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PubMed · 2079576

Monitoring hepatitis B virus replication.

Abstract

Serum hepatitis B virus DNA is the best marker for monitoring hepatitis B virus replication in the liver. Data are presented on the sensitivity, specificity and application of a standardized solution hybridization assay for the quantitation of hepatitis B viral DNA in serum. The assay is linear over several orders of magnitude in sample concentration and is equivalent in sensitivity and specificity to classic filter hybridization methods employing [32P]DNA probes and autoradiography. The assay provides clinically relevant information for monitoring viral replication before, during and after antiviral therapy.

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BibTeXRIS

M C Kuhns. 1990. Monitoring hepatitis B virus replication.. https://doi.org/10.1016/0168-8278(90)90171-m

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Simultaneous visual detection of multiple viral amplicons by dipstick assay.

A sensitive, simple, and instrument-independent method for the visual detection and identification of multiple nucleic acid amplicons by dipstick has been developed. This method is based on nucleic acid hybridization on the dipstick membrane and a signal amplification system to allow visual detection. With hepatitis B virus (HBV), hepatitis C virus (HCV), and human immunodeficiency virus type 1 (HIV-1) as model analytes, it is demonstrated that the visual dipstick test combined with multiplex reverse transcription (RT)-PCR for the amplification of viral nucleic acid provides a specific and sensitive detection method. The RT-PCR products were detected by the dipstick with an efficiency similar to that of a complex, expensive, and instrument-dependent method based on fluorogenic oligonucleotide probes. The detection limits of the dipstick combined with multiplex RT-PCR were 50, 125, and 500 IU/ml for HBV DNA, HCV RNA, and HIV-1 RNA, respectively. The dipstick assay detected with similar efficiencies amplicons derived from strains of HBV genotypes A through F, HCV genotypes 1 to 6, and HIV-1 subtypes A through H as well as CRF02 circulating recombinant forms of HIV-1. Analysis of 295 clinical samples and 19 pools of 10 plasma specimens from blood donors revealed that multiplex dipstick detection was reproducible, sensitive, and specific. The visual dipstick detection of multiple amplicons thus provides an attractive alternative to complex, instrument-dependent detection methods currently in use for nucleic acid testing. This new and sensitive method for nucleic acid detection should increase the availability of genomic screening in resource-limited settings and its applicability to near-patient testing.

DNA, Viral