Optimizing the solid-phase immunofiltration assay: A rapid alternative to immunoassays
The technical variables of the solid-phase immunofiltration assay (SPIA) for the detection of antibodies bound to antigens on a solid-phase filter have been investigated. The binding to solid-phase filters of 125I-labelled axial filament proteins derived from Treponema Phagedenis and the optimal con...
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Veröffentlicht in: | Journal of immunological methods 1989-04, Vol.119 (1), p.35-43 |
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Sprache: | eng |
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Zusammenfassung: | The technical variables of the solid-phase immunofiltration assay (SPIA) for the detection of antibodies bound to antigens on a solid-phase filter have been investigated.
The binding to solid-phase filters of
125I-labelled axial filament proteins derived from
Treponema Phagedenis and the optimal conditions for blocking non-specific protein binding were analysed. Axial filament was applied to nitrocellulose, Hybond Nylon and Zeta Probe. After extensive rinsing, the highest amount (68%) of axial filament was observed bound to Zeta Probe. However, blocking non-specific protein binding by pre-wetting the filter with rinsing buffer containing 0.5% Tween 20, prevented the binding of protein to the filter only when nitrocellulose was used as solid phase. Tween 20 (0.5%) in the rinsing and incubation solutions was found to be necessary for the reduction of non-specific binding of contaminants in turbid sera. However, the use of such solutions resulted in a substantial leakage of antigen (47%) during rinsing procedures.
Binding of antigen-specific antibody was analysed using
125I-labelled protein A. The maximal possible binding of the antibody occurred within 5 min when the antibody solution was filtered. For optimal binding of
125I-labelled protein A an incubation time of 1 h was needed.
It is suggested that solid-phase immunofiltration may provide a rapid alternative for radioimmunoassays or enzyme immunoassays for the detection of specific antibodies. |
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ISSN: | 0022-1759 1872-7905 |
DOI: | 10.1016/0022-1759(89)90378-5 |