LI Li,LI Shuo,LI Qing-wu,FAN Chang-jun,WANG Hai-yan.Research on the Determination Method of Cerium Oxide Nanoparticles in Cosmetics[J].Journal of Instrumental Analysis,2024,43(12):1944-1951.
LI Li,LI Shuo,LI Qing-wu,FAN Chang-jun,WANG Hai-yan.Research on the Determination Method of Cerium Oxide Nanoparticles in Cosmetics[J].Journal of Instrumental Analysis,2024,43(12):1944-1951. DOI: 10.12452/j.fxcsxb.24041301.
Research on the Determination Method of Cerium Oxide Nanoparticles in Cosmetics
A method was initially developed for the determination of particle size and distribution of cerium oxide nanoparticles in cosmetics using single particle inductively coupled plasma-mass spectrometry(spICP-MS). 0.1% Triton X-100 was employed as an extractant for ultrasound-assisted extraction of cerium oxide nanoparticles in cosmetics. The data were acquired in pulse signal mode,and the particle size and distribution were determined through calculation. The effect of different calculation methods on the detection limit of particle size when spICP-MS is used for the detection of nanoparticles in cosmetics was further investigated. The experimental results demonstrated that the lower limit of particle size detection was influenced not only by the background signal of the isotope to be detected but also by the cosmetic matrix. Different background thresholds significantly affected both the lower limit of particle size detection and the number of identified particles,thereby directly impacting compliance and safety considerations for cosmetics. The accurate selection of the threshold value is an important factor in the determination of the presence or absence of nanoscale particles in cosmetics by sampling spICP-MS for cosmetic use,which should be further evaluated on the basis of the existing classification of cosmetic matrices,depending on the nature of the sample. This method enables rapid screening of cerium dioxide nanoparticles in sunscreen cosmetics while simultaneously determining and characterizing their particle size and distribution,providing a framework for discussing compliance and safety investigations regarding nanoparticle-containing cosmetics.
关键词
单颗粒电感耦合等离子体质谱法纳米氧化铈(CeO2-NP)背景阈值化妆品
Keywords
single particle inductively coupled plasma mass spectrometry(spICP-MS)cerium oxide nanoparticle(CeO2-NP)threshold criterioncosmetics
references
Fang R,Liu M,Jiang L. Adv. Funct. Mater.,2020,30(2):1903351.
Yusuf E O,Amber I,Officer S,Oluyemi G F. J. Eng. Res.,2024,12(2):275-284.
Khadanga V,Mishra P C. Toxicology,2024,504:153781.
GB/T 42732-2023. Nanotechnologies-Size Distribution and Concentration Measurement of Inorganic Nanoparticles in Aqueous Media—Single Particle Inductively Coupled Plasma Mass Spectrometry. National Standards of the People's Republic of China(纳米技术. 水相中无机纳米颗粒的尺寸分布和浓度测量-单颗粒电感耦合等离子体质谱法. 中华人民共和国国家标准).
Nery É M,Martinez R M,Velasco M V R,Baby A R. J. Cosmet. Dermatol.,2021,20(4):1061-1065.
Lu P J,Cheng W L,Huang S C,Chen Y P,Chou H K,Cheng H F. Int. J. Cosmet. Sci.,2015,37(6):620-626.
Naidoo L,Kanchi S,Drexel R,Meier F,Bisetty K. ACS Appl. Nano Mater.,2021,4(5):4665-4675.
De la Calle I,Menta M,Klein M,Séby F. Talanta,2017,171:291-306.
Zholobak N M,Shcherbakov A B,Bogorad-Kobelska A S,Ivanova O S,Baranchikov A Y,Spivak N Y,Ivanov V K. J. Photochem. Photobiol. B,2014,130:102-108.
Yabe S,Momose S. J. Soc. Cosmet. Chem. Jpn.,1998,32(4):372-378.
Yabe S,Sato T. J. Solid State Chem.,2003,171(1):7-11.
Watabe K,Kumei T,Yin S,Sato T. J. Soc. Cosmet. Chem. Jpn.,2014,48(1):11-18.
China Food and Drug Administration. Safety and Technical Standards for Cosmetics. Beijing:People’s Medical Publishing House(国家食品药品监督管理总局. 化妆品安全技术规范. 北京:人民卫生出版社),2018.
Montaño M D,Olesik J W,Barber A G,Challis K,Ranville J F. Anal. Bioanal. Chem.,2016,408(19):5053-5074.
Phalyvong K,Sivry Y,Pauwels H,Gelabert A,Tharaud M,Wille G,Bourrat X,Benedetti M F. Front. Environ. Sci.,2020,8:1-14.
Mackevica A,Olsson M E,Hansen S F. J. Nanopart. Res.,2018,20(6):1-11.
Aznar R,Barahona F,Geiss O,Ponti J,Luis T J,Barrero-Moreno J. Talanta,2017,175:200-208.
Chun J,Zhang K,Zhang T,Liang W X,Song Y M,Guo P R. J. Instrum. Anal.(淳杰,张凯,张婷,梁维新,宋玉梅,郭鹏然. 分析测试学报),2024,43(8):1144-1153.
Huang Z L,Hu Y L,Liu J,Wu Y,Zhao J Y,Liu R,Lü Y. J. Instrum. Anal.(黄自立,胡悦莉,刘静,吴仪,赵劲一,刘睿,吕弋. 分析测试学报),2022,41(4):625-631.
Mitrano D M,Lesher E K,Bednar A,Monserud J,Higgins C P,Ranville J F. Environ. Toxicol. Chem.,2012,31(1):115-121.
Gondikas A P,Kammer F,Reed R B,Wagner S,Ranville J F,Hofmann T. Environ. Sci. Technol.,2014,48(10):5415-5422.
Mackevica A,Olsson M E,Hansen S F. J. Nanopart. Res.,2016,18(5):1-11.
Witzler M,Küllmer F,Hirtz A,Günther K. J. Agric. Food Chem.,2016,64(20):4165-4170.
Pace H E,Rogers N J,Jarolimek C,Coleman V A,Gray E P,Higgins C P,Ranville J F. Environ. Sci. Technol.,2012,46(22):12272-12280.
Liu W,Shi H,Liu K,Liu X,Sahle-Demessie E,Stephan C. J. Agric. Food Chem.,2021,69(3):1115-1122.
Donovan A R,Adams C D,Ma Y F,Stephan C,Eichholz T,Shi H L. Anal. Bioanal. Chem.,2016,408(19):5137-5145.
Jreije I,Azimzada A,Hadioui M,Wilkinson K J. Molecules,2020,25(23):5516.
Dan Y B,Ma X M,Zhang W L,Liu K,Stephan C,Shi H L. Anal. Bioanal. Chem.,2016,408(19):5157-5167.
Lee S,Bi X Y,Reed R B,Ranville J F,Herckes P,Westerhoff P. Environ. Sci. Technol.,2014,48(17):10291-10300.
Laborda F,Bolea E,Jiménez-Lamana J. Anal. Chem.,2014,86(5):2270-2278.
Laborda F,Gimenez-Ingalaturre A C,Bolea E,Castillo J R. Spectrochim. Acta B,2019,159:105654.
Pace H E,Rogers N J,Jarolimek C,Coleman V A,Higgins C P,Ranville J F. Anal. Chem.,2011,83(24):9361-9369.
Rapid Screening and Determination of 15 Prostaglandin Analogues in Cosmetics by Ultra Performance Liquid Chromatography-Quadrupole-Time-of-flight High-resolution Mass Spectrometry
Determination of 67 Indicative Components from Plant Extracts in Cosmetics by Ultra High Performance Liquid Chromatography- Tandem Mass Spectrometry
Related Author
LI Li
LI Shuo
LI Qing-wu
FAN Chang-jun
WANG Hai-yan
CHEN An-li
ZHANG Jing
HUANG Zi-feng
Related Institution
National Institutes for Food and Drug Control,NMPA Key Laboratory for Research and Evaluation of Cosmetics
National Institute of Metrology,Beijing China
Shimadzu China Innovation Center,Shimadzu(China) Co.,Ltd,Beijing China
Guangzhou Institute for Drug Control
Guangdong Provincial Engineering Research Center for Quality and Safety of Traditional Chinese Medicine,Guangdong Provincial Key Laboratory of Chemical Measurement and Emergency Test Technology,Institute of Analysis,Guangdong Academy of Sciences(China National Analytical Center,), Guangzhou