We describe herein a newly developed optical immunosensor for detection of antibodies directed against antigens of the Ebola virus strains Zaire and Sudan. We employed a photo immobilization methodology based on a photoactivatable electrogenerated poly(pyrrole-benzophenone) film deposited upon an indium tin oxide (ITO) modified conductive surface fiber-optic. It was then linked to a biological receptor, Ebola virus antigen in this case, on the fiber tip through a light driven reaction. The photochemically modified optical fibers were tested as an immunosensor for detection of antibodies against Ebola virus, in animal and human sera, by use of a coupled chemiluminescent reaction. The immunosensor was tested for sensitivity, specificity, and compared to standard chemiluminescent ELISA under the same conditions. The analyte, anti-Ebola IgG, was detected at a low titer of 1:960,000 and 1:1,000,000 for subtypes Zaire and Sudan, respectively. While the same serum tested by ELISA was one order (24 times) less sensitive.
Development of a highly sensitive, field operable biosensor for serological studies of Ebola virus in central Africa.
开发一种高灵敏度、可在现场操作的生物传感器,用于在中非进行埃博拉病毒血清学研究
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作者:Petrosova A, Konry T, Cosnier S, Trakht I, Lutwama J, Rwaguma E, Chepurnov A, Mühlberger E, Lobel L, Marks R S
| 期刊: | Sensors and Actuators B-Chemical | 影响因子: | 7.700 |
| 时间: | 2007 | 起止号: | 2007 Mar 26; 122(2):578-586 |
| doi: | 10.1016/j.snb.2006.07.005 | ||
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