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Challenges and progress in developing herpesvirus vaccines.

Abstract

The biological complexities of the human herpesviruses and the wide range of diseases that they cause present many difficulties for vaccine development. Until recently, progress towards this aim has been slow; however, advances in immunology and molecular biology have yielded an exciting array of new approaches for vaccination that have shown promise in model systems. This explosion in technology, together with renewed appreciation of the public-health benefits of vaccination, has sparked a resurgence of interest in the development of new vaccines and several are in, or near, clinical trials in humans. These look set to have a major impact on the incidence of herpesvirus diseases in the future.

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BibTeXRIS

S C Inglis. 1995. Challenges and progress in developing herpesvirus vaccines.. https://doi.org/10.1016/s0167-7799(00)88924-6

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Multiplex-PCR and oligonucleotide microarray for detection of eight different herpesviruses from clinical specimens.

BACKGROUND: Human herpesviruses cause clinically important diseases, e.g. infections of the central nervous system. New diagnostic tools are required for rapid and reliable detection of these viruses. OBJECTIVES: A microarray-based method was designed for detection of eight human herpesviruses in cerebrospinal fluid (CSF), whole blood, plasma, serum and proficiency-testing specimens. STUDY DESIGN: Herpes simplex type 1 and 2, varicella-zoster, cytomegalo-, Epstein-Barr and human herpes viruses 6A, 6B and 7 were amplified from clinical specimens by two multiplex-PCRs and transcribed to single-stranded RNAs which were hybridized to oligonucleotides on microarray. The results were compared to those from conventional PCR. In total, 227 specimens were tested including 23 CSF, 10 whole blood, 73 plasma, 10 proficiency-testing samples and 111 negative control samples. RESULTS: Concordant results were obtained in 214/227 (94%). Microarray detected 10 possible double and one triple infection. Negative control samples (70 serum, 30 CSF and 11 proficiency-testing samples) were all negative. CONCLUSIONS: Microarray is suitable for detection of multiple herpesviruses in clinical samples.

Herpesviridae↗