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A method for the quantitative determination of strychnine in biological fluids by gas chromatography--mass spectrometry is proposed. The preparation of samples for the analysis included extraction of strychnine from blood and urine with the use of AccuBond(II) EVIDEX cartridges for solid-phase extraction and SPEC MP3 disks respectively. The efficiency of extraction was estimated at 0.05 mg/l for blood and 0.02 mg/l for urine. The detection limit was 0.10 mg/l in blood and 0.05 mg/l in urine.  相似文献   

3.
A rapid and simple method of utilizing thin-layer chromatography (TLC) and pyrolysis gas chromatography (PyGC) for the identification and determination of methylbenactyzium bromide in human urine was studied in this report. Methylbenactyzium bromide was extracted from urine with ODS-cartridge (Sep-Pak C18), then spotted onto a silica gel 60 F254 TLC plate. After development, the separated spot of methylbenactyzium bromide was scraped and wrapped with a ferromagnetic foil without extraction by any organic solvents. The sample was applied into PyGC analysis. The optimum temperature for pyrolysis was 590 degrees C. The main degradation product of methylbenactyzium bromide was identified as diphenylmethane in this procedure by gas chromatography/mass spectrometry (GC/MS). A calibration graph prepared by absolute calibration method showed a good linearity over the concentration range of 1-75 micrograms/spot for methylbenactyzium bromide. The coefficient of variation obtained for eleven replicate analyses of the 3 micrograms/spot of standard methylbenactyzium bromide was 3.8%. The detection limit of this compound by this procedure was 0.1 micrograms/spot.  相似文献   

4.
顶空气相色谱内标法测定人血中乙醇含量的不确定度评定   总被引:1,自引:0,他引:1  
目的建立顶空气相色谱内标法测定人血中乙醇含量的不确定度评定的方法。方法结合顸空法乙醇含量测定的全部过程,假设传播系数为1,则对产生不确定度的各分量因子进行分析计算与合成。结果不确定度因素的来源主要包含样品检测时产生的误差值、检测仪器的精密度、使用标准物质的标示值的不确定度和使用的量器、容量器皿等的不确定度。结论本评定方法得出检测的最大误差来自于两个平行样品检测时所产生的误差值。  相似文献   

5.
目的建立顶空GC/FID分析血中乙醚的方法。方法用顶空GC/FID分析血中乙醚,并对萃取条件和色谱条件进行优化。结果方法的检出限为0.3ug/ml,回收率为81%,相对标准偏差为4.4%。结论该法简便、快速、灵敏,适合毒物分析检验的要求。  相似文献   

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A method for measuring closapine in the blood and urine by gas chromatography-mass spectrometry as a trifluoroacetic derivative is proposed. The threshold level for closapine detection is 25 ng/ml in the blood and 30 ng/ml in the urine. Calibration curves are linear in the range 0.025-5 mcg/ml for the blood and 0.03-50 mcg/ml for the urine. The method can be used in forensic chemical and clinical toxicological analysis.  相似文献   

8.
大鼠血液、尿液中阿米替林的气相色谱快速分析   总被引:1,自引:0,他引:1  
目的建专:m液及尿液中阿米替林(AMTL)的气相色谱分析方法,、方法以正常大鼠m液及尿液为空F1样奉,分别添加AMTI-标准品和内标SKF525A。实验大鼠以AMTL2倍LD50灌胃,致大鼠急性中毒后提取血液及尿液。用乙醚提取样本中AMTL,采用GC/FID法进行定量分析,并考察实验条件,结果采用该方法,血液及尿液中AMTL线性池用分别为5~150μg/mL(r=0.993)和5~150μg/mL(r=0.998);最低检测限(S/N/〉3)均为1.0陆g/mL;口内、口间精密度均小于6%,同收率存95.5%~105.6%之间。结论该方法方操作便捷、捧确度高,适用=fAMTL临床治疗中血药浓度快速监测和法医毒物分析鉴定。  相似文献   

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Gas chromatography (GC) and immunoassay techniques applied to blood and urine specimens were compared for the screening of benzodiazepines in postmortem forensic toxicology. Five hundred and six such successive postmortem cases in which both urine and peripheral blood was sent for toxicological analysis by the medical examiners were selected. The urine specimens were tested by the Emit((R)) d.a.u. Benzodiazepine Assay, and in parallel, the blood and urine specimens were screened for benzodiazepine drugs and their metabolites by an established automated dual-column GC method. The lowest number of positives (153) was obtained when immunoassay was performed without enzyme hydrolysis. When urine samples were hydrolysed before immunoassay, the number of positives increased to 175. The highest number of positives (200) was obtained in urine by GC, and the screening of blood by GC yielded 185 quantitative results. Despite the urine GC screening produced the most positives, the quantitative screening of the blood by GC appears to be the most efficient approach in postmortem forensic toxicology, considering the fact that although urine findings confirm the presence of the drug, quantitative results in urine are irrelevant to acute toxicity.  相似文献   

11.
本文建立了尿中3,4亚甲二氧基甲基苯丙胺(MDMA)的五氟苯甲酰衍生化-氮磷检测气相色谱分析方法,1ml检尿碱化、加氯化钠饱和、用0.2ml环己烷提取,提取液加4μl五氟苯甲酰氯于室温反应10min,过量试剂用0.1mol/L氢氧化钠溶液涡洗除去,有机相供进样分析.尿中MDMA的检测限为4.0ng/ml,较非衍生化、乙酰化、三氟乙酰化、五氟丙酰化和七氟丁酰衍生化等分析法灵敏.  相似文献   

12.
人血、尿中富马酸喹硫平的气相色谱分析   总被引:1,自引:0,他引:1  
目的建立人血、尿中富马酸喹硫平的气相色谱分析方法。方法用乙醚提取血、尿中的富马酸喹硫平,直接对其进行定性、定量分析。以正常人血、尿为空白样本,分别添加标准富马酸喹硫平,确定检材的前处理方法、色谱分析条件、工作曲线、线性范围、方法的精密度、回收率等,并对1例大剂量服用富马酸喹硫平中毒死者的体液浓度进行测定。结果该方法分析血、尿中富马酸喹硫平的线性范围分别为8.0~800.0μg/ml和20.0—800.0μg/ml;最低检测限分别为0.04μg/ml和0.10μg/ml(S/N≥3),日内、日间精密度均小于4%,回收率在97.08%-101.42%之间。结论该分析方法操作便捷、实用、准确度高,适用于富马酸喹硫平的临床血药浓度快速监测和法医毒物鉴定。  相似文献   

13.
目的建立一种直接进样气相色谱法检测全血中的乙醇。方法全血经硫酸铝钾沉淀蛋白,加入内标异丙醇后,用直接进样气相色谱法进行检测,FID为检测器,用保留时间定性,内标标准曲线法定量。结果该方法线性范围为0.2-1.4mg/m L,相关系数R=0.999 3,总分析时间不超过5min,最低检测限为0.01mg/m L,相对标准偏差(RSD)〈5%,平均回收率为92.3%;所建立的方法与顶空气相色谱(HS-GC)法比较相对偏差(RD)〈10%。结论该方法可用于全血中乙醇的检测。  相似文献   

14.
气相色谱法测定人血中乙醇的不确定度评估   总被引:1,自引:0,他引:1  
本文建立了气相色谱法测定人血中乙醇含量的不确定度评定方法,考虑不确定度的来源主要包括仪器的精密度、标准物质标称值的不确定度、样品及标准物质体积的不确定度等。假定传播系数为1,对各分量进行计算与合成。经实验验证,理论推导的结果与实验结果基本吻合。  相似文献   

15.
Morphine, the active metabolite of heroin, is rapidly inactivated by glucuronidation at the 3 carbon. Unconjugated (pharmacologically active) morphine was measured in postmortem blood by radioimmunoassay using an antibody-coated tube kit. The kit shows less than 0.2% cross-reactivity with codeine and morphine-glucuronide. Unconjugated morphine concentrations were confirmed by gas chromatography/mass spectrometry (GC/MS) using deuterated morphine as the internal standard. The blood was precipitated with 10% trichloroacetic acid (TCA) and concentrated hydrochloric acid (HCl), centrifuged, and decanted. The supernatant was then either diluted (unhydrolyzed) or heated to 100 degrees C, 30 min (hydrolyzed), followed by a wash with 4:1 chloroform:isopropranol. The upper aqueous layer was then saturated with sodium bicarbonate (NaHCO3) and extracted with 4:1 chloroform:isopropranol. The organic layer was evaporated, derivatized with trifluoroacetic anhydride (TFA), and analyzed by selected ion monitoring (SIM) GC/MS. Comparison of the results for unconjugated morphine by radioimmunoassay and unhydrolyzed morphine by GC/MS gave a correlation coefficient of r = 0.98, n = 100. Unconjugated morphine ranged from 0 to 100% of total morphine with a mean of 42%, n = 200, for heroin or morphine involved deaths. Review of 56 putative rapid deaths gave a mean of 68% unconjugated morphine with a range of 26 to 100%. The ratio of unconjugated to total morphine was found to be stable in postmortem blood after more than a year of storage at room temperature, within the precision of the method.  相似文献   

16.
Benzodiazepines are one of the most widely prescribed drugs for the treatment of a wide spectrum of clinical disorders. They are used as anticonvulsants, anxiolytics, hypnotics or muscle relaxants with different duration of action. In this paper, a simple and sensitive method for the determination of benzodiazepines in whole blood using solid-phase extraction and gas chromatography/mass spectrometry (GC/MS) is described. The drugs spiked in whole blood were extracted with an Oasis HLB solid-phase extraction cartridge (Waters), which contains a copolymer designed to have a hydrophilic-lipophilic balance. GC/MS analysis was performed using a Shimadzu QP-5000 equipped with a BPX5 capillary column (15 mx0.32 mm I.D., film thickness 0.25 microm, SGE). Nineteen benzodiazepines and two thienodiazepines were well separated from each other on their SIM chromatograms and also on the TIC with the exception of oxazolam to cloxazolam separation. The blank extract from whole blood gave no peaks that interfered with all benzodiazepines and thienodiazepines on the chromatogram. The calibration curves for selected benzodiazepines with fludiazepam as an internal standard showed excellent linearity over the concentration range 5-500 ng/ml blood with a correlation coefficients of >0.995. The detection limits ranged from 0.2 to 20 ng/ml blood. The method is simple and sensitive for the determination of benzodiazepines in whole blood and seems to be useful in the practice of forensic science.  相似文献   

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目的利用GC/MS、GC/NPD与固相萃取(SPE)技术相结合,建立血液中苯丙胺类毒品的定性定量分析方法。方法采用Bond—ElutCerti{y固相柱、甲醇淋洗、二氯甲烷/异丙醇/氨水(78/20/2)洗脱固相萃取分离提取,比较了不同PH体系、稀释状态、洗脱溶剂对提取回收率的影响,建立血液中苯丙胺类毒品的GC/MS、GC/NPD定性定量分析方法。结果以GC/NPD分析AM、MA、MDA和MDMA浓度在15ng/mL-2000ng/mL、10ng/mL~1600ng/mL、20ng/mL-3000ng/ml、20ng/mL-3000ng/mL范围内线性关系良好,AM、MA、MDA和MDMA的检测限分别为10ng/mL、8ng/mL、15ng/mL、15ng/mL,方法平均回收率大于85%,标准偏差小于5%,GC/MS-Scan检测限分别为40ng/mL、32.0ng/mL、60.0ng/mL、60.0ng/mL。结论此方法可满足苯丙胺类毒品滥用者的血液定性定量分析。  相似文献   

19.
In Japan, taxed diesel fuel from non-taxed fuel oil-A is illegally produced by removing coumarin, which is added as a non-taxed marker. The coumarin is removed using concentrated sulfuric acid and this produces a high viscosity and hazardous material, called "sulfuric acid pitch", as a by-product. This compound has a detrimental effect on the environment and is hazardous to humans. The actions have been associated with organized crime with the illegally gained taxes becoming financial bases. To discriminate legal and diesel oil from illegal product, the peak area ratio R(SC), the ratio of total sulfur to carbon (>C(14)), was used. R(SC) is calculated by the total areas of sulfur and carbon (>C(14)) from the gas chromatogram obtained by gas chromatography-atomic emission detection (GC-AED). Sulfur in legal diesel fuels is strictly regulated by a maximum limit, which was 50ppm (and is now 10ppm), but in the preparation of illegal diesel oil, in which coumarin is eliminated, sulfur cannot be removed. Therefore, the R(SC) of fuel oil-A and illegal fuel oil is over 15, whereas those for legal fuel oil and diesel fuel are under 2.0. Furthermore, these ratios do not change in weathering experiments. GC-AED was applied to an actual arson case and was found to be effective for the determination of total sulfur in trace amounts of accelerants detected in fire debris at the arson scene, and hence was effective for the characterization of the ignitable liquids used.  相似文献   

20.
A method is described for the gas chromatographic quantitation of carbon monoxide by means of thermal conductivity detection. Carbon monoxide is released from blood samples as small as 0.02 mL using a unique extraction chamber. The method was compared to a standard gas chromatographic and spectrophotometric method of carbon monoxide quantitation. It was comparable to the former with all samples evaluated and apparently more reliable than the latter with decomposed samples.  相似文献   

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