1.中国人民公安大学 侦查学院,北京 100038
2.公安部鉴定中心,北京 100038
3.吉林警察学院 侦查系,吉林 长春 130117
4.北京市公安局法医中心,北京 100192
王爱华,硕士,副研究员,研究方向:法医毒物分析,E-mail:wangaihuatju@126.com
刘 耀,研究员,研究方向:法庭科学、法医毒物分析,E-mail:liuyao1123@aliyun.com
扫 描 看 全 文
刘兴胜,王爱华,于忠山等.电感耦合等离子体质谱法分析死后人体血液与一般人群血液中9种金属元素含量差异[J].分析测试学报,2023,42(06):692-698.
LIU Xing-sheng,WANG Ai-hua,YU Zhong-shan,et al.Analysis on Content Difference of 9 Metal Elements in Postmortem Human Blood and General Population Blood by Inductively Coupled Plasma Mass Spectrometry[J].Journal of Instrumental Analysis,2023,42(06):692-698.
刘兴胜,王爱华,于忠山等.电感耦合等离子体质谱法分析死后人体血液与一般人群血液中9种金属元素含量差异[J].分析测试学报,2023,42(06):692-698. DOI: 10.19969/j.fxcsxb.23010910.
LIU Xing-sheng,WANG Ai-hua,YU Zhong-shan,et al.Analysis on Content Difference of 9 Metal Elements in Postmortem Human Blood and General Population Blood by Inductively Coupled Plasma Mass Spectrometry[J].Journal of Instrumental Analysis,2023,42(06):692-698. DOI: 10.19969/j.fxcsxb.23010910.
建立了血液样本中金属元素的微波消解-电感耦合等离子体质谱(ICP-MS)检测方法。通过优化消解条件,以铋(Bi)和铟(In)双内标校正,对死后人体血液样本和一般人群对照样本中镁(Mg)、铬(Cr)、砷(As)、锶(Sr)、镉(Cd)、钡(Ba)、汞(Hg)、铊(Tl)、铅(Pb)9种金属元素含量进行了检测,并运用统计学方法比较了其差异与关联性。结果表明,在2 mL双氧水、5 mL硝酸、190 ℃的消解条件下,样品的消解效果较好。9种元素线性良好,相关系数(,r,2,)不小于0.997 7,检出限为0.000 4 ~ 0.049 6 ng/mL,加标回收率为86.5% ~ 110%,日内相对标准偏差(RSD)为0.50% ~ 5.9%,日间RSD为2.5% ~ 8.5%,回收率和精密度符合检测要求。9种金属元素数据均不符合Komogorov-Smirnov正态性检验,而两组数据的Mann-Whitney U检验结果存在显著差异(,P ,<, 0.05)。采用Spearman秩相关分析金属之间的相关性,发现大多数金属元素之间显著相关。通过建立二分类Logistic回归模型,研究了样本类型与血样中金属元素浓度的比值比(OR)及95%置信区间,将Mg、Cd、Ba元素同时纳入Logistic回归模型,发现 Mg元素无统计学意义(,P ,>, 0.05),Cd、Ba元素含量与血液样本类型有关联性。该研究建立的检测方法及基础数据可为法医金属元素中毒相关案件的检测和中毒认定提供重要参考和科学数据支撑。
A microwave digestion inductively coupled plasma mass spectrometry(ICP-MS) was developed for the determination of metal elements in blood samples.The digestion conditions were optimized,bismuth(Bi) and indium(In) were used as the double internal standard calibration to detect the content of metal elements in postmortem human blood samples and general population control samples.Meanwhile,statistical methods were used to compare the difference and correlation.The results showed that under the digestion conditions of 2 mL hydrogen peroxide,5 mL nitric acid and 190 ℃,the digestion effect was better.There were good linear relationships for nine elements,including magnesium(Mg),chromium(Cr),arsenic(As),strontium(Sr),cadmium(Cd),barium(Ba),mercury(Hg),thallium(Tl) and lead(Pb),with their correlation coefficients(,r,2,) not less than 0.997 7,and the detection limits of 0.000 4-0.049 6 ng/mL.The spiked recoveries ranged from 86.5% to 110%,with the intra-day relative standard deviations(RSDs) and the inter-day RSDs of 0.50%-5.9% and 2.5%-8.5%,respectively,indicating that the recoveries and the precision meet the detection requirements.The Mann-Whitney U test was used to compare the two groups of data since the data of nine metal elements do not conform to Komogorov-Smirnov normality test,and the difference was significant(,P ,<, 0.05).Spearman rank correlation was used to analyze the correlation among metals,and it was found that most metal elements were significantly correlated.A binary logistic regression model was established to investigate the odds ratio(OR) and 95% confidence interval of the sample type and the concentration of metal elements in the blood sample.Mg,Cd and Ba elements were included in the logistic regression model simultaneously.It was found that the results of Mg element were not statistically significant(,P ,>, 0.05),Cd and Ba elements were related to the type of blood sample.The detection method and basic data established in this paper could provide important reference and scientific data support for detection and identification of cases related to forensic metal element poisoning.
电感耦合等离子体质谱法(ICP-MS)统计学死后血液样本金属元素
inductively coupled plasma mass spectrometry(ICP-MS)statisticspostmortemblood samplemetallic element
Zoroddu M A,Aaseth J,Crisponi G,Medici S,Peana M,Nurchi V M.J. Inorg. Biochem.,2019,195:120-129.
He X H,Jia K,Bai Y,Chen Z Y,Liu Y Y,Huang Y M,Liu X B.J. Hazard. Mater.,2021,405(5):124263.
Huang J,Wang A H,Ren X X,Wei C M,Cui G F,Dong Y,Luan Y J,Du H Y,Chang J,Wang F L.Forensic Sci. Technol. 黄健,王爱华,任昕昕,魏春明,崔冠峰,董颖,栾玉静,杜鸿雁,常靖,王芳琳.刑事技术),2020,45(1):93-96.
Wang A H,Yu Z S,Liu X S,Zhang Y F,Wang R H,Ren X X,Zou B,Hou X P,Chang J.Forensic Sci. Technol. 王爱华,于忠山,刘兴胜,张云峰,王瑞花,任昕昕,邹波,侯小平,常靖.刑事技术),2021,46(6):657-660.
Wang F Y,Sun J W,Lu Y X,Zhang X X,Song P S,Liu Y Y.Analyst,2018,143:4741-4746.
Gong S A,Homburger N,Huang L.J. Forensic Sci.,2022,3(67):1198-1207.
Wang Q Y,Liu Y T,Jiang L Y,Chen A,Han J H,Jin M X.Anal. Chim. Acta,2023,1241:340802.
Kyaw H H,Boonruang S,Mohammed W S,Dutta J.AIP Adv.,2015,5(10):107226.
Paixão L B,Brandão G C,Araujo R G O,Korn M G A.Food Chem.,2019,284:259-263.
Kobylinska N,Kostenko L,Khainakov S,Garcia-Granda S.Microchim. Acta,2020,187:289.
Zhao M Y,Gou J B,Zhang K X,Ruan J J.Foods,2023,12(1):225.
Kopru S,Cadir M,Soylak M.Biol. Trace Elem. Res.,2022,200(12):5298-5306.
Çamur D,Topbaş M,İlter H,Albay M,Ayoğlu F N,Can M,Altın A,Demirtaş Y,Somuncu B P,Aydın F,Açıkgöz B.Environ. Manage.,2021,67(3):553-562.
Wu S F,Luo R X,Zhang S J,Ma A D,Ma D.J. Instrum. Anal. (吴书凡,骆如欣,张素静,马安德,马栋.分析测试学报),2020,39(6):800-803.
Egger A E,Grabmann G,Gollmann-Tepekylü C,Pechriggl E J,Artner C,Türkcan A,Hartinger C G,Fritsch H,Keppler B K,Brenner E,Grimm M,Messner B,Bernhard D.Metallomics,2019,11(12):2010-2019.
Wang X M,Du T T,Wang J,Du X Z,Lu X Q.J. Instrum. Anal. (王雪梅,杜彤彤,王娟,杜新贞,卢小泉.分析测试学报),2017,36(12):1522-1525.
Winek C L,Wahba W W,Winek C L,Balzer T W.Forensic Sci. Int.,2001,122:107-123.
World Health Organization.International Programme on Chemical Safety-Environmental Health Criteria 134:Cadmium[2023-01-09].http://www.inchem.org/documents/ehc/ehc/ehc134.htmhttp://www.inchem.org/documents/ehc/ehc/ehc134.htm.
0
浏览量
13
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构