浏览全部资源
扫码关注微信
四川省药品检验研究院 工业和信息化部产业技术基础公共服务平台,四川 成都 611731
江燕,硕士,副主任药师,研究方向:药品包装材料检测及药包材与药品相容性,E-mail: 623828337@qq.com
纸质出版日期:2024-05-15,
收稿日期:2024-01-21,
修回日期:2024-02-22,
扫 描 看 全 文
成婕,蒲小聪,邱怡婷,任锟,杨剑,郭燕燕,王晓兰,江燕.小儿消积止咳口服液及药用复合膜中12种常见抗氧剂的提取与迁移研究[J].分析测试学报,2024,43(05):763-769.
CHENG Jie,PU Xiao-cong,QIU Yi-ting,REN Kun,YANG Jian,GUO Yan-yan,WANG Xiao-lan,JIANG Yan.Extraction and Migration Study of 12 Common Antioxidants in the Medicinal Composite Film of Pediatric Antitussive Oral Liquid for Children[J].Journal of Instrumental Analysis,2024,43(05):763-769.
成婕,蒲小聪,邱怡婷,任锟,杨剑,郭燕燕,王晓兰,江燕.小儿消积止咳口服液及药用复合膜中12种常见抗氧剂的提取与迁移研究[J].分析测试学报,2024,43(05):763-769. DOI: 10.12452/j.fxcsxb.24012101.
CHENG Jie,PU Xiao-cong,QIU Yi-ting,REN Kun,YANG Jian,GUO Yan-yan,WANG Xiao-lan,JIANG Yan.Extraction and Migration Study of 12 Common Antioxidants in the Medicinal Composite Film of Pediatric Antitussive Oral Liquid for Children[J].Journal of Instrumental Analysis,2024,43(05):763-769. DOI: 10.12452/j.fxcsxb.24012101.
建立了测定小儿消积止咳口服液及其包装材料(口服液体药用复合膜)中12种常见抗氧剂的超高效液相色谱-串联质谱(UPLC-MS/MS)法。采用Shim-pack GIST C
18
(100 mm×2.1 mm,2 μm)为色谱柱,甲醇(含0.01 mol/L甲酸与甲酸铵)和水(含0.01 mol/L甲酸与甲酸铵)为流动相梯度洗脱;采用电喷雾离子源(ESI),以多反应监测(MRM)正离子模式进行定性定量分析。结果显示,12种抗氧剂在10~400 ng/mL范围内线性良好,相关系数(
r
)不小于0.996 3,提取与迁移实验的检出限分别为0.40~13.25 ng/g和1.01~33.13 ng/mL,定量下限分别为1.35~44.17 ng/g和3.37~110.42 ng/mL,回收率为80.1%~114%,相对标准偏差(RSD,
n=
3)为1.5%~7.2%。药液中检出抗氧剂1010和168,但含量低于其每日允许最大暴露量(PDE),对药品安全性风险影响较小。该方法高效灵敏、准确可靠、操作简便,可用于小儿消积止咳口服液及其包装材料中12种常见抗氧剂的测定。
An ultra-high performance liquid chromatography-tandem mass spectrometry(UPLC-MS/MS) method was developed for the determination of 12 common antioxidants in pediatric antitussive oral liquid and its packaging material(oral liquid medicinal composite film). The chromatographic column used was Shim-pack GIST C
18
(100 mm×2.1 mm,2 μm),with methanol(containing 0.01 mol/L formic acid and ammonium formate) and water(containing 0.01 mol/L formic acid and ammonium formate) as the mobile phase by gradient elution. Electrospray ionization(ESI) and multiple reaction monitoring(MRM) in positive ion mode were employed for qualitative and quantitative analysis. The results showed good linearity for the 12 antioxidants in the concentration ranges of 10 ng/mL to 400 ng/mL,with correlation coefficients(
r
) not less than 0.996 3. The detection limits of extraction and migration were in ranges of 0.40-13.25 ng/g and 1.01-33.13 ng/mL,and the quantitative limits were in ranges of 1.35-44.17 ng/g and 3.37-110.42 ng/mL,respectively. The recoveries ranged from 80.1% to 114%,and the relative standard deviations(RSDs,
n
=3) were between 1.5% and 7.2%. Migration of antioxidants 1010 and 168 was detected in the medicinal solution,but their levels were below their respective permitted daily exposure(PDE),posing minimal impact on the safety risk of the medication. The method is highly efficient,sensitive,accurate,reliable,and easy to operate,making it suitable for the determination of 12 common antioxidants in pediatric antitussive oral liquid and its packaging material.
超高效液相色谱-串联质谱(UPLC-MS/MS)抗氧剂小儿消积止咳口服液药用复合膜
UPLC-MS/MSantioxidantspediatric antitussive oral liquidmedicinal composite film
Yang L. Shanghai Med. Pharm. J.(杨玲. 上海医药),2023,44(24):15-18.
Guo D H. Guangming J. Chin. Med. (郭东红.光明中医),2022,37(12):2167-2170.
Hong Y,You Y,Liu N,Gong W,Zheng Y B. Drug Eval.(洪燕,游媛,刘宁,龚玮,郑洋滨. 药品评价),2022,19(15):908-911.
Xiong M J,Rao Y C,Zuo J F. Drug Eval.(熊马剑,饶艳春,左军凤. 药品评价),2023,20(4):417-420.
He Z Q. Biol. Chem. Eng.(何子骞. 生物化工),2023,20(4):417-420.
Chang L,Chen Z Z,Zhu B J. J. Jiangxi Univ. Chin. Med.(常亮,陈珍珍,朱碧君. 江西中医药大学学报),2021,33(4):89-92.
Wang Y W,Liu Y. Tianjin Pharm.(王悦雯,刘言. 天津药学),2023,35(1):66-71.
Xie L G,Sun H M,Yang H Y,Zhao X,Xiao X Y. Chin. Pharm. Aff.(谢兰桂,孙会敏,杨会英,赵霞,肖新月. 中国药事),2022,36(9):1002-1009.
Fasihnia S H,Peighambardoust S H,Peighambardoust S J,Oromiehie A,Maral S,Peressini D. J. Food Sci.,2020,85(8):2317-2328.
Adefegha S A,Okeke B M,Oboh G. J. Food Biochem.,2021,45(3):13276-13282.
Kahl R,Kappus H. Z. Lebensm.-Unters. Forsch.,1993,196(4):329-338.
Yu Q L,Zhang Y M,Qiu Y,Qin Y,Long M. J. Instrum. Anal.(余秋玲,张永梅,邱月,秦瑶,龙梅. 分析测试学报),2022,41(6):910-915.
Wang J C,Li S F,Xiong X T,She W X,Chen Y G,Liu D Y,Tan J H,Li H Y,Xi S F. J. Instrum. Anal.(王继才,李少飞,熊小婷,佘文勋,陈意光,刘德云,谭建华,李慧勇,席绍峰. 分析测试学报),2018,37(7):815-819.
Cheng J,Zhang L H,Jiang Y,Qiu Y T,Ren K. Packag. Eng.(成婕,张罗红,江燕,邱怡婷,任锟. 包装工程),2023,44(3):80-86.
Zhao R,Wang L,Zhang J,Ge L,Zhang Q F. Chin. Pharm. J.(赵锐,王丽,张娟,葛蕾,张秋芳. 中国药学杂志),2023,58(4):356-364.
Yu Q L,Li G R,Long M,Zhang Q,Zhang Y M,Chen H. Chin. J. Anal. Lab.(余秋玲,李根容,龙梅,张清,张永梅,陈豪. 分析试验室),2021,40(9):1075-1079.
Wu Y X,Yang Q H,Feng L C,Zhang Q,Fan W,Chen J. Cent. South Pharm.(吴月霞,杨秋红,丰丽莼,张倩,范围,陈杰. 中南药学),2021,21(5):1347-1351.
Cheng J,Jiang Y,Qiu Y T,Ren K,Zhao J C,Tian T,Zhang L H. Chin. J. Pharm. Anal.(成婕,江燕,邱怡婷,任锟,赵津池,田甜,张罗红. 药物分析杂志),2024,44(2):307-315.
Jiang Y,Ma Y N,Huo X M,Ma L. Chin. J. New Drugs(蒋煜,马玉楠,霍秀敏,马磊. 中国新药杂志),2014,23(15):1738-1748.
0
浏览量
23
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构