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1.
建立了食品中矮壮素和缩节胺2种植物生长调节剂的高效液相色谱-电喷雾电离串联质谱(HPLC-ESI MS/MS)分析方法.样品经甲醇-水(1:1,体积比)提取后,采用Strata-X-C萃取小柱净化,再经Agilent ZORBAX RX-SIL(1.8μm,3.0 mm×100 mm)色谱柱分离,以乙腈和10 mmol...  相似文献   

2.
亲水作用色谱-串联四极杆质谱测定液态奶中舒巴坦   总被引:1,自引:0,他引:1  
建立了亲水作用色谱-串联四极杆质谱测定液态奶中微量舒巴坦的分析方法。样品经0.2%乙酸水溶液提取,HLB固相萃取柱净化、富集,以甲酸铵-乙腈为流动相,经Acquity UPLC BEH HILIC色谱柱分离后采用电喷雾质谱多反应监测方式(MRM)扫描,外标法定量。结果表明,舒巴坦的质量浓度在1~100μg/L范围内线性关系良好,r2大于0.99,定量下限为1.0μg/kg。加标水平在1.0~50.0μg/kg范围时,回收率为82%~102%,相对标准偏差(RSD)为1.6%~4.7%。该方法前处理简便快捷、灵敏度高、回收率和重现性良好,适用于液态奶中舒巴坦的测定。  相似文献   

3.
UPLC - ESI MS/MS法测定动物饲料中苯二氮卓类药物   总被引:1,自引:0,他引:1  
建立了超高效液相色谱-电喷雾串联质谱(UPLC - ESI MS/MS)同时检测动物饲料中地西泮、奥沙西泮、硝西泮、三唑仑、艾司唑仑和咪达唑仑6种苯二氮卓类药物的方法.饲料样品采用碱性叔丁基甲醚提取,Oasis MCX固相萃取柱净化,反相色谱柱分离,以0.1%甲酸和乙腈为流动相进行梯度洗脱,正离子模式扫描,多反应监测模...  相似文献   

4.
建立了果汁蔬菜中8种苯甲酰脲类(杀虫脲、氟苯脲、氟虫脲、氟啶脲、除虫脲、氟铃脲、灭幼脲、氟丙氧脲)农药残留量的液相色谱-电喷雾串联质谱(LC-ESI MS/MS)测定方法。样品用乙腈提取后无需净化,经盐析过滤并以水稀释(1∶1)后,经Waters Atlantis(d C18色谱柱分离,5 mmol/L乙酸铵水溶液和乙腈梯度洗脱,以电喷雾电离串联质谱在负离子多反应监测(MRM)模式下进行测定并确证,外标法定量。8种苯甲酰脲类农药在1.0~100μg/L范围内线性良好,相关系数为0.990 0~0.999 9。对8种农药在毛豆基质中3个添加水平下的回收率进行测定,平均回收率为92%~110%,相对标准偏差为5.5%~12%。方法的检出限(S/N=3)为0.04~0.42μg/kg,定量下限(S/N=10)为0.2~1.5μg/kg。  相似文献   

5.
建立了超高效液相色谱-串联质谱(UPLC-MS/MS)同时测定有机肥中磺胺类、喹诺酮类、大环内酯类46种抗生素的分析方法。样品用乙腈-EDTA缓冲溶液(p H 10.0)提取,盐析后离心分层,乙腈层按Qu ECh ERS法,采用吸附剂净化;缓冲溶液层经HLB柱净化。ACQUITY UPLC BEH C18柱用作色谱分离,以2mmol/L甲酸铵水溶液(含0.1%甲酸)-甲醇为流动相进行梯度洗脱;电喷雾电离源正离子(ESI+)多反应监测(MRM)模式检测,基质外标法定量。46种抗生素在1~200μg/L范围内线性关系良好,相关系数(r2)为0.996 6~0.999 9。在25,100,400μg/kg加标浓度下,3类抗生素的回收率分别为67.8%~95.6%,65.6%~89.4%和66.6%~107.8%,相对标准偏差为0.4%~11.9%;方法检出限(S/N=3)为0.6~4.6μg/kg,定量下限(S/N=10)为2.1~15.4μg/kg。  相似文献   

6.
液相色谱串联质谱测定蔬菜中残留的唑菌胺酯   总被引:1,自引:0,他引:1  
唑菌胺酯(pyraclostrobin)俗称百泰,德国巴斯夫公司于1993年开发的兼具吡唑结构的甲氧基丙烯酯酯类菌剂~([1]),主要用于防治小麦、水稻、花生、葡萄、蔬菜、香蕉、 柠檬、咖啡、果树、核桃、蔬菜、茶树、烟草和观赏植物、草坪及其他大田作物上由子囊菌纲、担子菌纲、半知菌类和卵菌纲真菌引起的作物病害~([2]).  相似文献   

7.
利用超高效液相色谱-串联质谱法(UPLC-MS/MS)同时测定牛奶中的7种青霉素类抗生素以及7种相应的青霉噻唑酸。样品经乙腈沉淀蛋白,上清液N2吹干后,用水溶解,加入正己烷萃取除去脂肪;提取液经ACQUITY UPLCBEH C18柱分离,乙腈-乙酸铵+甲酸水溶液洗脱。14种物质峰分离良好,定量限范围在5~20μg/kg。在10~50ng/mL质量浓度范围内线性良好,相关系数均大于等于0.999,牛奶中的加标回收率在90%~98%。  相似文献   

8.
建立了小麦粉中恩镰孢菌素A、恩镰孢菌素A1、恩镰孢菌素B、恩镰孢菌素B1、白僵菌毒素5种镰刀菌毒素的超高效液相色谱-串联质谱(HPLC-MS/MS)分析方法。小麦粉样品采用改良的Qu ECh ERS方法进行提取,无需进一步净化,以甲醇-2 mmol/L乙酸铵为流动相梯度洗脱,经Agilent Eclipse Plus C_(18)色谱柱(2.1 mm×50 mm,1.8μm)分离,在电喷雾电离(ESI)正离子模式下采用多反应监测(MRM)进行测定,基质外标法定量。在较宽的线性范围内,5种镰刀菌毒素的相关系数(r2)均不小于0.993,方法检出限为0.3~0.8μg/kg,定量下限为0.8~2.4μg/kg。样品在1倍、2倍、10倍定量下限3个加标浓度下的平均回收率为74.0%~85.4%,相对标准偏差(RSDs)为5.6%~13.1%。采用建立的方法对市售的30批次小麦粉中5种镰刀菌毒素进行筛查,数批产品检出不同含量的镰刀菌毒素。该方法简单快速、准确、灵敏,可用于小麦粉中多种镰刀菌毒素的同时分析。  相似文献   

9.
采用高效液相色谱-四极杆/离子阱质谱(HPLC-QTRAP-MS)建立了面粉及面制品中氨基脲的确证及测定方法。样品采用盐酸(HCl)提取,在超声辅助下与衍生剂邻硝基苯甲醛反应。衍生产物在中性条件下经PLS固相萃取柱净化、乙酸乙酯洗脱,经Shim-Pack XR-ODSⅢC18柱(2.0 mm×50 mm,1.6μm)分离,0.1%(体积比)甲酸-水溶液和甲醇溶液为流动相梯度洗脱;采用多反应监测(MRM)-信息依赖性采集(IDA)-增强子离子扫描(EPI)模式检测,EPI谱库确认,内标法定量。结果表明:氨基脲在0.5~40μg/L范围内线性关系良好(r=0.996);检出限(LOD,S/N=3)为0.10μg/kg,定量下限(LOQ,S/N=10)为0.25μg/kg;4个加标水平(0.25,0.5,2.0,10.0μg/kg)下的回收率为89.1%~112.8%;相对标准偏差(RSD)为1.4%~8.6%。该方法分析速度快,灵敏度高,回收率好,可用于面粉及面制品中氨基脲的快速检测。  相似文献   

10.
建立了液相色谱-串联质谱(LC-MS/MS)法用于同时测定水产品中硝基呋喃类药物的代谢物3-氨基-2-唑烷基酮(AOZ)、5-甲基吗啉-3-氨基-2-唑烷基酮(AMOZ)、氨基脲(SEM)、1-氨基-2-内酰脲(AHD)和3,5-二硝基水杨酸肼(DNSH)。样品经盐酸水解、2-硝基苯甲醛衍生、乙酸乙酯提取净化。氮吹至干后,用1 mL乙腈-0.1%甲酸水(20:80, v/v)定容。经Aquasil C18色谱柱分离,用液相色谱-三重四极杆串联质谱以多反应监测模式(MRM)进行检测分析,内标法定量。结果表明,该方法的线性范围为0.5~10 μg/kg, 5种代谢物的线性相关系数均不小于0.9976,定量限为0.5 μg/kg。在0.5、1.0、2.0和4.0 μg/kg的添加水平下,加标回收率为81.3%~100.5%, RSD为3.4%~10.0%。本法可作为水产品中5种硝基呋喃类药物的代谢物残留量同时分析的有效手段。  相似文献   

11.
建立了超高效液相色谱-串联质谱法测定水产品中卡巴氧(CBX),喹烯酮(QCT)、乙酰甲喹(MEQ)、哇噁啉-2-羟酸(QCA),3-甲基喹噁啉-2-羧酸(MQCA) 5种化合物残留的分析方法.样品分别采用乙酸乙酯-乙腈(50:50)混合溶液、磷酸盐缓冲液分步提取,正己烷净化,以甲醇-乙腈(11:3)混合溶液和0.1%甲...  相似文献   

12.
An analytical method based on ultrasound assisted extraction (UAE) and liquid chromatography coupled to electrospray tandem mass spectrometry (LC–ESI/MS/MS) was validated and applied for determining L-dopa in four ecotypes of Fagioli di Sarconi beans (Phaseolus vulgaris L.), marked with the European label PGI (Protected Geographical Indication). The selectivity of the proposed method was ensured by the specific fragmentation of the analyte. Simple isocratic chromatographic conditions and mass spectrometric detection in multiple reaction monitoring (MRM) acquisition mode were used for sensitive quantification. The LC–ESI/MS/MS method was validated within a linear range of 0.001–5.000 μg/mL. Values of 0.4 and 1.1 ng/mL were obtained for the limits of detection and quantification, respectively. The repeatability, inter-day precision, and recovery values ranges were 0.6%–4.5%, 5.4%–9.9%, and 83%–93%, respectively. Fresh and dried beans, as well as pods, cultivated exclusively with organic methods avoiding any synthetic fertilizers and pesticides were analyzed showing an L-dopa content ranging from 0.020 ± 0.005 to 2.34 ± 0.05 μg/g dry weight.  相似文献   

13.
In this paper, we report method development work to determine geniposide using LC/MS/MS via the formation of positive and negative ion adducts. Geniposide, which has been recognized to have choleretic effects, is the major iridoid glycoside component of Gardenia herbs. To enhance the sensitivity of LC/MS detection of geniposide, a small amount of volatile additives such as ammonium acetate and acetic acid are added into mobile phase solvents to form positive and negative adducts, which can then ionize via electrospray processes. The formation of positive adducts is due to the complexation between geniposide and ammonium ions ([M + NH4]+). The formation of anionic adducts [M + CH3COO] is believed to occur via hydrogen bonds bridging acetate ions and glucose groups on the geniposide molecule. Mobile phase solvents containing acetonitrile and aqueous solution (0.2 mM ammonium acetate or 0.1% acetic acid) at the ratio 15: 85 are employed to elute geniposide using C8 reverse phase liquid chromatography columns with electrospray tandem mass spectrometry determinations. Using geniposide standards, the methods are validated at the concentration ranges of 5 to 1000 ng/mL and 20 to 5000 ng/mL using ammonium and acetate adducts respectively. The correlation coefficients of the standard curves are 0.9999 using both ammonium and acetate adducts. The detection limits of using ammonium and acetate adducts are 1 and 5 ng/mL respectively. The measurement accuracy and precision of using ammonium adducts are within 12% and 3% respectively, whereas the accuracy and precision are within 6 and 11% respectively using acetate adducts. When the validated calibration curves of the ammonium adduct of geniposide are used to determine spiked control samples in rat blood dialysates, the determination errors of accuracy and precision are within 12% and 10% respectively.  相似文献   

14.
A simple and enantioselective method for the determination of famoxadone enantiomers in spinach using reversed-phase HPLC-MS/MS is presented. Famoxadone residues in spinach were extracted with acetonitrile and an aliquot was cleaned up with PSA (primary and secondary amine, Si-(CH(2))(3)-NH-(CH(2))(2)-NH(2)) and C(18) sorbent, which were powder material. Chiral stationary phase (CSP), cellulose tris(3,5-dimethylphenylcarbamate), was successfully applied to separate two enantiomers using methanol/formic acid-ammonium acetate buffer as mobile phase. The MS/MS fragmentation pathway of ammonium adduct famoxadone molecules ion at m/z 392 was analyzed and an odd electron fragment ion at m/z 238 was observed. Excellent linearity was achieved for each enantiomer over a range of concentrations from 0.5 to 1500 μg/L with coefficients more than 0.99. Average recoveries at five different levels (1, 2.5, 12.5, 250 and 1250 μg/kg, for each enantiomer) ranged from 80.8 to 96.5% with RSD of 4.8-13.4%. The famoxadone enantiomers LODs in spinach were determined to be both 0.3 μg/kg with LOQs of 1 μg/kg. Based on this method, the dissipation process of famoxadone enantiomers in spinach under open field and greenhouse conditions was characterized, providing guidance to the proper and safe use of this fungicide in agriculture.  相似文献   

15.
The determination and quantitation of drugs in biological matrices using high-performance liquid chromatography/tandem mass spectrometry (HPLC/MS/MS) is becoming increasingly popular in analytical toxicology, while at the same time a growing awareness for the limits of this technique can be observed. Our group previously developed a rapid HPLC/ESI-MS/MS method for the detection and quantitation of succinylcholine (SUX) and succinylmonocholine (SMC) using ion-pairing extraction of samples with subsequent separation by gradient chromatography on a Synergi Hydro RP C18 column (4 microm, 150 x 2 mm). Identification of analytes was achieved in the multiple reaction monitoring (MRM) mode, using two characteristic ion transitions each, the respective analytes' retention time as well as co-elution of stable isotopic analogues.In both native serum as well as urine an interference with the main MRM transition of SMC was found to co-elute with this analyte, thus severely compromising the identification and quantitation of this target analyte. The interference was further shown to be eliminated from serum and urine by exposure to alkaline conditions and hence proven to share a key physicochemical property with SMC. The observed absence of the second and third most intense ion transitions of SMC in the unknown substance was the only useful distinction between both compounds.The detailed presentation of selectivity problems encountered during method development is intended to initiate further discussion on this yet underrepresented issue in HPLC/MS/MS. The present work emphasizes the need to monitor more than just one ion transition to confidently rule out signal interferences, ensure correct analyte identification as well as quantitation, and thus avoid false-positive results. In this context, the employment of minor MRM transitions for the quantitation and identification of a given analyte is presented as a satisfactory solution to HPLC/MS/MS selectivity problems, and proposed as a possible alternative to previously published approaches.  相似文献   

16.
This paper describes a selective and sensitive method that uses liquid chromatography/tandem mass spectrometry with positive electrospray ionization (ESI+) for the determination of deltamethrin in a variety of crops. Samples were extracted by conventional high-speed blending. Some samples required no further cleanup; others were cleaned up by gel permeation chromatography, strong cation-exchange cartridges, or partitioning with n-hexane. In the determinative step, the buffered neutral mobile phase, consisting of 10 mM ammonium acetate (pH 6.8) and methanol, and ESI+ provided strong ammonium adduct formation to [M+NH4]+ at m/z 523, and the multiple-reaction monitoring (MRM) transition at m/z 523/281 was used for the quantitation of deltamethrin. A second MRM transition at m/z 525/283 was used for confirmation. The limit of quantitation (LOQ) values were 0.01 mg/kg for edible materials and 0.05 mg/kg for nonedible materials. Mean overall recoveries at the LOQ and the 10-fold LOQ ranged from 73 to 96%, and the relative standard deviations were <10% for all samples materials analyzed.  相似文献   

17.
建立丹磺酰氯柱前衍生-超高效液相色谱-串联质谱法测定人体尿样中环己胺的方法。冷冻样品经解冻、离心后,用丹磺酰氯衍生,固相萃取小柱净化。目标化合物采用 Waters ACQUITY CSHTM C18色谱柱(50 mm×2.1 mm,1.7μm)分离,以甲醇和0.002 mol/L乙酸铵溶液为流动相梯度洗脱,采用电喷雾离子源电离、正离子多反应监测模式质谱检测。环己胺在2.5~200μg/L浓度范围内有较好的线性关系,相关系数大于0.999,回收率为98.7%~102.3%,精密度为3.1%~5.2%,检出限和定量限分别为1.0和3.0μg/L。结果表明,本方法操作简单、准确可靠,可适用于人体尿液中环己胺的定量分析。应用本方法测定200份学生尿液样品,环己胺检出率为34.5%。  相似文献   

18.
建立了液相色谱–三重四极杆串联质谱测定水果及其制品中氯吡脲的方法。样品经乙腈提取,氨基固相萃取小柱净化后,用ZORBAX Extend-C18柱(150 mm×2.1 mm,5μm)分离,以甲醇–水为流动相等度洗脱,采用多反应监测正离子模式检测,外标法定量。氯吡脲的质量浓度在4.0~200.0 ng/m L范围内线性良好,相关系数大于0.999,在5.0,10.0,20.0μg/kg 3个添加水平下,氯吡脲的平均加标回收率为86%~92%,测定结果的相对标准偏差为5.3%~7.6%(n=5),方法定量下限为2.0μg/kg。方法灵敏度高,操作简便,定量准确,可满足梨、柑桔、黄桃等水果及其罐头制品中氯吡脲残留的检测与确证需要。  相似文献   

19.
采用液相色谱-串联质谱法(LC-MS/MS)测定了水产品中结晶紫以及它的隐色代谢物残留。匀质后的水产品样品用乙腈和乙酸铵缓冲液提取,合并提取液,用二氯甲烷反提取,经中性氧化铝柱和PRS柱固相萃取净化,且不使用氧化铅柱在线氧化,色谱分离后直接进入串联质谱检测器。采用电喷雾正离子,多反应监测(MRM)模式检测。方法的检出限可达0.5 ng/g,线性方程的相关系数r大于0.99,添加样品平均回收率为77.6%~93.8%,相对标准偏差均小于8.2%。  相似文献   

20.
通过对提取溶剂、净化方法及色谱-质谱条件的优化,建立了配合饲料中阿奇霉素(AZM)的液相色谱-串联质谱测定方法。样品经乙腈超声波提取,MCX固相萃取柱净化,BDS Hypersil C_(18)(2.4μm,100 mm×2.1 mm)色谱柱分离,以甲醇-0.05 mol/L乙酸铵水溶液为流动相梯度洗脱,正离子模式电离,多反应监测模式检测,同位素内标法定量。在优化条件下,AZM在1~250μg/L范围内线性关系良好,相关系数(r~2)为0.999 1,检出限(S/N≥3)为2.8μg/kg,定量下限(S/N≥10)为8.4μg/kg;在0.5,1,5,10 mg/kg加标水平下,回收率为87.0%~106.6%,批内相对标准偏差为0.58%~5.4%,批间相对标准偏差为3.1%~5.4%。该方法准确、灵敏,选择性强,基质干扰小,可用于配合饲料中AZM的测定。  相似文献   

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