期刊文献+

基于氧化锌纳米棒的乙酰胆碱酯酶生物传感器用于辛硫磷农药测定 被引量:7

Determination of Phoxim Pesticides Using Acetylcholinesterase Biosensor Based on ZnO Nanorods
在线阅读 下载PDF
导出
摘要 以喷金的聚碳酸酯模板为工作电极,采用电沉积法从氯化锌和氯化钾溶液中制得氧化锌纳米棒。将沉积了氧化锌纳米棒的模板固定在打磨后的玻碳电极表面,并将模板溶解。再通过在氧化锌纳米棒修饰电极的表面直接固定乙酰胆碱酯酶,制备出乙酰胆碱酯酶生物传感器。自然晾干后,所得乙酰胆碱酯酶氧化锌生物传感器用于辛硫磷农药的测定。试验结果表明:在含有0.5mmol·L^-1的巯基乙酰胆碱的pH7.38磷酸盐缓冲溶液中,乙酰胆碱酯酶-氧化锌修饰电极的氧化峰电流显著提高,而再向其中加入酶抑制剂辛硫磷后,电流明显减小,在此基础上提出了一种高灵敏度的测定辛硫磷农药的方法。在优化的条件下,辛硫磷浓度在9.85×10^-6~4.95×10^-4mol·L^-1之间,其浓度的对数与抑制率呈线性关系,检出限(3S/N)为5.99×10mol·L^-1。 Using gold-sprayed polyearbonate template as working electrode, ZnO nanorods were prepared by electro-deposition from a solution of ZnCl2 and KCl. The template deposited with ZnO nanorods was adhered and dissolved on surface of polished glassy carbon electrode (GCE). Finally, the acetylcholinesterase (ACHE) biosensor was prepared hy immobilizing the AchE directly onto the surface of the ZnO nanorods modified GCE. After airdrying, the biosensor, AChE-ZnO/GCE, was ready for use in determination of phoxim pesticides. It was found that in the presence of 0. 5 mmol·L^-1 hydrosulfoacetyleholine (ATCh), the oxidative peak current was remarkable raised at the AChE-ZnO/GCE in PBS of pH 7. 38, but significant lowering of the peak current at the same biosensor, under same condition, was observed when phoxim was added. Linear relationship between the rate of decrease in peak current (I%) and logarithm of concentration of phoxim (a representative object for phoxime pesticides) was found in the range of 9. 85 × 10^-6-4.95 × 10^-4 mol · L^-1 Detection limit (3S/N) of the method found was 5.99×10mol ·L^-1.
出处 《理化检验(化学分册)》 CAS CSCD 北大核心 2009年第5期567-570,共4页 Physical Testing and Chemical Analysis(Part B:Chemical Analysis)
基金 云南省自然科学基金项目(No.2006B0028M) 云南省教育厅自然科学基金(No.07Z10087)
关键词 乙酰胆碱酯酶 生物传感器 氧化锌纳米棒 辛硫磷 Acetylcholinesterase Biosensor ZnO nanorods Phoxim
  • 相关文献

参考文献13

  • 1SHULGA O, KIRCHHOFF J R. An acetylcholinesterase enzyme electrode stabilized by an electrodeposited gold nanopartiele layer[J]. Electrochemistry Communications, 2007,9 (5) : 935.
  • 2CHU Xia, DUAN Da-xue, SHEN Guo-li, et al. Amperometric glucose biosensor based on electrodeposition of platinum nanoparticles onto covalently immobilized carbon nanotube electrode[J]. Talanta, 2007,71 (5) :2040.
  • 3YANG Ming-hui, YANG Yun-hui, LIU Yan-li, et al.Platinum nanoparticles-doped sol-gel/carbon nanotubes composite electrochemical sensors and biosensors[J]. Biosensors and Bioelectronics, 2006,21(7) : 1125.
  • 4侯宪全,任湘菱,唐芳琼,陈东,王正平.纳米ZnO增强葡萄糖生物传感器的制备和应用[J].分析化学,2006,34(3):303-306. 被引量:16
  • 5MAKOWER A, HALAMEK J, SKLADAL P, et al. New Principle of direct real-time monitoring of the interaction of cholinesterase and its inhibitors by piezoelectric biosensor [J]. Biosens Bioelectron, 2003, 18 (11):1329.
  • 6朱青青,谢文,丁慧瑛.蜂蜜中多种有机磷农药残留量的气相色谱测定[J].理化检验(化学分册),2005,41(7):482-484. 被引量:12
  • 7苟金萍,张艳,程淑华,王晓菁.蔬菜中有机磷和氨基甲酸酯类农药多残留联合检测方法[J].理化检验(化学分册),2005,41(12):939-940. 被引量:7
  • 8王宗贤,高志贤,马成林.有机磷检测方法的研究进展[J].中国卫生检验杂志,2003,13(4):401-403. 被引量:28
  • 9王艳,高志贤,戴树桂.农药残留免疫分析方法及其研究进展[J].农业环境科学学报,2003,22(1):125-127. 被引量:16
  • 10AVRAMESCU A, ANDREESCU S, NOGUER T, et al. Biosensors designed for environmental and food quality control based on screen-printed graphite electrodes with different configurations[J]. Analytical and Bioanalytical Chemistry, 2002,374(1):25.

二级参考文献67

  • 1朱玉奴,彭图治,李建平.碳纳米管负载铂颗粒酶电极葡萄糖传感器[J].分析化学,2004,32(10):1299-1303. 被引量:22
  • 2黄雁,郭中英.简易、快速检测有机磷农药的酶片和生色基质片[J].环境科学,1995,16(3):52-54. 被引量:34
  • 3余孝颖,雷晟,陈贵春.胆碱酯酶场效应管传感器[J].分析化学,1996,24(5):521-524. 被引量:23
  • 4[1]Rodolico S, Giovinazzo R, Mosconi M. Comparison between ELISAs and traditional analytical methods to determine pesticide pollution in water [J].Bull Environ Contam Toxicol, 1997, 58(4): 644- 650.
  • 5[2]Conaway J E. New trends in analytical technology and methods for pes ticide residue analysis[J].J Assoc Off Anal Chem, 1991: 74(5), 715 - 717.
  • 6[3]Colin M W, Andrew P W, Heather A L, et al. Monoclonal anti- idio type antibody mimicking the pesticide binding site of cutinase: potential for broad specificity organophosphate recognition[J].Journal of Im munological Methods, 1999, 224: 197- 202.
  • 7[4]Alcocer M J C, Dillon P P, Manning B M, et al. Use of phosphonic acid as a generic hapten in the production of broad specificity anti- organophosphate pesticide antibody[J].J Agric Food Chem, 2000, 48 (6): 2 228- 2 233.
  • 8[5]Kemp H A, Morgan M R. Studies on the detrimental effects of bivalent binding in a microtitration plate ELISA and possible remedies[J].J Immunol Methods, 1986, 94(1~ 2): 65- 72.
  • 9[6]Maria J M, Antonio A, Angel M. Production of monoclonal antibodies to the N- methylcarbamate pesticide propoxur[J].J Agric Food Chem, 2001, 49(1): 72- 78.
  • 10[7]Byrne F R, Grant S, Porter A J, et al. Cloning expression and charac terization of a single- chain antibody specific for the herbicide atrazine [J].Food Agric Immunol, 1996, 8: 19- 29.

共引文献97

同被引文献87

引证文献7

二级引证文献21

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