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PMID: 2742150 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

A sensitive nonisotopic hybridization assay for HIV-1 DNA.

Analytical biochemistry ·Vol. 177 ·No. 1 ·1989-02-15 ·Pages 27-32

Keller GH, Huang DP, Manak MM

Abstract

We have developed a microtiter-based sandwich hybridization assay for the detection of low copy number HIV-1 sequences. The assay employs a capture DNA sequence covalently coupled to microtiter wells through linker arms. The detection probe is a biotin-labeled DNA fragment derived from sequences adjacent to the capture sequence. After hybridization in the presence of sample nucleic acid, the detection probe remains bound only if the sample contained complementary sequences spanning the junction between capture and detection probes. The amount of detection probe bound is quantified by incubation with a peroxidase-streptavidin conjugate and a colorimetric peroxidase substrate. This assay has been combined with enzymatic target amplification to achieve sensitive detection of HIV-1 in patient samples. Following amplification of HIV-1 DNA using the polymerase chain reaction technique, a 190-bp product is produced. This product is easily and specifically quantified using the sandwich hybridization assay. The resulting test can detect one HIV-1-infected cell in 10(5) cells or about 30 molecules of HIV-1 DNA.

MeSH Terms
DNA Probes DNA, Viral/analysis DNA-Directed DNA Polymerase Gene Amplification HIV-1/genetics Methods Nucleic Acid Hybridization Taq Polymerase
Chemicals
DNA Probes DNA, Viral Taq Polymerase DNA-Directed DNA Polymerase
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Keller G H
Biotech Research Laboratories, Inc., Rockville, Maryland 20850.
Huang D P
Manak M M
Article Info
Journal
Analytical biochemistry
Abbr.
Anal Biochem
ISSN
0003-2697
Published
1989-02-15
Pages
27-32
Language
English
Region
United States
NLM ID
0370535
Subset
IM
Grants
NCI NIH HHS · 5 R44 CA39876-03 · United States
NHLBI NIH HHS · N01-HB-67018 · United States
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