日用化学工业 ›› 2021, Vol. 51 ›› Issue (5): 468-476.doi: 10.3969/j.issn.1001-1803.2021.05.016
• 分析与检测 • 上一篇
收稿日期:
2020-07-30
修回日期:
2021-05-06
出版日期:
2021-05-22
发布日期:
2021-05-21
通讯作者:
刘红
作者简介:
杨飘飘(1993-),女,湖北人,助理工程师,学士,电话:15027135365,邮箱: 基金资助:
YANG Piao-piao1,2(),LIU Hong1,2(
),LI Li-xia1,2
Received:
2020-07-30
Revised:
2021-05-06
Online:
2021-05-22
Published:
2021-05-21
Contact:
Hong LIU
摘要:
建立了全自动固相萃取-超高效液相色谱-串联质谱法(UPLC-MS/MS)同时快速测定化妆品中76种糖皮质激素的分析方法。质谱仪采用电喷雾离子化源、正离子多反应检测模式。实验对液态水基类、乳液类、膏霜类三种不同基质类别的化妆品进行考察。样品以饱和氯化钠溶液分散,乙腈进行提取,并选择全自动固相萃取仪进行净化过程。结果表明,76种糖皮质激素的检出限(LODs)为0.004~0.024 μg/g;在10~100 ng/mL范围内线性关系良好(r>0.99);回收率为76.1%~120.8%,相对标准偏差(RSD)为0.4%~13.0%。该方法简便高效,灵敏可靠,适用于各种不同类别的化妆品中76种糖皮质激素的检测。
中图分类号:
杨飘飘,刘红,李丽霞. 全自动固相萃取-LC/MS/MS法测定化妆品中76种糖皮质激素[J]. 日用化学工业, 2021, 51(5): 468-476.
YANG Piao-piao,LIU Hong,LI Li-xia. Detection of 76 glucocorticoids in cosmetics by automatic solid-phase extraction and LC/MS/MS[J]. China Surfactant Detergent & Cosmetics, 2021, 51(5): 468-476.
表 2
76种分析物的保留时间和质谱参数"
序号 | 糖皮质激素 | 保留时间t/min | 母离子(m/z) | 子离子(m/z) | 子离子碰撞气能量E/eV |
---|---|---|---|---|---|
1 | 泼尼松龙 | 18.81 | 361.2 | 147.0*, 343.1 | 24, 10 |
2 | 氢化可的松 | 19.09 | 363.2 | 120.9*, 104.9 | 26, 52 |
3 | 泼尼松 | 18.72 | 359.2 | 147.0*, 341.1 | 30, 8 |
4 | 可的松 | 19.45 | 361.2 | 163.0*, 121.0 | 26, 28 |
5 | 甲基泼尼松龙 | 23.87 | 375.2 | 357.1*, 161.1 | 10, 18 |
6 | 倍他米松 | 24.44 | 393.2 | 355.1*, 147.0 | 12, 34 |
7 | 地塞米松 | 24.86 | 393.2 | 355.1*, 147.0 | 12, 28 |
8 | 氟米松 | 25.00 | 411.2 | 253.1*, 121.0 | 14, 28 |
9 | 倍氯米松 | 26.20 | 409.3 | 391.1*, 147.0 | 11, 24 |
10 | 曲安奈德 | 27.10 | 435.2 | 339.1*, 397.2 | 16, 18 |
11 | 氟氢缩松 | 28.07 | 437.2 | 121.0*, 180.9 | 35, 25 |
12 | 曲安西龙双醋酸酯 | 28.23 | 479.2 | 321.1*, 441.2 | 18, 10 |
13 | 泼尼松龙醋酸酯 | 28.28 | 403.2 | 147.0*, 384.9 | 22, 14 |
14 | 氟米龙 | 29.09 | 377.2 | 279.2*, 321.2 | 16, 14 |
15 | 氢化可的松醋酸酯 | 28.80 | 405.3 | 309.2*, 121.0 | 14, 28 |
16 | 地夫可特 | 30.56 | 442.3 | 124.0*, 142.1 | 50, 34 |
17 | 氟氢可的松醋酸酯 | 29.21 | 423.2 | 239.1*, 121.0 | 30, 34 |
18 | 泼尼松醋酸酯 | 30.07 | 401.2 | 295.2*, 147.1 | 12, 26 |
19 | 可的松醋酸酯 | 30.75 | 403.2 | 163.1*, 343.1 | 24, 20 |
20 | 甲基泼尼松龙醋酸酯 | 32.54 | 417.2 | 399.2*, 253.2 | 10, 26 |
21 | 倍他米松醋酸酯 | 32.82 | 435.2 | 309.0*, 337.2 | 12, 16 |
22 | 氢化可的松丁酸酯 | 34.36 | 433.2 | 121.0*, 345.2 | 30, 12 |
23 | 地塞米松醋酸酯 | 34.01 | 435.2 | 309.2*, 337.2 | 16, 10 |
24 | 氟米龙醋酸酯 | 35.49 | 419.2 | 279.1*, 321.1 | 16, 12 |
25 | 氢化可的松戊酸酯 | 38.43 | 447.2 | 121.0*, 345.2 | 28, 12 |
26 | 曲安奈德醋酸酯 | 38.36 | 477.3 | 321.2*, 339.2 | 16, 12 |
27 | 氟轻松醋酸酯 | 39.28 | 495.2 | 121.0*, 337.1 | 36, 16 |
28 | 二氟拉松双醋酸酯 | 39.64 | 495.2 | 317.1*, 279.1 | 12, 16 |
29 | 倍他米松戊酸酯 | 41.34 | 477.2 | 355.2*, 279.1 | 10, 16 |
30 | 泼尼卡酯 | 42.39 | 489.3 | 115.0*, 381.2 | 16, 10 |
31 | 哈西奈德 | 42.04 | 455.2 | 121.0*, 105.0 | 62, 58 |
32 | 阿氯米松双丙酸酯 | 42.88 | 521.3 | 301.1*, 279.0 | 15, 14 |
33 | 安西奈德 | 42.66 | 503.2 | 321.1*, 339.1 | 18, 16 |
34 | 氯倍他索丙酸酯 | 42.93 | 467.2 | 373.1*, 355.0 | 10, 14 |
35 | 氟替卡松丙酸酯 | 43.39 | 501.2 | 293.2*, 313.1 | 14, 12 |
36 | 莫米他松糠酸酯 | 43.49 | 521.1 | 503.0*, 263.0 | 18, 30 |
37 | 倍他米松双丙酸酯 | 43.71 | 505.3 | 279.2*, 319.1 | 16, 14 |
38 | 倍氯米松双丙酸酯 | 44.47 | 521.3 | 319.2*, 503.0 | 12, 10 |
39 | 氯倍他松丁酸酯 | 44.99 | 479.2 | 343.1*, 279.1 | 18, 18 |
40 | 氟轻松 | 28.37 | 453.2 | 337.1*, 121.2 | 18, 44 |
41 | 氢化可的松环戊丙酸酯 | 45.37 | 487.4 | 107.2*, 327.1 | 43, 26 |
42 | 氟可龙 | 28.73 | 377.2 | 303.2*, 171.1 | 30, 20 |
43 | 莫米松 | 38.00 | 429.1 | 411.2*, 237.1 | 12, 30 |
44 | 地索奈德 | 26.89 | 417.2 | 147.0*, 173.0 | 44, 34 |
45 | 22(R)-布地奈德 | 33.96 | 431.1 | 413.0*, 147.0 | 16, 44 |
46 | 22(S)-布地奈德 | 34.54 | 431.1 | 413.0*, 147.0 | 16, 44 |
47 | 去羟米松 | 29.38 | 377.2 | 303.1*, 171.0 | 20, 27 |
48 | 双氟拉松 | 24.36 | 411.1 | 121.1*, 253.1 | 35, 25 |
49 | 氟尼缩松 | 27.30 | 435.1 | 339.1*, 321.1 | 20, 23 |
50 | 帕拉米松乙酸酯 | 33.64 | 435.1 | 417.0*, 319.1 | 11, 22 |
51 | 双氟美松醋酸酯 | 34.07 | 453.1 | 433.1*, 253.1 | 11, 24 |
52 | 地塞米松戊酸酯 | 39.90 | 477.3 | 355.2*, 279.1 | 15, 35 |
53 | 地塞米松特戊酸酯 | 43.64 | 477.3 | 355.2*, 237.1 | 17, 38 |
54 | 异氟泼尼龙 | 18.81 | 379.2 | 147.1*,341.1 | 38, 26 |
55 | 16α-羟基泼尼松龙醋酸酯 | 21.38 | 419.2 | 323.2*, 226.0 | 18, 27 |
56 | 6α-氟-异氟泼尼龙 | 18.94 | 397.1 | 253.1*, 121.0 | 27, 27 |
57 | 倍他米松苯甲酸酯 | 41.54 | 497.1 | 355.1*, 279.1 | 13, 25 |
58 | 双氟可龙戊酸酯 | 44.92 | 479.2 | 85.1*, 375.1 | 28, 15 |
59 | 地塞米松异烟酸酯 | 36.17 | 498.1 | 106.0*, 478.2 | 50, 17 |
60 | 氟可龙特戊酸酯 | 44.93 | 461.1 | 341.1*, 303.1 | 17, 18 |
61 | 氟米松特戊酸酯 | 43.50 | 495.1 | 253.0*, 373.0 | 25, 18 |
62 | 氟氢可的松 | 19.32 | 381.2 | 239.1*, 181.0 | 37, 44 |
63 | 瑞美松龙 | 43.28 | 371.2 | 353.2*, 121.1 | 13, 39 |
64 | 己曲安奈德 | 46.20 | 533.3 | 415.2*, 397.2 | 19, 20 |
65 | 甲基泼尼松龙醋丙酸酯 | 41.68 | 473.3 | 381.2*, 161.2 | 13, 32 |
66 | 异氟泼尼龙醋酸酯 | 28.43 | 421.0 | 305.2*, 147.1 | 19, 40 |
67 | 甲泼尼松 | 24.86 | 373.2 | 355.1*, 337.0 | 17, 18 |
68 | 氟泼尼龙 | 18.59 | 379.2 | 323.2*, 171.1 | 15, 37 |
69 | 卤贝他索 | 35.39 | 429.0 | 253.0*, 121.1 | 28, 41 |
70 | 卤贝他索丙酸酯 | 42.91 | 485.2 | 261.0*, 121.0 | 29, 51 |
71 | 卤美他松 | 30.85 | 445.1 | 155.1*, 169.1 | 40, 34 |
72 | 氯泼尼醇 | 26.56 | 392.9 | 205.1*, 271.1 | 30, 25 |
73 | 泼尼松龙特戊酸酯 | 41.31 | 445.1 | 307.1*, 325.2 | 19, 19 |
74 | 双氟泼尼酯 | 41.63 | 509.0 | 303.0*, 279.1 | 18, 18 |
75 | 替可的松特戊酸酯 | 42.91 | 463.3 | 57.2*, 343.1 | 26, 25 |
76 | 依碳氯替泼诺 | 42.56 | 467.2 | 359.0*, 265.0 | 14, 25 |
表 4
76种化合物在三种不同基质中的线性相关系数、线性方程、回收率、精密度、检出限和定量限"
序号 | 水剂类 | 乳液类 | 膏霜类 | 检出限/ (μg·g-1) | 定量限/ (μg·g-1) | |||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
相关 系数 | 线性方程 | 回收率/% | 精密度/% | 相关 系数 | 线性方程 | 回收率/% | 精密度/% | 相关 系数 | 线性方程 | 回收率/% | 精密度/% | |||
1 | 0.992 6 | Y=823.4X+1 992.8 | 79.3 | 5.7 | 0.997 9 | Y=1 681.7X+2 061.5 | 98.8 | 3.6 | 0.994 0 | Y=735.3X-422.4 | 98.7 | 4.3 | 0.013 | 0.05 |
2 | 0.993 4 | Y=2 501.5X+2 014.4 | 85.1 | 4.6 | 0.998 8 | Y=6 258.5X+1 967.6 | 98.8 | 2.6 | 0.999 3 | Y=879.4X+438 | 92.5 | 5.6 | 0.012 | 0.05 |
3 | 0.991 8 | Y=2 037.5X+4 953.2 | 78.5 | 4.3 | 0.999 2 | Y=3 375.2X+1 508.7 | 98.3 | 2.8 | 0.993 8 | Y=1 299X-1 010.5 | 101.5 | 4.4 | 0.012 | 0.05 |
4 | 0.994 9 | Y=4 337.3X+2 596.6 | 87.8 | 5.0 | 0.999 3 | Y=7 710.1X+358.1 | 97.0 | 3.5 | 0.996 9 | Y=5 064.6X+729.6 | 97.8 | 4.5 | 0.013 | 0.05 |
5 | 0.998 7 | Y=3 983.3X+3 739.4 | 93.5 | 3.1 | 0.998 4 | Y=4 311.1X+369.2 | 97.2 | 2.5 | 0.997 8 | Y=2 887X+205.1 | 104.8 | 4.0 | 0.012 | 0.05 |
6 | 0.998 3 | Y=1 400.4X+1 532.9 | 93.1 | 3.3 | 0.996 7 | Y=1 543.7X+1 877.9 | 97.7 | 4.3 | 0.998 8 | Y=615.8X+147 | 100.3 | 5.0 | 0.012 | 0.05 |
7 | 0.999 1 | Y=1 658.5X+1 667.9 | 95.7 | 3.9 | 0.998 1 | Y=1 667.1X+1 799 | 96.2 | 3.8 | 0.998 8 | Y=1 083X+396.4 | 99.8 | 6.0 | 0.013 | 0.05 |
8 | 0.997 3 | Y=2 227.3X+2 401.3 | 97.2 | 3.5 | 0.998 1 | Y=2 228.9X+2 659 | 95.6 | 4.7 | 0.997 8 | Y=1 603.3X+648 | 98.8 | 4.4 | 0.012 | 0.05 |
9 | 0.998 5 | Y=4 611.6X+5 072.9 | 99.2 | 2.7 | 0.998 2 | Y=4 650.7X+4 867 | 97.9 | 5.1 | 0.996 7 | Y=4 347.7X+2 893 | 107.5 | 3.6 | 0.012 | 0.05 |
10 | 0.996 2 | Y=1 699.8X+2 145 | 96.3 | 4.0 | 0.999 1 | Y=1 663.5X+744.3 | 98.5 | 3.8 | 0.996 2 | Y=1 437.3X+1 587.8 | 100.6 | 4.0 | 0.012 | 0.05 |
11 | 0.998 8 | Y=958.5X+192.5 | 97.5 | 3.6 | 0.997 5 | Y=876.3X+869 | 94.7 | 6.7 | 0.993 0 | Y=849.1X-193.1 | 102.7 | 4.6 | 0.012 | 0.05 |
12 | 0.997 7 | Y=1 420.3X+1 901.9 | 96.6 | 5.9 | 0.997 8 | Y=1 465.6X+1 169.3 | 97.8 | 4.0 | 0.995 1 | Y=1 290.5X+1 923.2 | 105.9 | 5.7 | 0.012 | 0.05 |
13 | 0.997 8 | Y=1 334.5X+732.6 | 95.3 | 3.8 | 0.998 6 | Y=1 318.6X+62.2 | 99.8 | 4.2 | 0.995 1 | Y=1 240.1X+382.8 | 103.4 | 5.0 | 0.013 | 0.05 |
14 | 0.998 6 | Y=3 661.4X+3 572.5 | 100.0 | 2.5 | 0.997 3 | Y=3 631.3X+1 948.4 | 98.4 | 4.4 | 0.995 8 | Y=3 419.1X+2 212.2 | 102.4 | 6.1 | 0.012 | 0.05 |
15 | 0.999 3 | Y=1 490.9X+827.5 | 98.3 | 6.0 | 0.999 0 | Y=1 470X+387.1 | 97.7 | 6.3 | 0.992 1 | Y=1 467.7X-1 034.9 | 104.8 | 4.7 | 0.012 | 0.05 |
16 | 0.998 6 | Y=4 534.8X+346.1 | 96.7 | 4.7 | 0.999 2 | Y=4 635.6X-1 646.2 | 98.8 | 5.9 | 0.994 8 | Y=4 373.2X-146.3 | 103.7 | 4.9 | 0.012 | 0.05 |
17 | 0.998 4 | Y=2 301.3X+2 026.8 | 102.1 | 4.3 | 0.998 5 | Y=2 355.4X+499.8 | 97.9 | 4.1 | 0.992 6 | Y=2 231.9X-70.7 | 101.4 | 5.5 | 0.012 | 0.05 |
18 | 0.998 7 | Y=2 087.1X+836.6 | 98.3 | 5.3 | 0.998 3 | Y=2 043.7X+768.6 | 97.5 | 3.2 | 0.992 5 | Y=1 974.4X+171 | 101.1 | 3.7 | 0.012 | 0.05 |
19 | 0.999 0 | Y=5 451.3X+377.8 | 99.9 | 3.8 | 0.999 1 | Y=5 515.9X-1 480.3 | 98.6 | 4.0 | 0.995 2 | Y=5 166.9X-143.1 | 101.0 | 4.5 | 0.013 | 0.05 |
20 | 0.998 0 | Y=5 162.1X+4 577.5 | 95.0 | 2.5 | 0.998 7 | Y=5 208.5X-691.9 | 98.6 | 4.2 | 0.993 9 | Y=4 496.4X+1 261.9 | 103.9 | 4.1 | 0.012 | 0.05 |
21 | 0.997 5 | Y=425.4X+303 | 95.0 | 7.5 | 0.998 6 | Y=418.7X+305.5 | 91.2 | 5.4 | 0.995 4 | Y=404.3X-94.7 | 101.6 | 5.0 | 0.012 | 0.05 |
22 | 0.998 6 | Y=6 081.8X+2 430.6 | 96.0 | 3.1 | 0.998 3 | Y=5 824.1X+2 672.8 | 96.8 | 5.1 | 0.995 0 | Y=5 442.1X-499.7 | 103.2 | 3.4 | 0.012 | 0.05 |
23 | 0.995 2 | Y=1 308.9X+2 894.5 | 96.3 | 3.6 | 0.998 0 | Y=1 344X+1 413.2 | 95.8 | 6.4 | 0.994 3 | Y=1 248.3X+1 157.9 | 103.7 | 4.7 | 0.012 | 0.05 |
24 | 0.997 1 | Y=10 766.6X+9 555.1 | 102.1 | 2.6 | 0.999 0 | Y=11 123.5X+3 202.6 | 97.5 | 2.4 | 0.994 9 | Y=10 384X+5 641.6 | 101.0 | 4.6 | 0.013 | 0.05 |
25 | 0.998 2 | Y=5 425.2X+2 410.5 | 96.2 | 3.4 | 0.999 6 | Y=4 752.5X-1 174 | 98.4 | 3.0 | 0.994 8 | Y=4 761.7X+1 837.9 | 102.1 | 4.5 | 0.013 | 0.05 |
26 | 0.998 1 | Y=1 327.7X+980.3 | 98.0 | 4.8 | 0.997 7 | Y=1 076.6X-58.2 | 95.2 | 5.1 | 0.995 9 | Y=1 203.8X+275.4 | 100.4 | 5.0 | 0.012 | 0.05 |
27 | 0.997 1 | Y=2 352.7X+1 821.7 | 96.1 | 2.6 | 0.998 5 | Y=1 959.1X-167.7 | 97.5 | 4.7 | 0.995 1 | Y=2 025.9X+481.8 | 104.3 | 5.7 | 0.012 | 0.05 |
28 | 0.998 4 | Y=2 290.9X+1 460.4 | 95.6 | 6.2 | 0.999 4 | Y=1 927.8X-923.9 | 94.5 | 6.1 | 0.995 6 | Y=2 114X+314.7 | 97.8 | 4.3 | 0.012 | 0.05 |
29 | 0.996 3 | Y=3 872.5X+6 197.9 | 98.9 | 5.0 | 0.996 3 | Y=3 629.5X+5 741 | 96.6 | 6.0 | 0.999 1 | Y=3 418.1X+186.2 | 104.8 | 5.2 | 0.013 | 0.05 |
30 | 0.996 0 | Y=3 849.3X+2 562.3 | 94.7 | 3.9 | 0.998 6 | Y=3 451.4X+1 497.3 | 97.5 | 5.9 | 0.993 9 | Y=3 271.9X-2 121.7 | 105.4 | 5.3 | 0.012 | 0.05 |
31 | 0.992 1 | Y=1 528.3X+1 949.3 | 99.4 | 4.9 | 0.999 1 | Y=1 036.8X-1 076.7 | 102.0 | 4.4 | 0.992 6 | Y=1 159.2X+196 | 107.0 | 4.6 | 0.012 | 0.05 |
32 | 0.995 5 | Y=1 253.6X+2 447.4 | 95.8 | 4.2 | 0.996 7 | Y=1 252X+1 590 | 94.4 | 8.1 | 0.996 5 | Y=1 139.6X-148.3 | 104.3 | 4.4 | 0.012 | 0.05 |
33 | 0.997 2 | Y=1 898.9X+2 599.4 | 96.4 | 5.5 | 0.998 9 | Y=1 672.6X-39.7 | 97.2 | 6.0 | 0.991 8 | Y=1 521.6X+96.4 | 100.9 | 6.7 | 0.012 | 0.05 |
34 | 0.999 0 | Y=2 813.4X+3 539.3 | 101.9 | 4.4 | 0.999 3 | Y=2 443.6X+1 727.3 | 100.0 | 7.5 | 0.991 4 | Y=2 174.8X+2 313.1 | 104.4 | 3.9 | 0.012 | 0.05 |
35 | 0.997 4 | Y=3 432.4X+3 867.5 | 102.9 | 3.5 | 0.999 6 | Y=1 373X-1 417.1 | 99.7 | 3.1 | 0.995 7 | Y=2 195.9X+805 | 101.0 | 5.6 | 0.013 | 0.05 |
36 | 0.994 4 | Y=2 722.3X+6 990 | 101.2 | 5.4 | 0.999 1 | Y=1 946.1X+509.4 | 92.8 | 4.2 | 0.997 1 | Y=1 536.6X+5.4 | 104.5 | 6.1 | 0.012 | 0.05 |
37 | 0.997 2 | Y=2 780.6X+4 170.9 | 94.4 | 4.5 | 0.998 7 | Y=1 647.1X-492.9 | 100.0 | 2.7 | 0.996 8 | Y=1 957.5X+410.7 | 101.1 | 4.6 | 0.012 | 0.05 |
38 | 0.998 1 | Y=922.4X+956.7 | 99.5 | 5.0 | 0.998 8 | Y=428.7X-117.8 | 89.1 | 3.7 | 0.992 1 | Y=485X-948 | 103.9 | 6.8 | 0.012 | 0.05 |
39 | 0.999 4 | Y=2 290.5X+307.1 | 91.2 | 3.3 | 0.998 7 | Y=1 493.7X-399.4 | 96.5 | 3.3 | 0.995 3 | Y=1 072.8X-1 577.4 | 107.2 | 7.1 | 0.012 | 0.05 |
40 | 0.998 2 | Y=131.4X-168 | 96.4 | 7.1 | 0.995 4 | Y=119.2X-269.9 | 99.7 | 7.1 | 0.996 8 | Y=98.1X+189.8 | 93.0 | 5.0 | 0.013 | 0.05 |
41 | 0.994 8 | Y=8 032.8X+8 536.1 | 98.7 | 2.0 | 0.999 2 | Y=3 807.6X+2 265.2 | 94.7 | 6.9 | 0.997 1 | Y=2 746.1X-1 053.9 | 106.7 | 7.4 | 0.010 | 0.04 |
42 | 0.997 1 | Y=3 877.7X+5 190.2 | 94.1 | 4.9 | 0.998 9 | Y=3 744X+1 386.9 | 98.3 | 3.7 | 0.997 3 | Y=3 472X+2 685.5 | 102.8 | 3.7 | 0.013 | 0.05 |
43 | 0.998 4 | Y=852.6X+713.4 | 96.1 | 3.9 | 0.997 8 | Y=617.1X+23.1 | 94.7 | 5.8 | 0.996 4 | Y=756.6X-289.6 | 109.9 | 4.7 | 0.012 | 0.05 |
44 | 0.999 7 | Y=2 292.8X+30.1 | 94.7 | 4.7 | 0.997 7 | Y=2 093.4X+1 350.2 | 92.8 | 3.6 | 0.996 3 | Y=1 896.3X+114.8 | 102.8 | 2.2 | 0.012 | 0.05 |
45 | 0.995 6 | Y=6 651.6X+35 451.3 | 97.9 | 4.7 | 0.998 4 | Y=6 342.3X+10 845.5 | 98.4 | 4.1 | 0.995 9 | Y=6 415.1X+23 571.8 | 102.9 | 2.7 | 0.024 | 0.10 |
46 | 0.997 6 | Y=7 354.4X+2 672.7 | 94.5 | 5.9 | 0.998 0 | Y=7 433.1X+1 408.8 | 96.5 | 3.6 | 0.997 7 | Y=7 058.8X+1 539.4 | 98.1 | 4.1 | 0.005 | 0.02 |
47 | 0.998 2 | Y=2 017.7X+367.6 | 95.5 | 7.1 | 0.999 6 | Y=2 012.4X-140.4 | 95.8 | 2.5 | 0.993 1 | Y=1 922X-57 | 101.4 | 5.7 | 0.004 | 0.02 |
48 | 0.997 9 | Y=1 071.5X+2 249.7 | 95.0 | 5.4 | 0.998 8 | Y=1 116.7X+885.4 | 99.4 | 5.2 | 0.995 6 | Y=601.3X-370.5 | 94.2 | 6.6 | 0.014 | 0.05 |
49 | 0.998 6 | Y=2 167.3X-833 | 101.3 | 4.4 | 0.997 8 | Y=2 045.2X+800.3 | 97.3 | 4.6 | 0.992 5 | Y=1 931.1X-525.4 | 97.5 | 5.1 | 0.010 | 0.04 |
50 | 0.998 0 | Y=1 999.5X+835.7 | 95.5 | 5.5 | 0.998 4 | Y=2 050.2X-34.2 | 99.2 | 4.1 | 0.996 4 | Y=1 920.9X-111.9 | 105.6 | 5.8 | 0.005 | 0.02 |
51 | 0.996 6 | Y=1 953.3X+1 249.7 | 94.7 | 4.9 | 0.999 5 | Y=1 953.1X-14.8 | 97.6 | 4.7 | 0.994 3 | Y=1 830.7X+287.7 | 103.5 | 4.5 | 0.005 | 0.02 |
52 | 0.996 7 | Y=3 930.6X+3 667.6 | 89.5 | 6.1 | 0.998 0 | Y=3 275.5X+542.3 | 96.4 | 6.8 | 0.997 9 | Y=3 501.2X+1 535.7 | 103.2 | 6.3 | 0.013 | 0.05 |
53 | 0.997 5 | Y=4 967.7X+10 078.2 | 96.6 | 4.7 | 0.998 9 | Y=2 505.5X+496.1 | 96.0 | 2.1 | 0.995 7 | Y=3 453.2X-727.3 | 106.9 | 5.5 | 0.013 | 0.05 |
54 | 0.994 8 | Y=615.8X+736.4 | 91.5 | 4.6 | 0.998 3 | Y=828X+991.7 | 99.6 | 3.8 | 0.995 9 | Y=405.7X-354.4 | 101.3 | 3.0 | 0.012 | 0.05 |
55 | 0.994 4 | Y=1 327.6X+1 744.8 | 85.9 | 4.1 | 0.999 3 | Y=1 403X-548.6 | 97.8 | 3.8 | 0.995 9 | Y=838.6X-1 226.5 | 108.6 | 8.3 | 0.011 | 0.05 |
56 | 0.998 3 | Y=1 384.6X+1 102.8 | 100.0 | 4.1 | 0.998 8 | Y=1 982.2X+1 005.1 | 97.5 | 3.1 | 0.994 5 | Y=1 097.5X-308.4 | 96.1 | 5.8 | 0.011 | 0.05 |
57 | 0.997 3 | Y=5 028.7X+11 197.2 | 95.2 | 2.6 | 0.999 6 | Y=4 830.6X+2 722.8 | 95.9 | 6.9 | 0.994 7 | Y=4 503X-5 453.9 | 106.3 | 4.8 | 0.014 | 0.06 |
58 | 0.997 9 | Y=8 232.9X+14 627.9 | 93.1 | 3.8 | 0.996 5 | Y=5 610.4X+6 342.5 | 94.7 | 4.2 | 0.997 5 | Y=4 006.9X+3 157.3 | 103.3 | 6.1 | 0.012 | 0.05 |
59 | 0.992 3 | Y=1 575.9X+1 621.2 | 94.5 | 3.6 | 0.998 7 | Y=3 435.1X-1 707.4 | 95.6 | 4.1 | 0.993 4 | Y=4 660.8X-3 793.3 | 107.8 | 4.6 | 0.012 | 0.05 |
60 | 0.998 0 | Y=1 845.8X+2 218.9 | 93.0 | 3.6 | 0.999 5 | Y=1 503.8X+597.5 | 95.8 | 4.8 | 0.997 2 | Y=1 179.1X-915.8 | 104.3 | 5.7 | 0.012 | 0.05 |
61 | 0.994 9 | Y=1 081.8X+2 146.8 | 97.3 | 7.4 | 0.995 6 | Y=845.8X+834.5 | 91.6 | 7.0 | 0.995 3 | Y=747.2X+481.9 | 94.7 | 6.9 | 0.012 | 0.05 |
62 | 0.993 7 | Y=2 962.4X+5 978.3 | 88.1 | 3.9 | 0.998 6 | Y=3 817.7X+2 820.1 | 98.6 | 2.9 | 0.996 7 | Y=1 735.9X-1 432.5 | 102.1 | 5.8 | 0.011 | 0.04 |
63 | 0.996 5 | Y=9 441.8X+12 309.6 | 95.7 | 4.0 | 0.999 3 | Y=6 274.4X-258.3 | 99.6 | 4.0 | 0.996 8 | Y=6 461.8X+8 217.6 | 107.8 | 4.7 | 0.012 | 0.05 |
64 | 0.997 6 | Y=3 327.5X+4 092 | 91.1 | 3.6 | 0.999 8 | Y=1 403.4X-840.8 | 92.9 | 3.3 | 0.991 8 | Y=1 773.6X-2 915.7 | 106.6 | 5.5 | 0.012 | 0.05 |
65 | 0.997 8 | Y=5 582.4X+12 249.6 | 95.6 | 4.8 | 0.999 6 | Y=5 112.5X+1 618.4 | 98.9 | 3.5 | 0.995 2 | Y=4 899.4X+1 427 | 103.5 | 3.7 | 0.014 | 0.05 |
66 | 0.998 0 | Y=1 413.3X+373.9 | 91.8 | 7.1 | 0.996 8 | Y=1 369.2X+501.2 | 93.5 | 5.2 | 0.996 9 | Y=1 281.5X+535.6 | 96.8 | 5.4 | 0.005 | 0.02 |
67 | 0.998 1 | Y=7 785.3X+3 967.7 | 94.9 | 4.5 | 0.998 6 | Y=7 768X+1 207.6 | 99.2 | 2.9 | 0.998 8 | Y=5 770.7X+1 618.9 | 100.0 | 5.7 | 0.005 | 0.02 |
68 | 0.998 7 | Y=917.7X-104.8 | 96.3 | 5.5 | 0.999 1 | Y=1 456.6X-6.5 | 96.3 | 2.3 | 0.998 6 | Y=160.8X-2.8 | 92.6 | 5.4 | 0.012 | 0.05 |
69 | 0.998 3 | Y=1 896.5X+1 169.4 | 101.0 | 4.5 | 0.998 3 | Y=1 889.9X+835.8 | 96.6 | 5.4 | 0.995 4 | Y=1 760.4X+1 240.2 | 100.5 | 4.8 | 0.011 | 0.05 |
70 | 0.997 0 | Y=1 016X+1 814.3 | 101.8 | 5.2 | 0.996 8 | Y=889.7X+1 421.9 | 97.5 | 4.1 | 0.994 2 | Y=785.6X+691.7 | 104.4 | 7.7 | 0.012 | 0.05 |
71 | 0.999 4 | Y=864.8X-208 | 95.2 | 4.0 | 0.998 1 | Y=847.4X-83.2 | 95.6 | 6.8 | 0.996 7 | Y=811.9X-557.5 | 100.4 | 5.5 | 0.011 | 0.05 |
72 | 0.997 5 | Y=9 553.5X+5 864.9 | 97.7 | 4.3 | 0.999 2 | Y=9 444X+3 901.3 | 99.2 | 3.5 | 0.997 4 | Y=8 217.1X+4 570.5 | 100.7 | 4.5 | 0.009 | 0.04 |
73 | 0.995 4 | Y=1 997.2X+2 929.8 | 95.8 | 6.2 | 0.997 6 | Y=1 946.2X+732.6 | 96.3 | 4.1 | 0.994 1 | Y=1 753X+459.5 | 97.9 | 6.3 | 0.012 | 0.05 |
74 | 0.995 2 | Y=4 103.1X+7 604.5 | 95.5 | 3.6 | 0.997 3 | Y=3 793.9X+2 320.6 | 95.2 | 3.4 | 0.996 5 | Y=3 609.1X+2 201.7 | 101.1 | 4.6 | 0.011 | 0.04 |
75 | 0.996 9 | Y=6 132.3X+8 028.8 | 102.2 | 3.5 | 0.996 9 | Y=5 443.1X+9 992.7 | 96.5 | 5.8 | 0.994 3 | Y=4 566.9X+4 932.2 | 102.0 | 6.2 | 0.012 | 0.05 |
76 | 0.997 2 | Y=9 046.5X+10 992.3 | 94.2 | 4.2 | 0.997 0 | Y=7 840.5X+3 119.0 | 98.7 | 5.7 | 0.995 3 | Y=6 914.9X+3 436.0 | 101.5 | 6.0 | 0.012 | 0.05 |
[1] | Niu Zengyuan, Luo Xin, Wang Fenngmei, et al. Fast screening and confirmation of 89 prohibited compounds in cosmetics using UPLC-LTQ/Orbitrap MS[J]. Journal of Chinese Mass Spectrometry Society, 2016,37(3): 201-212. |
[2] | Chen Shaobo, Pu Yunyue, Wang Hairui, et al. Simultaneous and rapid screening of 112 prohibited drugs in cosmetics by high performance liquid chromatography-tandem mass spectrometry[J]. Journal of Instrumental Analysis, 2018,37(11): 1302-1310. |
[3] | Luo Huitai, Huang Xiaolan, Wu Huiqin, et al. High throughput screening of 86 kinds of glucocorticoids in cosmetics using QuEChERS and Isotope dilution-liquid chromatography coupled to high resolution time-of-flight mass spectrometry[J]. Chinese Journal of Analytical Chemistry, 2017,45(9): 1381-1388. |
[4] | Liu Yin, Zhang Fan, Chang Yan, et al. Determination of 17 adulteration of drugs in anti-acne cosmetics by liquid chromatography-tandem mass spectrometry with instant library searching[J]. Chinese Journal of Pharmaceutique Analysis, 2017,37(9): 1693-1670. |
[5] | China Food and Drug Administration. Safety and Technical Standards for Cosmetics (2015 Edition)[S]. Beijing: China Food and Drug Administration, 2015. |
[6] | European Union. Regulation(EC)No 1223/2009 of the European Parliament and of the Council of 30 November 2009 on cosmetic products. The European Parliament and of the Council[S]. European Union: Official Journal of the European Union, 2009. |
[7] | National Standards of the People's Republic of China. Determination of 41 glucocorticoids in cosmetics by LC-MS-MS and TLC method: GB/T 24800.2—2009[S]. Beijing: Standardization Administration of the P.R.C., 2009. |
[8] |
Luo Huitai, Huang Xiaolan, Wu Huiqin, et al. Simultaneous rapid determination of 81 glucocorticoids in cosmetics by dispersive solid phase extraction and liquid chromatography-tandem mass spectrometry[J]. Chinese Journal of Chromatography, 2017,35(8): 816-825.
doi: 10.3724/SP.J.1123.2017.04005 pmid: 29048815 |
[9] | Luo Huitai, Huang Xiaolan, Wu Huiqin, et al. Simultaneous determination of 53 kinds of glucocorticoids illegally added in the facial mask cosmetics by solid-phase extraction with liquid chromatography-tandem mass spectrometry[J]. Journal of Instrumental Analysis, 2016,35(2): 119-126. |
[10] |
Pan Xiaohong, Yin Shuai, Liu Yuling, et al. Determination of 42 glucocorticoids in infant eczema products by auto-solid phase extraction-ultra high-performance liquid chromatography-tandem mass spectrometry[J]. Chinese Journal of Chromatography, 2018,36(4): 356-361.
doi: 10.3724/SP.J.1123.2017.10035 pmid: 30136518 |
[11] |
Zeng Sanmei, Xu Dunming, Wei Yiting, et al. Determination of estradiol in table sugar by auto-solid-phase extraction-high performance liquid chromatography-tandem mass spectrometry[J]. Chinese Journal of Chromatography, 2016,34(7): 703-707.
doi: 10.3724/SP.J.1123.2016.03011 |
[12] | Zhang Jin, Xu Dunming, Zeng Sanmei, et al. Determination of ciguatoxin residues in deep sea fish by auto-SPE/high performance liquid chromatography-tandem mass spectrometry[J]. Journal of Instrumental Analysis, 2013,32(6): 710-714. |
[13] | Hao Jie, Jiang Jie, Yu Jianlong, et al. Simultaneous determination of multi-veterinary drug residues in animal-origin food by solid phase extraction coupled with ultra performance liquid chromatography-tandem mass spectrometry[J]. Food Science, 2017,38(12): 266-272. |
[14] |
Lin Li, Zhang Yi, Tu Xiaoke, et al. Determination of 25 quinolones in cosmetics by liquid chromatography-tandem mass spectrometry[J]. Chinese Journal of Chromatography, 2015,33(3): 275-281.
pmid: 26182469 |
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