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Updated: Jan 18, 2026

Determining 3'-Termini and Sequences of Nascent Single-Stranded Viral DNA Molecules during HIV-1 Reverse Transcription in Infected Cells
Published on: January 30, 2019
Touchdown digital polymerase chain reaction for quantification of highly conserved sequences in the HIV-1 genome
Ward De Spiegelaere1, Eva Malatinkova, Maja Kiselinova
1Department of Internal Medicine, Faculty of Medicine and Health Sciences, Ghent University, 9000 Ghent, Belgium. ward.despiegelaere@ugent.be
Abstract:
Digital polymerase chain reaction (PCR) is an emerging absolute quantification method based on the limiting dilution principle and end-point PCR. This methodology provides high flexibility in assay design without influencing quantitative accuracy. This article describes an assay to quantify HIV DNA that targets a highly conserved region of the HIV-1 genome that hampers optimal probe design. To maintain high specificity and allow probe binding and hydrolysis of a probe with low melting temperature, a two-stage touchdown PCR was designed with a first round of amplification at high temperature and a subsequent round at low temperature to allow accumulation of fluorescence.
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