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Antigen detection ELISAs: pretreatment of serum to reduce interference by specific host antibodies
Author(s)
Date Issued
1991-06
Date Available
2023-08-15T10:42:16Z
Abstract
The pretreatment of serum to reduce interference by specific host antibodies was investigated as a means of improving the sensitivity of antigen detection ELISAs whilst screening serum samples. Four antigen detection assays based on monoclonal antibodies directed against antigens of the bovine filariid Onchocerca gibsoni were used in this study and of these, three assays suffered a dramatic drop in sensitivity when detecting male O. gibsoni antigen in the presence of bovine serum as compared with antigen in buffer. A number of methods for pretreating serum to eliminate the problem of antibody interference with antigen detection were attempted, including heat and alkali treatments, detergent treatment of heat treated samples and the use of a reducing agent. The pretreatment of serum by boiling for 5 minutes in the presence of an equal volume of 0.1 M Na2EDTA pH 4.0 and recovery of the supernatant fluid following centrifugation at 16000 g was the most effective method of restoring the sensitivity of each of these three assays whilst screening bovine serum. Pretreatment of serum using this method produced up to a 512-fold increase in sensitivity compared with results obtained in assays with non-treated serum.
Other Sponsorship
Edna McConnell Clark Foundation
Type of Material
Journal Article
Publisher
Georg Thieme Verlag
Journal
Tropical Medicine and Parasitology
Volume
42
Issue
2
Start Page
91
End Page
94
Copyright (Published Version)
1991 Georg Thieme Verlag
Web versions
Language
English
Status of Item
Peer reviewed
ISSN
0177-2392
This item is made available under a Creative Commons License
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Name
More-Antigen detection ELISAs- pretreatment of serum to reduce interference by specific host antibodies-1991-Tropical medicine and parasitology - official organ of Deutsche Tropenmedizinische Gesellschaft and of Deutsche Gesellschaft für Technisc.pdf
Size
1.2 MB
Format
Adobe PDF
Checksum (MD5)
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