Author:
Wang Yining,Ge Ge,Mao Rui,Wang Zhuo,Sun Yu-Zhe,Du Yu-Guang,Gao Xing-Hua,Qi Rui-Qun,Chen Hong-Duo
Abstract
Abstract
Background
Human papillomaviruses (HPVs), a group of non-enveloped small viruses with double-stranded circular DNA which lead to multiple skin diseases such as benign warts, are commonly seen in clinics. The current HPV detection systems aim mainly at mucosal HPVs, however, an efficient clinical approach for cutaneous HPVs detection is lacking.
Objectives
To establish a rapid detection system for cutaneous HPVs using a colorimetric loop-mediated isothermal amplification (LAMP) with hydroxynaphthol blue (HNB) dye in combination with microfluidic technology.
Methods
L1 DNA sequences of the 30 cutaneous HPVs were chemically synthesized, and LAMP primers against L1 DNA were designed with use of an online LAMP designing tool. Isothermal amplification was performed with use of a water bath and the amplification results were inspected with the naked eye. Using PCR sequencing as a control method, the specificity and sensitivity of the new detection system were obtained by detecting clinical samples.
Results
The lower detection limit of the LAMP assay was 107 viral DNA copies/μl when tested on synthesized L1 DNA sequences, which was better than the conventional PCR. Compared to PCR sequencing, the sensitivity of HPV27, HPV2, HPV1, HPV57, HPV3, HPV4, HPV7 and HPV75 genotypes detections were 100%, whereas the specificity was 34.55, 45.12, 95.83, 98.59 and 97.62% respectively, when tested on clinical samples.
Conclusions
The new cutaneous type HPV detection system is characterized by both a good sensitivity and specificity compared to conventional methods.
Funder
National Natural Science Foundation of China
Shenyang Science and Technology Bureau
Publisher
Springer Science and Business Media LLC
Subject
Infectious Diseases,Virology
Cited by
11 articles.
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