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C18-磁性纳米颗粒萃取虾肉中氯霉素残留
引用本文:王西丽.C18-磁性纳米颗粒萃取虾肉中氯霉素残留[J].中国兽药杂志,2012,46(10):20-23.
作者姓名:王西丽
作者单位:1. 深圳市易瑞生物技术有限公司,广东深圳,518102
2. 深圳市晨光乳业有限公司,广东深圳,518107
3. 江苏出入境检验检疫局动植物与食品检测中心,南京,210001
基金项目:科技部科技型中小企业技术创新(编号:09C26214425280),十二五国家科技支撑计划项目(编号:2012BAK17B10),国家国际科技合作与交流专项项目(编号:2011DFA32930)
摘    要:建立了一种用C18键合磁珠固相萃取虾肉中氯霉素残留的方法。在Fe3O4超顺磁性纳米颗粒的表面键合C18基团,制备双功能反相萃取颗粒。用该颗粒对样品中的氯霉素残留进行固相萃取,对结合时间、温度、磁珠用量等因素进行了优化,建立磁珠法兽药残留固相萃取方法。用标准方法(SN/T 1864-2007)对萃取所得产物进行检测。经过优化,C18键合磁珠的最佳萃取条件为50℃结合5 min,用1 mL甲醇洗脱3次。检测结果显示该方法具有良好的精密度和回收率。在0.1~10μg/kg之间具有良好的线性关系,相关系数为0.9941,检出限为0.1μg/kg。该方法灵敏度高、重现性好、准确度高,可满足虾肉中氯霉素残留检测的需要。

关 键 词:固相萃取  C18-磁珠  氯霉素
收稿时间:5/2/2012 12:00:00 AM
修稿时间:6/4/2012 12:00:00 AM

Application of C18-magnetic Nano-particles in Pre-treatment of Chloramphenicol Residues Detection of Shrimp
WANG Xi- li,CHEN Qiao- yan,LI Jin-feng,LI Ying,XUE Feng,JIANG Yuan,ZHU Hai.Application of C18-magnetic Nano-particles in Pre-treatment of Chloramphenicol Residues Detection of Shrimp[J].Chinese Journal of Veterinary Drug,2012,46(10):20-23.
Authors:WANG Xi- li  CHEN Qiao- yan  LI Jin-feng  LI Ying  XUE Feng  JIANG Yuan  ZHU Hai
Institution:shenzhen bioeasy
Abstract:A method of C18 - functionalized magnetic silica nanoparticles solid phase extraction of chloramphenicol residues from shrimp was developed. The reversed -phase extraction dual particles were synthetized by bonding C18 groups on the surface of the superparamagnetic Fe3O4 nanoparticles and were used to extract veterinary drug residues by SPE. The process conditions, such as temperature, uniting time and additive amount of C18 -functionalized magnetic silica nanoparticles were optimized. The detection method showed good linear relationship within the range of 0.1 - 10 μg/kg(R2 = 0. 9941 ) and the detection limit was 0.1 μg/kg. The recovery range was between 73. 3% and 112. 3%. The method was reliable, accurate and had a good reproducibility, which can meet the demands of the detection of chloramphenicol residues in shrimp.
Keywords:solid phase extraction  C18-functionalized magnetic silica nanoparticles  chloramphenicol
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