期刊文献+

Recent advances in electrogenerated chemiluminescence biosensing methods for pharmaceuticals 被引量:8

Recent advances in electrogenerated chemiluminescence biosensing methods for pharmaceuticals
下载PDF
导出
摘要 Electrogenerated chemiluminescence(electrochemiluminescence, ECL) generates species at electrode surfaces, which undergoes electron-transfer reactions and forms excited states to emit light. It has become a very powerful analytical technique and has been widely used in such as clinical testing, biowarfare agent detection, and pharmaceutical analysis. This review focuses on the current trends of molecular recognition-based biosensing methods for pharmaceutical analysis since 2010. It introduces a background of ECL and presents the recent ECL developments in ECL immunoassay(ECLIA), immunosensors, enzyme-based biosensors, aptamer-based biosensors, and molecularly imprinted polymers(MIP)-based sensors. At last, the future perspective for these analytical methods is briefly discussed. Electrogenerated chemiluminescence(electrochemiluminescence, ECL) generates species at electrode surfaces, which undergoes electron-transfer reactions and forms excited states to emit light. It has become a very powerful analytical technique and has been widely used in such as clinical testing, biowarfare agent detection, and pharmaceutical analysis. This review focuses on the current trends of molecular recognition-based biosensing methods for pharmaceutical analysis since 2010. It introduces a background of ECL and presents the recent ECL developments in ECL immunoassay(ECLIA), immunosensors, enzyme-based biosensors, aptamer-based biosensors, and molecularly imprinted polymers(MIP)-based sensors. At last, the future perspective for these analytical methods is briefly discussed.
出处 《Journal of Pharmaceutical Analysis》 SCIE CAS CSCD 2019年第1期9-19,共11页 药物分析学报(英文版)
关键词 Electrogenerated CHEMILUMINESCENCE PHARMACEUTICAL ANALYSIS IMMUNOASSAY Biosensors Electrogenerated chemiluminescence Pharmaceutical analysis Immunoassay Biosensors
  • 相关文献

参考文献2

二级参考文献20

  • 1Richter M M.Chem.Rev.,2004,104(6):3003-3036.
  • 2Zhu L,Li Y,Zhu G.Sens.Actuat.B:Chem.,2002,86(2-3):209-214.
  • 3Dai H,Wu X,Xu H,Wang Y,Chi Y,Chen G.Electrochim.Acta,2009,54(19):4582-4586.
  • 4Qiu B,Lin Z,Wang J,Chen Z,Chen J,Chen G.Talanta,2009,78(1):76-80.
  • 5Lin Z,Chen J,Chen G.Electrochim.Acta,2008,53(5):2396-2401.
  • 6Guo Z,Xue Y,Zheng X.J.Electroanal.Chem.,2009,625(1):47-52.
  • 7Bertoncello P,Forster R J.Biosens.Bioelectron.,2009,24(11):3191- 3200.
  • 8Liu X,Niu W,Li H,Han S,Hu L,Xu G.Electrochem.Commun.,2008,10(9):1250-1253.
  • 9Li J,Wei X,Yuan Y.Sensors and Actuators B.,2009,140(2):663-669.
  • 10Zhang Chengxiao,Anal Lett,1998年,31卷,11期

共引文献19

同被引文献70

引证文献8

二级引证文献10

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部