Determination of DNA with imidacloprid by a resonance light scattering technique at nanogram levels and its application

被引:8
|
作者
Jia, GF [1 ]
Wang, P [1 ]
Qiu, J [1 ]
Sun, Y [1 ]
Xiao, YM [1 ]
Zhou, ZQ [1 ]
机构
[1] Chinese Agr Univ, Dept Appl Chem, Beijing 100094, Peoples R China
关键词
imidacloprid; resonance light scattering method; DNA; spectrofluorometer;
D O I
10.1081/AL-120035902
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
In this paper, we have set up a determination method of nucleic acids at nanogram levels by using a common spectrofluorometer to detect intensity of resonance light scattering (RLS). We have also studied the characteristics of RLS spectra of Imidacloprid with nucleic acids, the effective factors, and the optimum conditions. The RLS of imidacloprid was greatly enhanced by DNA in the range of pH 1.5-1.7. A RLS peak at 310nm was found, and the enhanced intensity of RLS at this wavelength was proportional to the concentration of DNA. The linear range of the calibration curve was 0-5.0 mug mL(-1), 5.0-20.0 mug mL(-1) for calf thymus DNA, 0-1.0 mug mL(-1) for thermally denatured calf thymus DNA, 0-14.6 mug mL(-1) for salmon sperm DNA (ssDNA), and 4.0-7.0 mug mL(-1) for yeast RNA (yRNA). The limits of detection (LOD, 3sigma) were 12.8, 8.7, 29.5, and 35.5 ng mL(-1), respectively. The nucleic acids in six synthetic samples and in three real samples were determined. The results were satisfactory, and the recovery rates were in the range of 99-106%, 91-109%, respectively. Compared with other methods, this method has larger detective range, which can reduce the interference of background and increase the intensity of RLS.
引用
收藏
页码:1339 / 1354
页数:16
相关论文
共 50 条
  • [31] An assay of DNA by resonance light scattering technique and its application in screening anticancer drugs
    Chen, Xi
    Liu, Guoliang
    Liang, Shengwang
    Qian, Sihua
    Liu, Jinbin
    Chen, Zhanguang
    ANALYTICAL METHODS, 2012, 4 (06) : 1546 - 1551
  • [32] The application of resonance light scattering technique for the determination of tinidazole in drugs
    Jiang, Xin Yu
    Chen, Xiao Qing
    Dong, Zheng
    Xu, Ming
    JOURNAL OF AUTOMATED METHODS & MANAGEMENT IN CHEMISTRY, 2007,
  • [33] Determination of nucleic acid at nanogram levels with manganese-tetrasulfonatophthalocyanine sensitized by cetyltrimethylammonium bromide using a resonance light-scattering technique
    Li, YX
    Zhu, CQ
    Wang, L
    MICROCHIMICA ACTA, 2003, 142 (04) : 219 - 223
  • [34] Determination of Nucleic Acid at Nanogram Levels with Manganese-Tetrasulfonatophthalocyanine Sensitized by Cetyltrimethylammonium Bromide Using a Resonance Light-Scattering Technique
    Yongxin Li
    Changqin Zhu
    Lun Wang
    Microchimica Acta, 2003, 142 : 219 - 223
  • [35] Resonance rayleigh scattering technology for determination of nucleic acids at nanogram levels
    Chen, Yanjing
    Pan, Shuzhen
    LUMINESCENCE, 2012, 27 (02) : 107 - 108
  • [36] Determination of DNA by its enhancement effect of resonance light scattering by azur A
    Li, YF
    Huang, CZ
    Huang, XH
    Li, M
    ANALYTICA CHIMICA ACTA, 2001, 429 (02) : 311 - 319
  • [37] Study on naringenin-CTMAB-DNA system by resonance light scattering technique and its analytical application
    Bi, Shuyun
    Wang, Yu
    Pang, Bo
    Yan, Lili
    SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY, 2011, 79 (05) : 1430 - 1434
  • [38] Determination of Yttrium by Resonance Light Scattering Technique
    Xia Wu
    Lei Li
    Jinghe Yang
    Yuebo Wang
    Shuna Sun
    Naixing Wang
    Microchimica Acta, 2003, 141 : 165 - 168
  • [39] Determination of yttrium by resonance light scattering technique
    Wu, X
    Li, L
    Yang, JH
    Wang, YB
    Sun, SN
    Wang, NX
    MICROCHIMICA ACTA, 2003, 141 (3-4) : 165 - 168
  • [40] The analytical application and spectral investigation of DNA-CPB-emodin and sensitive determination of DNA by resonance Rayleigh light scattering technique
    Bi, Shuyun
    Wang, Yu
    Wang, Tianjiao
    Pang, Bo
    Zhao, Tingting
    SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY, 2013, 101 : 233 - 238