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A novel separation-free assay technique for serum antibodies using antibody bridging assay principle and two-photon excitation fluorometry.

Authors :
Koskinen JO
Vaarno J
Vainionpää R
Meltola NJ
Soini AE
Source :
Journal of immunological methods [J Immunol Methods] 2006 Feb 20; Vol. 309 (1-2), pp. 11-24. Date of Electronic Publication: 2005 Dec 19.
Publication Year :
2006

Abstract

A new technique for separation-free detection of antigen-specific antibodies is presented. The new technique employs antibody bridging assay principle and the recently developed ArcDia TPX fluorescence detection technology. According to the assay scheme, antibody molecules from the sample bind with one arm to an antigen on polymer microspheres and with the other arm to a fluorescently labeled secondary antigen reagent. Consequently, fluorescent immunocomplexes are formed on the surface of microspheres in proportion to the concentration of the analyte in the sample. The fluorescence signal from individual microspheres is measured by means of two-photon excited fluorescence detection. In order to demonstrate the applicability of the new assay technique, an assay for anti-adenovirus antibodies was constructed. The function of the assay method was tested both with monoclonal anti-adenovirus antibody preparation (standard analyte), and with positive serum samples. Standard class-specific ELISA was used as a reference method. The new assay method provides comparable sensitivity and precision, and wider dynamic range for IgG antibodies than the ELISA method. The standard curve showed linear response (R(2)=0.999) with a dynamic range of three orders of magnitude, detection limit (mean+3S.D.) of 8 pM, and intra-assay signal precision of 5%. Applicability of the new method for clinical serodiagnostics is discussed.

Details

Language :
English
ISSN :
0022-1759
Volume :
309
Issue :
1-2
Database :
MEDLINE
Journal :
Journal of immunological methods
Publication Type :
Academic Journal
Accession number :
16387323
Full Text :
https://doi.org/10.1016/j.jim.2005.10.014