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Nucleic acid dot blot hybridization with fragmented digoxygenin labelled probes in human papillomavirus DNA screening.

R Achim, Gabriela Anton, M Stoian, R Repanovici

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Abstract

Twenty human genital tissue samples from patients with different premalignant and malignant lesions were investigated by nucleic acid hybridization, using the dot blot technique. Molecular probes of various length--whole or fragmented papillomavirus genome--were digoxygenin-labelled. Human papillomavirus 16 DNA was identified in fifteen cases, well correlated with the clinical diagnosis. Fragments of papillomavirus genome proved to be efficient probes in nucleic acid hybridization as compared with the whole genome used for the same purpose.

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What this paper is about

Twenty human genital tissue samples from patients with different premalignant and malignant lesions were investigated by nucleic acid hybridization, using the dot blot technique. Molecular probes of various length--whole or fragmented papillomavirus genome--were digoxygenin-labelled. Human papillomavirus 16 DNA was identified in fifteen cases, well correlated with the clinical diagnosis. Fragments of papillomavirus genome proved to be efficient probes in nucleic acid hybridization as compared with the whole genome used for the same purpose.

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Available abstract

Twenty human genital tissue samples from patients with different premalignant and malignant lesions were investigated by nucleic acid hybridization, using the dot blot technique. Molecular probes of various length--whole or fragmented papillomavirus genome--were digoxygenin-labelled. Human papillomavirus 16 DNA was identified in fifteen cases, well correlated with the clinical diagnosis. Fragments of papillomavirus genome proved to be efficient probes in nucleic acid hybridization as compared with the whole genome used for the same purpose.

Key concepts: Nucleic acid, Dot blot, Nucleic acid thermodynamics, Southern blot, Human papillomavirus, DNA, Molecular biology, Hybridization probe

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Nucleic acid dot blot hybridization with fragmented digoxygenin labelled probes in human papillomavirus DNA screening. — Research Paper | ScholarLens