日用化学工业(中英文) ›› 2023, Vol. 53 ›› Issue (7): 826-832.doi: 10.3969/j.issn.2097-2806.2023.07.013
收稿日期:
2022-07-04
修回日期:
2023-06-27
出版日期:
2023-07-22
发布日期:
2023-07-25
基金资助:
Liu Zhen,Wang Yumei,Yang Junli,Sun Xiaojie()
Received:
2022-07-04
Revised:
2023-06-27
Online:
2023-07-22
Published:
2023-07-25
Contact:
*Tel.: +86-18951783108, E-mail: 55223141@qq.com.
摘要:
建立了一种超高效液相色谱-串联质谱(UPLC-MS/MS)方法测定精油类化妆品中13种双酚类及烷基酚类环境激素。精油类化妆品以10%的氨水-乙腈溶液超声提取,氮吹浓缩后,以甲醇和水流动相梯度洗脱,经Agilent Poroshell EC-C18(3.0×150 mm,2.7 μm)色谱柱分离,电喷雾离子源负离子模式(ESI-)扫描,多反应监测模式(MRM)定量分析。结果表明,13种双酚类及烷基酚类环境激素在0.25~200 ng/mL中一定质量浓度范围内呈现良好线性关系,线性相关系数均大于0.99,各物质检出浓度(LOD)为0.000 375~0.007 5 µg/g,定量浓度(LOQ)为0.001 25~0.025 µg/g;在0.025,0.05及0.25 µg/g三种不同加标浓度水平下,各物质平均回收率范围为81.8%~113.4%,日内精密度(n=6)为1.1%~8.5%,日间精密度(n=18)为3.5%~11.5%,方法前处理过程简单、回收率好、稳定性高,实现了13种目标物质的有效色谱分离,适用于精油类化妆品中13种双酚类及烷基酚类环境激素的同时定量定性分析。
中图分类号:
刘真, 王玉梅, 杨军丽, 孙小杰. UPLC-MS/MS法测定精油类化妆品中13种双酚类及烷基酚类环境激素[J]. 日用化学工业(中英文), 2023, 53(7): 826-832.
Liu Zhen, Wang Yumei, Yang Junli, Sun Xiaojie. Determination of 13 bisphenols and alkylphenols environmental hormones in essential oil cosmetics by UPLC-MS/MS method[J]. China Surfactant Detergent & Cosmetics, 2023, 53(7): 826-832.
表 1
13种双酚类及烷基酚类环境激素的保留时间及质谱参数"
序号 | 化合物(缩写) | 保留时间/min | 母离子(m/z) | 子离子(m/z) | 裂解电压/V | 碰撞能/eV |
---|---|---|---|---|---|---|
1 | 双酚S(BPS) | 3.291 | 249.0 | 108.0*,92.0 | 130 | 21,28 |
2 | 双酚F(BPF) | 3.935 | 199.1 | 77.0*,197.0 | 130 | 41,30 |
3 | 双酚E(BPE) | 4.199 | 213.1 | 198.1*,197.0 | 130 | 15,24 |
4 | 双酚A(BPA) | 4.464 | 227.0 | 212.0*,133.0 | 145 | 24,36 |
5 | 双酚B(BPB) | 4.843 | 241.1 | 212.1*,211.1 | 125 | 15,28 |
6 | 双酚AF(BPAF) | 4.974 | 335.0 | 265.0*,68.9 | 140 | 10,42 |
7 | 双酚C(BPC) | 5.129 | 255.1 | 240.1*,147.1 | 125 | 16,40 |
8 | 双酚Z(BPZ) | 5.334 | 267.1 | 173.1*,145.0 | 125 | 35,41 |
9 | 双酚P(BPP) | 6.114 | 345.1 | 315.1*,133.0 | 140 | 36,44 |
10 | 辛基酚(OP) | 6.348 | 205.0 | 133.0*,117.0 | 80 | 28,80 |
11 | 壬基酚(NP) | 6.694 | 219.0 | 133.0*,147.0 | 80 | 40,40 |
12 | 4-正辛基酚(4-n-OP) | 6.779 | 205.0 | 106.0*,119.0 | 80 | 28,54 |
13 | 4-正壬基酚(4-n-NP) | 7.023 | 219.0 | 106.0*,119.0 | 80 | 30,45 |
表 3
13种待测物的线性方程、线性范围、相关系数、检出浓度及定量浓度"
序号 | 线性方程 | 线性范围/ (ng/mL) | 相关系数 | 检出浓度/ (μg/g) | 检出限/ (ng/mL) | 定量浓度/ (μg/g) | 定量限/ (ng/mL) |
---|---|---|---|---|---|---|---|
1 | y=17 464.54x-1 886.21 | 0.25~50 | 0.998 8 | 0.000 375 | 0.075 | 0.001 25 | 0.25 |
2 | y=586.96x-721.58 | 5.0~200 | 0.998 7 | 0.007 5 | 1.5 | 0.025 | 5.0 |
3 | y=6 412.50x-3 547.29 | 2.5~200 | 0.997 5 | 0.003 75 | 0.75 | 0.012 5 | 2.5 |
4 | y=3 762.23x-19.59 | 2.5~200 | 0.997 4 | 0.003 75 | 0.75 | 0.012 5 | 2.5 |
5 | y=9 034.37x-6 177.68 | 2.5~200 | 0.997 9 | 0.003 75 | 0.75 | 0.012 5 | 2.5 |
6 | y=14 800.71x+5 009.43 | 0.25~50 | 0.998 5 | 0.000 375 | 0.075 | 0.001 25 | 0.25 |
7 | y=3 148.51x-2 723.54 | 2.5~200 | 0.998 3 | 0.003 75 | 0.75 | 0.012 5 | 2.5 |
8 | y=5 303.02x-2 717.85 | 2.5~200 | 0.998 0 | 0.003 75 | 0.75 | 0.012 5 | 2.5 |
9 | y=2 645.32x-595.29 | 2.5~200 | 0.998 4 | 0.003 75 | 0.75 | 0.012 5 | 2.5 |
10 | y=2 000.33x-3 943.13 | 5.0~200 | 0.999 7 | 0.007 5 | 1.5 | 0.025 | 5.0 |
11 | y=4 003.16x+13 568.09 | 2.5~200 | 0.994 1 | 0.003 75 | 0.75 | 0.012 5 | 2.5 |
12 | y=2 264.59x+4 504.78 | 5.0~200 | 0.999 4 | 0.007 5 | 1.5 | 0.025 | 5.0 |
13 | y=1 365.40x+2 228.90 | 5.0~200 | 0.999 8 | 0.007 5 | 1.5 | 0.025 | 5.0 |
表 4
13种待测物的回收率和精密度考察"
浓度添加水平/(μg/g) | 序号 | 平均回收率/% | 日内精密度/%(n=6) | 日间精密度/%(n=6) | 序号 | 平均回收率/% | 日内精密度/%(n=6) | 日间精密度/%(n=6) | |
---|---|---|---|---|---|---|---|---|---|
0.025 | 87.5 | 2.9 | 4.9 | 91.3 | 5.9 | 5.9 | |||
0.05 | 1 | 86.3 | 2.1 | 7.1 | 8 | 86.9 | 3.6 | 9.6 | |
0.25 | 103.8 | 3.3 | 5.2 | 94.3 | 2.6 | 7.5 | |||
0.025 | 90.3 | 4.8 | 4.8 | 87.2 | 3.9 | 7.5 | |||
0.05 | 2 | 91.1 | 5.3 | 7.3 | 9 | 84.7 | 3.4 | 7.4 | |
0.25 | 96.3 | 2.8 | 3.5 | 92.6 | 1.8 | 6.0 | |||
0.025 | 92.6 | 4.6 | 7.6 | 101.6 | 4.5 | 5.9 | |||
0.05 | 3 | 99.5 | 3.5 | 8.5 | 10 | 105.4 | 4.6 | 9.2 | |
0.25 | 90.2 | 2.2 | 5.2 | 82.0 | 3.5 | 6.0 | |||
0.025 | 83.6 | 4.7 | 7.7 | 106.1 | 5.5 | 6.5 | |||
0.05 | 4 | 101.9 | 3.9 | 7.9 | 11 | 110.4 | 3.8 | 9.8 | |
0.25 | 87.7 | 2.7 | 6.7 | 98.9 | 2.0 | 5.8 | |||
0.025 | 113.2 | 4.7 | 5.7 | 82.1 | 3.1 | 6.1 | |||
0.05 | 5 | 113.4 | 3.0 | 9.0 | 12 | 87.4 | 5.9 | 8.0 | |
0.25 | 98.5 | 2.1 | 5.1 | 90.9 | 2.8 | 7.2 | |||
0.025 | 103.9 | 2.9 | 3.9 | 85.2 | 8.5 | 11.5 | |||
0.05 | 6 | 99.2 | 2.4 | 7.4 | 13 | 92.7 | 7.2 | 9.4 | |
0.25 | 98.1 | 1.1 | 6.6 | 81.8 | 3.6 | 6.6 | |||
0.025 | 102.2 | 7.5 | 10.5 | ||||||
0.05 | 7 | 100.5 | 5.0 | 8.1 | |||||
0.25 | 94.2 | 2.6 | 7.6 |
[1] |
Seccia S, Section M F, Grumetto L, et al. Bisphenols and aklylphenols in food: from farm to table[J]. Current Analytical Chemistry, 2018, 14 (4) : 325-343.
doi: 10.2174/1573411013666170822161018 |
[2] |
Li Yongxin, Yin Shuo, Sun Chengjun, et al. Sample treatment methods for the determination of phenolic environmental estrogens in foods and drinking water[J]. Journal of AOAC International, 2020, 103 (2) : 348-364.
doi: 10.5740/jaoacint.19-0249 |
[3] | Huang Rong, Ye Jun, Fu Xiaohong. Progess on detection methods for toxic residues in cosmetics and their ingredients[J]. China Surfactant Detergent & Cosmetics, 2014, 44 (1) : 39-44, 49. |
[4] | General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China. Determination of bisphenol A in cosmetics for export-liquid chromatography with fluorescence detection: SN/T 3822—2014 [S]. Beijing: Standards Press of China, 2014. |
[5] | General Administration of Quality Supervision, Inspection and Quarantine of the People’s Republic of China, Standardization Administration of the People’s Republic of China. Detemination of the contaminant bisphenol A in cosmetics-high performance liquid chromatography-tandem mass spectrometry: GB/T 30939—2014 [S]. Beijing: Standards Press of China, 2014. |
[6] | Selvaraj K K, Shanmugam G, Ramaswamy B R, et al. GC-MS determination of bisphenol A and alkylphenol ethoxylates in river water from India and their ecotoxicological risk assessment[J]. Ecotoxicology and Enviromental Safety, 2014, 99: 13-20. |
[7] | Hua Yongyou, Lin Qi, Lin Yi, et al. Determination of seven bisphenols and alkylphenols in water by ultraperformance liquid chromatography with fluorescence detection[J]. Modern Preventive Medicine, 2018, 45 (7) : 1264-1267. |
[8] |
Pernic M, Lesniakova R, Simek Z, et al. Analysis of alkylphenols and bisphenols in soils using liquid chromatography-tandem mass spectrometry[J]. International Journal of Environmental Analytical Chemistry, 2021, 101 (9) : 1287-1301.
doi: 10.1080/03067319.2019.1679804 |
[9] |
Shan Xiaomei, Shen Denghui, Wang Bingshuang, et al. Simultaneous determination of bisphenols and alkylphenols in water by solid phase extraction and ultra performance liquid chromatography-tandem mass spectrometry[J]. Biomedical and Environmental Sciences, 2014, 27 (6) : 471-474.
doi: 10.3967/bes2014.076 pmid: 24961858 |
[10] |
Dong Hao, Zeng Xiaofang, Bai Weidong. Solid phase extraction with high polarity Carb/PSA as composite fillers prior to UPLC-MS/MS to determine six bisphenols and alkylphenols in trace level hotpot seasoning[J]. Food Chemistry, 2018, 258: 206-213.
doi: S0308-8146(18)30507-7 pmid: 29655724 |
[11] | Yuan Xiaoqian, Han Jing, Jian Longhai, et al. Simultaneous determination of eight bisphenols and alkylphenols endocrine disruptors in cosmetics by ultra-performance liquid chromatography-tandem mass spectrometry[J]. Journal of Instrumental Analysis, 2020, 39 (7) : 906-911. |
[12] |
Yang Song, Zou Nan, Gao Yun, et al. Determination of 18 pesticide residues in environmental water by solid phase extraction-utra performance liquid chromatography-tandem mass spectrometry[J]. Chinese Journal of Chromatography, 2020, 38 (7) : 826-832.
doi: 10.3724/SP.J.1123.2019.12022 |
[1] | 柳婧璇, 金建明, 吴华. 化妆品植物原料(Ⅶ)——抗真菌的植物原料的研究与开发[J]. 日用化学工业(中英文), 2024, 54(3): 259-266. |
[2] | 胡翠翠, 周代红, 陈欣菀, 钟佳伶, 茆灿泉. 中药复方MHC-20的抗化脓性链球菌功效与作用机制探究[J]. 日用化学工业(中英文), 2024, 54(3): 282-289. |
[3] | 毕武, 潘小红, 涂晓琴, 殷帅, 孙辉. 基于网络药理学的化妆品原料粉防己抗敏作用机制分析[J]. 日用化学工业(中英文), 2024, 54(3): 305-312. |
[4] | 李瑶瑶. 异橙黄酮的抗衰老及抗氧化功效研究[J]. 日用化学工业(中英文), 2024, 54(3): 313-319. |
[5] | 张婉萍, 彭祺, 张冬梅, 郑时莲, 蒋汶, 顾理浩. 4-取代酚诱导化学性白斑的机制及研究进展[J]. 日用化学工业(中英文), 2024, 54(3): 320-328. |
[6] | 许梦然, 赵华. 化妆品晒后修护功效评价方法研究进展[J]. 日用化学工业(中英文), 2024, 54(3): 329-336. |
[7] | 塔娜, 冯孟鑫, 高家敏, 张凤兰, 王钢力. 潜在内分泌干扰风险防晒剂的监管及其使用情况分析[J]. 日用化学工业(中英文), 2024, 54(3): 337-343. |
[8] | 周文瑞, 贺建彪, 焦倩, 王紫迪, 苏芊芊, 贾焱. O/W乳化体系化妆品感官评价与仪器分析相关性研究进展[J]. 日用化学工业(中英文), 2024, 54(3): 344-352. |
[9] | 张丽媛, 颜琳琦, 程巧鸳, 戚绿叶, 王容, 黄柳倩. 高效液相色谱法测定化妆品中14种α-羟基酸和羟基酸酯[J]. 日用化学工业(中英文), 2024, 54(3): 353-359. |
[10] | 徐炜, 邹坡, 李长于, 杨铭, 鹿燕, 李慧良. 超高效液相色谱-串联质谱法测定化妆品中36种兴奋剂[J]. 日用化学工业(中英文), 2024, 54(3): 360-368. |
[11] | 周康夫, 支奕轩, 王飞飞, 尚亚卓. 新型乳化体系及其在化妆品中的应用(Ⅵ)——微乳液[J]. 日用化学工业(中英文), 2024, 54(2): 139-148. |
[12] | 张红菱, 程琳, 王海燕, 罗飞亚, 张会亮, 孙磊. 应用DPRA替代方法评价3种香豆素类化合物的皮肤致敏性[J]. 日用化学工业(中英文), 2024, 54(2): 156-160. |
[13] | 谢珍, 黄微, 张劲松, 陈舒怀, 瞿霖吉, 匡荣. 化妆品眼刺激性评价中角膜损伤生物标志物研究[J]. 日用化学工业(中英文), 2024, 54(2): 161-167. |
[14] | 李慧怡, 周悦, 吴谦, 杜丽镝, 谢嘉颖, 谭建华. 化妆品防晒黑功效评价方法研究[J]. 日用化学工业(中英文), 2024, 54(2): 168-174. |
[15] | 彭心宇, 梁海燕, 温紫娴, 李美停, 李鑫, 邱晓锋. 流变调节剂在二元喷雾产品中的影响[J]. 日用化学工业(中英文), 2024, 54(2): 181-187. |
|