DocumentCode
1134154
Title
Immunonanogold-Catalytic Cu
O-Enhanced Assay for Trace Penicillin G With Resonance Scattering Spectrometry
Author
Jiang, Zhiliang ; Liang, Aihui ; Li, Yan ; Wei, Xiaoling
Author_Institution
Guangxi Key Lab. of Environ. Eng., Protection & Assessment, Guangxi Normal Univ., Guilin
Volume
7
Issue
4
fYear
2008
Firstpage
276
Lastpage
283
Abstract
A novel immunonanogold-catalytic Cu2O-enhanced resonance scattering (RS) spectral assay is reported, based on nanogold modified rabbit anti-penicillin G (RAPG) antibody, its catalytic enhanced effect on the slow particle reaction between Cu(II) and glucose, and the RS effect of (Au)nucleus(Cu2O)shell complex particle at 608 nm. As a model, we used nanogold in size of 9 nm to label RAPG to obtain an immunonanogold probe (AuRAPG) for penicillin G (PG). The immunoreactions between the probe and PG took place in phosphate-citric acid buffer solutions. After centrifugation, the excess AuRAPG in the supernatant was used to catalyze the particle reaction to amplify the RS signal. With the addition of PG, the concentration of AuRAPG in the supernatant reduced linearly, which leaded the I608 nm to decrease accordingly. The decreased RS intensity was proportional to the PG concentration in the range of 0.09-21.6 ngldrmL-1, with a detection limit (DL) of 0.01 ngldrmL-1 PG. The assay was used to determine trace PG in raw milk sample, with the recovery between 100.6% and 109.2%.
Keywords
biochemistry; catalysts; copper compounds; gold; nanobiotechnology; Au; Cu2O; antibody; catalyst; immunonanogold probe; resonance scattering spectrometry; trace Penicillin G; Educational technology; Gold; Immune system; Labeling; Nanoparticles; Particle scattering; Probes; Protection; Resonance; Spectroscopy; Immunonanogold probe, Cu$_{2}$ O-enhanced; penicillin G; resonance scattering; Animals; Biosensing Techniques; Catalysis; Cattle; Copper; Food Analysis; Food Contamination; Gold; Immunoassay; Microchemistry; Milk; Penicillin G; Reproducibility of Results; Sensitivity and Specificity; Surface Plasmon Resonance;
fLanguage
English
Journal_Title
NanoBioscience, IEEE Transactions on
Publisher
ieee
ISSN
1536-1241
Type
jour
DOI
10.1109/TNB.2008.2011860
Filename
4769374
Link To Document