联用接口满足应用要求,搭建的液相色谱-质谱联用仪在生物化学、医药分析、食品安全、环境检测等领域具有应用潜力。  相似文献   

7.
王培龙  田静  苏晓鸥 《分析化学》2008,36(2):215-218
研究建立了高效液相色谱-电感耦合等离子体质谱测定饲料中有机胂-洛克沙胂(ROX)和阿散酸(p-ASA)的方法。用反相高效液相色谱(Rp-HPLC)分离ROX和p-ASA,用电感耦合等离子体质谱(ICP-MS)在线分析砷含量,并与ROX和p-ASA标准色谱图和工作曲线对照,实现了对ROX和p-ASA两种常见的饲料添加胂制剂的分析。优化了液相色谱分离条件、电感耦合等离子体质谱的检测条件和提取条件,考察了样品基体对ROX和p-ASA的干扰。在优化条件下,ROX和p-ASA的检出限分别为0.6 ng/g和0.2 ng/g;不同浓度的ROX和p-ASA添加回收率为82.7%~97.6%;相对标准偏差低于8.1%。本方法操作简便,灵敏度高,重现性好,适合于饲料中ROX和p-ASA分析。  相似文献   

8.
综述了近十五年来液相色谱分析方法在环境水中农药残留分析中的应用,对各种常用的在线和离线样品预浓缩技术、检测器以及液相色谱与质谱等仪器的联用进行了讨论,并对液相色谱在农药残留分析中的应用前景进行了评价。  相似文献   

9.
对当前法庭科学领域中有机炸药的实验室和现场常用的检验技术如:气相色谱、液相色谱等色谱技术,原位电离质谱、同位素比质谱等质谱技术,气相色谱-质谱、液相色谱-质谱等色谱-质谱联用技术,毛细管电泳技术,离子迁移谱技术,红外光谱、拉曼光谱、太赫兹等光谱技术,荧光、电化学、表面等离子体共振等传感器技术进行了归类和总结,并对有机炸...  相似文献   

10.
基于液相色谱-质谱技术的代谢组学分析方法新进展   总被引:1,自引:0,他引:1  
液相色谱-质谱联用技术是代谢组学研究领域的主要技术平台之一,近年来基于液相色谱-质谱联用技术的代谢组学分析方法获得了巨大发展。本文结合本研究组在代谢组学方面的研究成果,综述了近年来液相色谱-质谱联用技术在代谢组学分析方法方面的新进展,并对其发展前景进行了展望。综述引用文献41篇。  相似文献   

11.
Protein identification at the low nanogram level could in principle be obtained by most nanoscale LC-MS/MS systems. Nevertheless, the complex sample preparation procedures generally required in biological applications, and the consequent high risk of sample losses, very often hamper practical achievement of such low levels. In fact, the minimal amount of protein required for the identification from a gel band or spot, in general, largely exceeds the theoretical limit of identification reachable by nanoscale LC-MS/MS systems. A method for the identification of low levels of purified proteins, allowing limits of identification down to 1 ng when using standard bore, 75 microm id nanoscale LC-MS/MS systems is here reported. The method comprises an offline two-step sample cleanup, subsequent to protein digestion, which is designed to minimize sample losses, allows high flexibility in the choice of digestion conditions and delivers a highly purified peptide mixture even from "real world" digestion conditions, thus allowing the subsequent nanoscale LC-MS/MS analysis to be performed in automated, unattended operation for long series. The method can be applied to the characterization of low levels of affinity purified proteins.  相似文献   

12.
The tracing of metabolite signals in LC-MS data using stable isotope-labeled compounds has been described in the literature. However, the filtering efficiency and confidence when mining metabolite signals in complex LC-MS datasets can be improved. Here, we propose an additional statistical procedure to increase the compound-derived signal mining efficiency. This method also provides a highly confident approach to screen out metabolite signals because the correlation of varying concentration ratios of native/stable isotope-labeled compounds and their instrumental response ratio is used. An in-house computational program [signal mining algorithm with isotope tracing (SMAIT)] was developed to perform the statistical procedure. To illustrate the SMAIT concept and its effectiveness for mining metabolite signals in LC-MS data, the plasticizer, di-(2-ethylhexyl) phthalate (DEHP), was used as an example. The statistical procedure effectively filtered 15 probable metabolite signals from 3617 peaks in the LC-MS data. These probable metabolite signals were considered structurally related to DEHP. Results obtained here suggest that the statistical procedure could be used to confidently facilitate the detection of probable metabolites from a compound-derived precursor presented in a complex LC-MS dataset.  相似文献   

13.
田士军  彭向雷  郑妍鹏  何金生  洪涛 《色谱》2013,31(12):1154-1160
液相色谱-质谱联用(LC-MS)作为集高效分离与定性定量检测为一体的联用技术,近年来在化学、医学、药学和生物化学等领域获得了长足的发展,特别是由科研领域拓展到临床诊断,开启了疾病诊断技术的新篇章。阿尔茨海默病(Alzheimer’s disease,AD),又称老年性痴呆症,是现代社会第四大致死疾病。随着我国人口的快速老龄化,重视对AD的防治是实现健康老龄化以及国民经济持续发展的重要保障之一。本文对LC-MS的新进展进行了简介,并详细综述了近3年来其在AD研究中的应用,以期相关方法获得更好的理解与更多的关注。  相似文献   

14.
Discovery of biomarkers is a fast developing field in proteomics research. Liquid chromatography coupled on line to mass spectrometry (LC-MS) has become a powerful method for the sensitive detection, quantification and identification of proteins and peptides in biological fluids like serum. However, the presence of highly abundant proteins often masks those of lower abundance and thus generally prevents their detection and identification in proteomics studies. To perform future comparative analyses of samples from a serum bank of cervical cancer patients in a longitudinal and cross-sectional manner, methodology based on the depletion of high-abundance proteins followed by tryptic digestion and LC-MS has been developed. Two sample preparation methods were tested in terms of their efficiency to deplete high-abundance serum proteins and how they affect the repeatability of the LC-MS data sets. The first method comprised depletion of human serum albumin (HSA) on a dye ligand chromatographic and immunoglobulin G (IgG) on an immobilized Protein A support followed by tryptic digestion, fractionation by cation-exchange chromatography, trapping on a C18 column and reversed-phase LC-MS. The second method included depletion of the six most abundant serum proteins based on multiple immunoaffinity chromatography followed by tryptic digestion, trapping on a C18 column and reversed-phase LC-MS. Repeatability of the overall procedures was evaluated in terms of retention time and peak area for a selected number of endogenous peptides showing that the second method, besides being less time consuming, gave more repeatable results (retention time: <0.1% RSD; peak area: <30% RSD). Application of an LC-MS component detection algorithm followed by principal component analysis (PCA) enabled discrimination of serum samples that were spiked with horse heart cytochrome C from non-spiked serum and the detection of a concentration trend, which correlated to the amount of spiked horse heart cytochrome C to a level of 5 pmol cytochrome C in 2 microl original serum.  相似文献   

15.
LC-MS is a powerful method for the sensitive detection of proteins and peptides in biological fluids. However, the presence of highly abundant proteins often masks those of lower abundance and thus generally prevents their detection and identification in proteomic studies. In human serum the most abundant proteins are albumin and gamma-globulins. We tested several approaches to specifically reduce the level of these proteins based on either specific antibodies, dye ligands (for albumin) and protein A or G (for gamma-globulins). The resulting, depleted serum was analyzed by sodium dodecylsulfate-polyacrylamide gel electrophoresis and LC-MS for the residual presence of these abundant proteins as well as for other serum proteins that should remain after depletion. To test the applicability of this method to real-life samples, depleted serum of a cervical cancer patient was analyzed for the presence of a specific tumor marker protein SCCA1 (squamous cell carcinoma antigen 1; P29508), which is present at ng/ml concentrations. The results demonstrate that SCCA1 can be detected by LC-MS in patient serum following depletion of albumin and gamma-globulins thus opening the possibility of screening patient sera for other, so far unknown, tumor markers.  相似文献   

16.
para-Chlorobenzoic acid (p-CBA) is typically used as a probe compound to indirectly quantify hydroxyl radicals formed during advanced oxidation processes used in drinking water and wastewater treatment. A method has been developed for the sensitive analysis of p-CBA in water using liquid chromatography-tandem mass spectrometry (LC-MS/MS). A reporting limit in water of 100 ng/L was determined for the method, which is 40-fold lower than the 4.0 microg/L reporting limit of the widely used liquid chromatography with UV detection (LC-UV) method. The method was found to be robust in difficult matrices such as wastewater and highly selective, unlike LC-UV which relies on non-specific detection at 234 nm. The detection of p-CBA below 1 microg/L during bench-scale ozonation of wastewater after hydrogen peroxide addition was demonstrated. Duplicate samples were analyzed by LC-MS/MS and LC-UV and results were found to be comparable at concentrations quantifiable by both methods.  相似文献   

17.
Methylmalonic acid (MMA) is a functional biomarker of vitamin B12 deficiency. Measurement of plasma MMA is challenging due to its small molecular weight and hydrophilic nature. Several liquid chromatography-tandem mass spectrometry (LC-MS/MS) methods have been developed for measuring plasma MMA. However, these methods involve lengthy sample preparation, long chromatographic run time, inadequate sensitivity, or interference from succinic acid (SA). Here we report a novel LC-MS/MS method for quantitation of underivatized MMA in serum or heparinized plasma with high sensitivity and selectivity. Sample preparation involved only strong anion exchange solid phase extraction. The extract was purified by online turbulent flow and analyzed on an Organic Acids column. MS/MS analysis was performed in negative electrospray mode, and the analytical time was 6 min. The use of ion ratio confirmation in combination with chromatographic resolution from SA greatly enhanced the selectivity. No interference was observed. This method was linear from 26.2 to 26,010.0 nM with an accuracy of 98-111 %. Total coefficient of variation was less than 4.6 % for three concentration levels tested. Comparison with a reference laboratory LC-MS/MS method using leftover patient serum specimens (n = 48) showed a mean bias of -2.3 nM (-0.61 %) with a Deming regression slope of 1.016, intercept of -6.6 nM, standard error of estimate of 25.3 nM, and a correlation coefficient of 0.9945. In conclusion, this LC-MS/MS method offers highly sensitive and selective quantitation of MMA in serum and plasma with simple sample preparation.  相似文献   

18.
高效液相色谱-串联质谱法测定食品中硝磺草酮   总被引:2,自引:0,他引:2  
1 引 言 硝磺草酮(Mesotrione),化学名2-(4-甲磺酰基2硝基苯甲酰基)环己烷1,3二酮,又名甲基磺草酮、硝磺酮,是瑞士先正达公司发明的玉米田芽前和苗后广谱选择性除草剂,因具有低毒性、高活性、对环境友好等特点[1,2],是近几年广泛使用的除草剂.但最近研究发现,硝磺草酮具有高效的起始活性和残留活性,长期食用含有硝磺草酮残留的食物会对人畜产生致癌作用,或引起胎儿畸形[3,4].欧盟和世界贸易组织对浆果、亚麻籽、越橘、栗草料等物质中硝磺草酮的限量为0.05 mg/kg.而美国、加拿大等国对芦笋、草杆、草料等物质中硝磺草酮的限量为0.01 mg/kg[10-13].  相似文献   

19.
This paper describes a method--using a combination of LC-MS/MS of selected bacteria-specific peptides and database search--for determining the species of bacteria present in a mixture. We identified the proteotypic peptides that were associated with specific bacteria by searching protein databases for the LC-MS/MS data. The retention time windows for specific peptide markers were used as an extra constraint so that the peptide markers of many bacterial species could be analyzed in a single LC-selective proteotypic-peptide analysis (SPA). We performed LC-MS/MS analyses on the proteolytic digest of cell extracts and monitored only the selected marker peptide ions at given elution time windows. The corresponding bacterial species could be characterized when the selected peptides that eluted at expected elution windows were identified correctly from the database. We managed to identify up to eight bacterial species simultaneously during a single LC-MS/MS analysis, as well as bacteria mixed in various abundances. Two marker ions having similar values of m/z, but obtained from two different bacterial samples, which would otherwise be selected as precursors within mass tolerance and would complicate the MS/MS data, were time-resolved using LC and then used to correctly identify their bacterial sources. The coupling of selective MS/MS monitoring with separation methods, such as LC, provides a highly selective and accurate analytical method for characterizing complex mixtures of bacterial species.  相似文献   

20.
Glioma stem cells are considered responsible for drug resistance and glioma relapse resulting in poor prognosis in glioblastoma multiforme. SU3 glioma cell is a highly invasive glioma stem cell line from the patients with glioblastoma multifrome. It is of great significance to study the efficacy and molecular mechanism for anticancer drug effects on SU3 glioma cells. In this work, we develop a liquid chromatography–mass spectrometry(LC–MS) method for direct analysis of the role of drugs(paclitaxel)on SU3 glioma cells at the molecular level. We use the specific fluorescence dyes to evaluate cell viability,the levels of ROS and GSH when the cells were treated with drugs. In addition, the LC–MS platform was successfully employed to detect the amount of 6-O-methylguanine, demonstrating that it is effective to induce cell apoptosis and enhance the cytotoxic response of SU3 glioma cells. The analytical linear equals are Y = 9.49 ? 105 X + 2.42 ? 104 for 6-O-methylguanine(R2= 0.9998) and Y = 4.72 ? 104 X + 2.21 ? 103(R2= 0.9996) for 7-methylguanine. Thus, the combination of cell-specific fluorescence dyes and LC–MS method enables us to reveal the molecular mechanism of paclitaxel-inhibited growth and enhanced therapeutic response in the chemotherapy for glioma multiforme.  相似文献   

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