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Multiplex PCR-based DNA array for simultaneous detection of three human herpesviruses, EVB, CMV and KSHV.

Authors :
Fujimuro M
Nakaso K
Nakashima K
Sadanari H
Hisanori I
Teishikata Y
Hayward SD
Yokosawa H
Source :
Experimental and molecular pathology [Exp Mol Pathol] 2006 Apr; Vol. 80 (2), pp. 124-31. Date of Electronic Publication: 2005 Nov 18.
Publication Year :
2006

Abstract

Human lymphotropic herpesviruses, Epstein-Barr virus (EBV), cytomegalovirus (CMV) and Kaposi's sarcoma-associated herpesvirus (KSHV) are responsible for a wide variety of human diseases. Due to an increase in diseased states associated with immunosuppression, more instances of co-morbid infections with these herpesviruses have resulted in viral reactivations that have caused numerous fatalities. Therefore, the development of rapid and accurate method to detect these viruses in immunocompromised patients is vital for immediate treatment with antiviral prophylactic drugs. In this study, we developed a new multiplex PCR method coupled to DNA array hybridization, which can simultaneously detect all three human herpesviruses in one single cell sample. Multiplex PCR primers were designed to amplify specific regions of the EBV (EBER1), CMV (IE) and KSHV (LANA) viral genomes. Pre-clinical application of this method revealed that this approach is capable of detecting as few as 1 copy of the viral genomes for KSHV and CMV and 100 copies of the genome for EBV. Furthermore, this highly sensitive test showed no cross-reactivity among the three viruses and is capable of detecting both KSHV and EBV viral genomes simultaneously in the lymphoblastoid cells that have been double infected with both viruses. Thus, this array-based approach serves as a rapid and reliable diagnostic tool for clinical applications.

Details

Language :
English
ISSN :
0014-4800
Volume :
80
Issue :
2
Database :
MEDLINE
Journal :
Experimental and molecular pathology
Publication Type :
Academic Journal
Accession number :
16298362
Full Text :
https://doi.org/10.1016/j.yexmp.2005.09.010