Literature DB >> 2750478

Axonal degeneration and regeneration in sensory roots in a genital herpes model.

D Soffer1, J R Martin.   

Abstract

In a mouse model of genital herpes simplex virus type 2 (HSV-2) infection, roots of the lower spinal cord were examined 5 days to 6 months after inoculation. Using immunoperoxidase methods on paraffin sections, viral antigen was found in sensory ganglia, their proximal roots and distal nerves on days 5 and 6 after infection. In Epon sections, most mice had focal sensory root abnormalities in lower thoracic, lumbar or sacral levels. At days 7 and 10, lesions showed chiefly nerve fiber degeneration, particularly of large myelinated fibers. At 2 weeks, lesions contained relatively large bundles of small unmyelinated fibers with immature axon-Schwann cell relationships. From 3 to 6 weeks, lesions again contained many more small unmyelinated fibers than normal but, in increasing proportions, axons in bundles were isolated from their neighbors by Schwann cell cytoplasm, and Schwann cells having 1:1 relationships with axons showed mesaxon or thin myelin sheath formation. At later times, the proportion of small unmyelinated axons decreased in parallel with increased numbers of small myelinated axons. By 6 months, affected roots showed a relative reduction in large myelinated fibers, increased proportions of small myelinated fibers and Schwann cell nuclei. Numbers of unmyelinated fibers were reduced relative to 3- to 6-week lesions. Axonal degeneration and regeneration appears to be the chief pathological change in sensory roots in this model. If regenerated fibers arise from latently infected neurons, then establishment of latency is not a relatively silent event, but is associated with major long-lasting, morphologically detectable effects.

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Year:  1989        PMID: 2750478     DOI: 10.1007/bf00687888

Source DB:  PubMed          Journal:  Acta Neuropathol        ISSN: 0001-6322            Impact factor:   17.088


  18 in total

1.  Latent herpes simplex virus type 1 transcripts in peripheral and central nervous system tissues of mice map to similar regions of the viral genome.

Authors:  A M Deatly; J G Spivack; E Lavi; D R O'Boyle; N W Fraser
Journal:  J Virol       Date:  1988-03       Impact factor: 5.103

2.  Central nervous system susceptibility to herpes simplex infection.

Authors:  J J Townsend; J R Baringer
Journal:  J Neuropathol Exp Neurol       Date:  1978-05       Impact factor: 3.685

3.  A quantitative ultrastructural study of regeneration from isolated proximal stumps of transected unmyelinated nerves.

Authors:  A J Aguayo; J M Peyronnard; G M Bray
Journal:  J Neuropathol Exp Neurol       Date:  1973-04       Impact factor: 3.685

4.  Experimental herpes simplex encephalitis: early neuropathologic changes.

Authors:  J R Baringer; J F Griffith
Journal:  J Neuropathol Exp Neurol       Date:  1970-01       Impact factor: 3.685

5.  The relationships between interphase Schwann cells and axons before myelination: a quantitative electron microscopic study.

Authors:  H D Webster; R Martin; M F O'Connell
Journal:  Dev Biol       Date:  1973-06       Impact factor: 3.582

6.  Virus spread and initial pathological changes in the nervous system in genital herpes simplex virus type 2 infection in mice. A correlative immunohistochemical, light and electron microscopic study.

Authors:  G Georgsson; J R Martin; G L Stoner; H F Webster
Journal:  Acta Neuropathol       Date:  1987       Impact factor: 17.088

7.  Detection of herpes simplex virus mRNA in latently infected trigeminal ganglion neurons by in situ hybridization.

Authors:  R B Tenser; M Dawson; S J Ressel; M E Dunstan
Journal:  Ann Neurol       Date:  1982-03       Impact factor: 10.422

8.  Neural spread of herpes simplex virus types 1 and 2 in mice after corneal or subcutaneous (footpad) inoculation.

Authors:  K Kristensson; A Vahlne; L A Persson; E Lycke
Journal:  J Neurol Sci       Date:  1978-02       Impact factor: 3.181

9.  Ultrastructure and function of growth cones and axons of cultured nerve cells.

Authors:  K M Yamada; B S Spooner; N K Wessells
Journal:  J Cell Biol       Date:  1971-06       Impact factor: 10.539

10.  Immunocytochemical localization of P0 protein in Golgi complex membranes and myelin of developing rat Schwann cells.

Authors:  B D Trapp; Y Itoyama; N H Sternberger; R H Quarles; H Webster
Journal:  J Cell Biol       Date:  1981-07       Impact factor: 10.539

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  1 in total

1.  A critical determinant of neurological disease associated with highly pathogenic tick-borne flavivirus in mice.

Authors:  Kentaro Yoshii; Yuji Sunden; Kana Yokozawa; Manabu Igarashi; Hiroaki Kariwa; Michael R Holbrook; Ikuo Takashima
Journal:  J Virol       Date:  2014-02-26       Impact factor: 5.103

  1 in total

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