1.长沙市食品药品检验所,湖南 长沙 410036
2.国家酒类产品质量检验检测中心(湖南),湖南 长沙 410036
汪 辉,硕士,高级工程师,研究方向:食品和化妆品成分分析,E-mail:wanghuei158@163.com
扫 描 看 全 文
欧阳丽,蒋顺,胡丽俐等.QuEChERS/超高效液相色谱-串联质谱法同时测定防晒化妆品中15种香豆素与10种二苯甲酮类化合物[J].分析测试学报,2023,42(07):801-807.
OUYANG Li,JIANG Shun,HU Li-li,et al.Simultaneous Determination of 15 Coumarins and 10 Benzophenones in Sunscreen Cosmetics by QuEChERS/Ultra-high Performance Liquid Chromatography-Tandem Mass Spectrometry[J].Journal of Instrumental Analysis,2023,42(07):801-807.
欧阳丽,蒋顺,胡丽俐等.QuEChERS/超高效液相色谱-串联质谱法同时测定防晒化妆品中15种香豆素与10种二苯甲酮类化合物[J].分析测试学报,2023,42(07):801-807. DOI: 10.19969/j.fxcsxb.23031902.
OUYANG Li,JIANG Shun,HU Li-li,et al.Simultaneous Determination of 15 Coumarins and 10 Benzophenones in Sunscreen Cosmetics by QuEChERS/Ultra-high Performance Liquid Chromatography-Tandem Mass Spectrometry[J].Journal of Instrumental Analysis,2023,42(07):801-807. DOI: 10.19969/j.fxcsxb.23031902.
建立了防晒化妆品中15种香豆素与10种二苯甲酮类化合物的QuEChERS/超高效液相色谱-串联质谱(UPLC-MS/MS)检测方法。防晒霜、粉底、隔离、喷雾等不同类型的化妆品样品采用乙腈提取,50 mg C,18,与150 mg无水MgSO,4,吸附剂净化。采用Zorbax SB-C,18,(RRHD)色谱柱(2.1 mm × 150 mm,1.8 µm)分离,0.1%甲酸水溶液(含5 mmol/L乙酸铵)和乙腈为流动相梯度洗脱,电喷雾离子源正离子模式、多反应监测扫描模式进行测定,外标法定量,粉底和喷雾样品以基质匹配标准溶液外标法定量。结果显示,25种待测组分在各自质量浓度范围内线性关系良好,相关系数(,r,)均不低于0.995。对于防晒霜和隔离类样品,方法检出限(LOD)为0.005 ~ 0.450 μg/g,定量下限(LOQ)为0.010 ~ 0.750 μg/g;对于粉底与喷雾类样品,方法检出限为0.005 ~ 0.500 μg/g,定量下限为0.010 ~ 1.000 μg/g。25种待测组分的平均回收率为80.8% ~ 113%,相对标准偏差为0.20% ~ 6.8%。样品溶液中25种待测组分在48 h内稳定。该方法前处理简单、灵敏、准确,适用于化妆品中香豆素与二苯甲酮类化合物的同时检测。
A QuEChERS/ultra-high performance liquid chromatography-tandem mass spectrometric(UPLC-MS/MS) method was established for the simultaneous determination of 15 coumarins and 10 benzophenones in sunscreen cosmetics.The samples including cream,foundation,isolation and spray were extracted with acetonitrile,and purified with a combined adsorbent of 50 mg C,18, and 150 mg anhydrous MgSO,4,.The chromatographic separation for the analytes was achieved on a Zorbax SB-C,18,(RRHD) column(2.1 mm × 150 mm,1.8 µm). Gradient elution was performed using 0.1% formic acid solution(containing 5 mmol/L ammonium acetate) and acetonitrile.Then the analytes were determined with electrospray ionization in positive ion mode under multiple reaction monitoring(MRM),and quantified by external standard method,while the analytes in foundation and spray samples were quantified by matrix-matched external standard method.The experimental results indicated that good linearities were observed for 25 kinds of analytes in the respective concentration ranges,with their correlation coefficients(,r,) larger than 0.995.The limits of detection(LODs) and limits of quantitation(LOQs) for cream and isolation samples were in the ranges of 0.005-0.450 μg/g and 0.010-0.750 μg/g,while the LODs and LOQs for foundation and spray samples were 0.005-0.500 μg/g and 0.010-1.000 μg/g,respectively.Mean recoveries for the analytes at three spiked levels ranged from 80.8% to 113%,with relative standard deviations(RSDs) of 0.20%-6.8%.Moreover,the analytes in the sample solutions were stable within 48 hours.The proposed method is simple,sensitive and accurate,and it could be applied to the simultaneous determination of coumarin and benzophenone compounds in cosmetics.
QuEChERS超高效液相色谱-串联质谱防晒化妆品香豆素二苯甲酮
QuEChERSultra-high performance liquid chromatography-tandem mass spectrometrysunscreen cosmeticscoumarinbenzophenone
Liu G Q,Li J,Xu J G,Lü Y W,Pan X J,Dong Y Y.China Surfactant Deterg. Cosmet. (刘国清,李静,许建帼,吕延文,潘向军,董云渊.日用化学工业),2020,50(3):204-207.
Musa M A,Cooperwood J S,Khan M O F.Curr. Med. Chem.,2008,15(26):2664-2679.
Stiefel C,Schuber T,Morlock G E.ACS Omega,2017,2(8):5242-5250.
Liu S R,Yang Y W,Zhu Y.J. Environ. Health(刘思然,杨艳伟,朱英.环境与健康杂志),2016,33(2):162-164.
China Food and Drug Administration. Safety and Technical Standards for Cosmetics(国家食品药品监督管理总局. 化妆品安全技术规范),2015.
Blüthgen N,Zucchi S,Fent K.Toxicol. Appl. Pharm.,2012,263:184-194.
Zucchi S,Blüthgen N,Ieronimo A,Fent K.Toxicol. Appl. Pharm.,2011,250:137-146.
Watanabe Y,Kojima H,Takeuchi S,Uramaru N,Sanoh S,Sugihara K,Kitamura S,Ohta S.Toxicol. Appl. Pharm.,2015,282:119-128.
Díaz-Cruz M S,Barceló D.Trends Anal. Chem.,2009,28(6):708-717.
Meng X S,Ma Q,Yuan H C,Bai H,Zhang Q,Guo X Y.J. Instrum. Anal. (孟宪双,马强,袁汉成,白桦,张庆,郭项雨.分析测试学报),2016,35(7):709-804.
Shang S,Feng Y L,Fang F.China Surfactant Deterg. Cosmet. (尚姝,冯有龙,方方.日用化学工业),2021,51(10):1018-1025.
Lu S Y,Xing H Y,Wu Y C,Jin P.Chem. Anal. Meterage(鲁素雅,邢海艳,吴义春,金鹏.化学分析计量),2021,30(10):50-54.
He X X,Wang G L,Cao J.Deterg. Cosmet. (贺鑫鑫,王钢力,曹进.日用化学品科学),2020,43(12):52-60.
Lü G.J. Environ. Health(吕光.环境与健康杂志),2021,38(3):262-264.
Zhang K M,Deng M,Su Y Y,Xie D,Xu Y C,Liu X H.Chin. J. Chromatogr. (张科明,邓鸣,苏媛媛,谢东,许有诚,刘向红.色谱),2021,39(4):415-423.
Liu X J,Zhang X,Zhou H,Ouyang S J,Qiu J W,Liang Z Y,Xiao S X.Guangzhou Chem. Ind. 刘小娟,张弦,周桓,欧阳淑娟,邱静雯,梁梓韵,肖树雄.广州化工),2020,48(24):78-80.
Zheng C Y,Gu H,Yu X F,Shao C Y.Flavour Fragrance Cosmet. (郑晨阳,顾华,余肖峰,邵超英.香料香精化妆品),2016,4:28-32.
Zhou Z M,Li J.Guangdong Chem. Ind. (周智明,李静.广东化工),2020,47(14):159-162.
Lu S Y,Xing H Y,Liu Y,Wu Y C,Jin P,Chen C Y.Phys. Test. Chem. Anal.:Chem. Anal. (鲁素雅,邢海艳,刘洋,吴义春,金鹏,陈长毅.理化检验-化学分册),2021,57(12):1104-1109.
Ma Q,Xi H W,Ma H J,Meng X S,Wang Z M,Bai H,Li W T,Wang C.Chromatographia,2015,78:241-249.
Fan C L,Li Y C,Shen E Y.Chin. J. Health Lab. Technol. (范晨丽,李彦超,申二永.中国卫生检验杂志),2020,30(24):2959-2966.
Zheng S,Xie J,Qin J.China Pharm. (郑抒,谢静,秦剑.中国药业),2022,31(17):77-80.
Zhang Z P,Zhang R J,Xiao H,Bhattacharya K,Bitounis D,Demokritou P,McClements D J.NanoImpact,2019,(13):13-25.
0
浏览量
24
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构