A novel sandwich electrochemiluminescence immunosensor for ultrasensitive detection of carbohydrate antigen 19-9 based on immobilizing luminol on Ag@BSA core/shell microspheres
Autor: | Chusen Huang, Nengqin Jia, Weiwei Guo, Enhui Yuan, Hongkun Xiang, Xin Zhang, Amin Zhang |
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Rok vydání: | 2015 |
Předmět: |
Biocompatibility
CA-19-9 Antigen Biomedical Engineering Biophysics Nanotechnology 02 engineering and technology Biosensing Techniques 01 natural sciences Luminol chemistry.chemical_compound Glucose Oxidase Electrochemistry Electrochemiluminescence Humans Glucose oxidase Detection limit Polyethylenimine biology Nanotubes Carbon 010401 analytical chemistry General Medicine Electrochemical Techniques 021001 nanoscience & nanotechnology 0104 chemical sciences chemistry Linear range Luminescent Measurements biology.protein Naked eye Gold 0210 nano-technology Biotechnology Nuclear chemistry |
Zdroj: | Biosensorsbioelectronics. 75 |
ISSN: | 1873-4235 |
Popis: | A novel sandwich-type electrochemiluminescence immunosensor based on immobilizing luminol on Ag@BSA core/shell microspheres (Ag@BSA-luminol) for ultrasensitive detection of tumor marker carbohydrate antigen 19-9 (CA19-9) has been developed. Herein, magnetic carbon nanotubes (MAGCNTs) decorated with polyethylenimine (PEI) was used to construct the base of the immunosensor. MAGCNTs with prominent electrical conductivity and high surface area could be beneficial for promoting the electron transfer and loading plenty of primary antibodies (Ab1) via glutaraldehyde (GA). Meanwhile, the magnetic property of MAGCNTs makes it easy to be attached to the surface of magnetic glass carbon electrode (MGCE) through magnetism interaction, which provides an outstanding platform for this immunosensor. Moreover, Ag@BSA microspheres with large surface area, good stability, and excellent biocompatibility were desirable candidates for effective cross-link of CA19-9 detection antibodies (Ab2). A more interesting thing was that ELISA color reaction was used as an ultrasensitive strategy for identifying Ab2 was successfully coated on Ag@BSA with the naked eye. Additionally, we immobilized the luminol on the surface of Ag@BSA to prepare the target immunosensor. Immobilization of luminol on the surface of Ag@BSA could decrease the distance between luminophores and the electrode surface, leading to great enhancement of the ECL intensity of luminol in the present of hydrogen peroxide (H2O2). Under the optimal conditions, the intensity of the ECL immunosensor increased linearly with the logarithm of CA19-9 concentration in a wide linear range from 0.0005 to 150UmL(-1) with a detection limit of 0.0002UmL(-1) (S/N=3). All the results suggested the prepared CA19-9 immunosensor displayed high sensitivity, excellent stability and good specificity. The developed method opened a new avenue to clinical bioassay. |
Databáze: | OpenAIRE |
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