35
Views
57
CrossRef citations to date
0
Altmetric
Original Article

Detection of Latent Herpes Simplex Virus DNA and RNA in Human Geniculate Ganglia by the Polymerase Chain Reaction

, , , , &
Pages 1004-1011 | Received 29 Jan 1992, Accepted 08 May 1992, Published online: 08 Jul 2009

References

  • Bastian F O, Rabson A S, Yee C L, Tralka TS. Herpesvirus hominis: Isolation from human trigeminal ganglion. Science 1972; 178: 306–7
  • Baringer J R, Swoveland P. Recovery of herpes-simplex virus from human trigeminal ganglions. N Engl J Med 1973; 288: 648–50
  • Galloway D A, Fenoglio C, Shevchuk M, McDougall JK. Detection of herpes simplex RNA in human sensory ganglia. Virology 1979; 95: 265–8
  • Croen KD., Ostrove JM, Dragovic LJ, Smialek JE, Straus SE. Latent herpes simplex virus in human trigeminal ganglia. Detection of an immediate early gene “anti-sense” transcript by in situ hybridization. New Engl J Med 1987; 317: 1427–32
  • Stevens J G, Haarr L, Porter D D, Cook M L, Wagner EK. Prominence of the herpes simplex virus latency-associated transcript in trigeminal ganglia from seropositive humans. J Infect Dis 1988; 158: 117–23
  • Furuta Y, Takasu T., Sato K C, Fukuda S, Inuyama Y, Nagashima K. Latent herpes simplex virus type 1 in human geniculate ganglia. Acta Neuropathol (Berl), in press
  • Lynas C, Cook S D, Laycock K A, Bradfield J WB, Maitland NJ. Detection of latent virus mRNA in tissues using the polymerase chain reaction. J Pathol 1989; 157: 285–9
  • Lynas C, Laycock K A, Cook S D, Hill T J, Blyth W A, Maitland NJ. Detection of herpes simplex virus type 1 gene expression in latently and productively infected mouse ganglia using the polymerase chain reaction. J Gen Virol 1989; 70: 2345–55
  • Katz J P, Bodin E T, Coen DM. Quantitative polymerase chain reaction analysis of herpes simplex virus DNA in ganglia of mice infected with replication-incompetent mutants. J Virol 1990; 64: 4288–95
  • Friedrich A, Kleim J P, Schneweis KE. Detection of latent thymidine kinase-deficient herpes simplex virus in trigeminal ganglia of mice using the polymerase chain reaction. Arch Virol 1990; 113: 107–13
  • Hirt B. Replication molecules of polyoma virus DNA. J Mol Biol 1969; 40: 141–4
  • Sambrook J. Fritsch EF, Maniatis T. Isolation of DNA from mammalian cells: Protocol I. Molecular cloning. 2nd ed., J Sambrook. Cold Spring Harbor Laboratory, New York 1989; Vol 2: 9.16–9.19
  • McGeoch D J, Dalrymple M A, Davison AJ. The complete DNA sequence of the long unique region in the genome of herpes simplex virus type 1. J Gen Virol 1988; 69: 1531–74
  • Cowan N J, Dobner P R, Fuchs E V, Cleveland DW. Expression of human ot-tubulin genes: Interspecies conservation of 3′ untranslated regions. Mol Cell Biol 1983; 3: 1738–45
  • Post L E, Conley A J, Mocarski E S, Roizman B. Cloning of reiterated and nonreiterated herpes simplex virus 1 sequences as BamHI fragments. Proc Natl Acad Sci USA 1980; 77: 4201–5
  • Warren K G, Brown S M, Wroblewska Z, Gilden D, Koprowski H, Subak-Sharpe J. Isolation of latent herpes simplex virus from the superior cervical and vagus ganglions of human beings. New Engl J Med 1978; 298: 1068–9
  • McCormick DP. Herpes-simplex virus as cause of Bell's palsy. Lancet 1972; 937–9
  • Degré M, Bukholm G, Lund E E, Djupesland G. Attempts to isolate virus from human trigeminal and facial ganglions. Med Microbiol Immunol 1978; 166: 151–6
  • Palva T, Hortling L, Ylikoski J, Collan Y. Viral culture and electron microscopy of ganglion cells in Meniere's disease and Bell's palsy. Acta Otolaryngol (Stockh) 1978; 86: 269–75
  • Cao M, Xiao X, Egbert B, Darragh T M, Yen T SB. Rapid detection of cutaneous herpes simplex virus infection with the polymerase chain reaction. J Invest Dermatol 1989; 82: 391–2
  • Hardy D A, Arvin A M, Yasukawa LL. Use of polymerase chain reaction for successful identification of asymptomatic genital infection with herpes simplex virus in pregnant women at delivery. J Infect Dis 1990; 162: 1031–5
  • Rowley A H, Whitley R J, Lakeman F D, Wolinsky SM. Rapid detection of herpes-simplex-virus DNA in cerebrospinal fluid of patients with herpes simplex encephalitis. Lancet 1990; 335: 440–1
  • Stevens J G, Wagner E K, Devi-Rao G B, Cook M L, Feldman LT. RNA complementary to a herpesvirus a gene mRNA is prominent in latently infected neurons. Science 1987; 235: 1056–9
  • Steiner I, Spivack J G, Lirette RP. Herpes simplex virus type 1 latency-associated transcripts are evidently not essential for latent infection. EMBO J 1989; 8: 505–11
  • Leib D A, Bogard C L, Kosz-Vnenchak M. A deletion mutant of the latency-associated transcript of herpes simplex virus type 1 reactivates from the latent state with reduced frequency. J Virol 1989; 63: 2893–2900

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.