Literature DB >> 1701853

Development of GFAP-positive cells and reactive changes associated with cystic lesions in HTX rat brain.

Y Yoshida1, G Koya, K Tamayama, T Kumanishi, S Abe.   

Abstract

HTX rat, a congenital hydrocephalic strain, develops ventricular dilatation and cystic cavities in the cerebral white matter after birth. To investigate the reactive changes in glial cells around these cavities, immunohistochemical staining for glial fibrillary acidic protein (GFAP), a specific marker protein of astrocytes, and bromodeoxyuridine (BrdU), a thymidine analogue, was carried out on 107 Wistar and HTX rat brains from birth to postnatal day (P) 26. Animals were divided into three groups: Group A, Wistar rats as normal controls; Group B, HTX rats with a normal structure or only mild ventricular dilatation without any lesion in the white matter; and Group C, HTX rats with severe ventricular dilatation and cyst formation in the white matter. Group B rats showed similar development of GFAP-positive (GFAP+) cells to that in Group A rats, both morphologically and quantitatively. On the other hand, Group C rats showed definite structural changes in GFAP+ cells around the cystic cavities from P5. These included enriched cytoplasm and thickened cell processes with increased GFAP expression, and enveloped most cyst walls from P10. However, quantitative examination of the percentage of GFAP+ cells in Group C rats showed a similar developmental profile to those in Group A and B rats. Furthermore, the labeling index of BrdU-positive cells, indicating S-phase cells, in the white matter in Group C rats showed a similar decreasing pattern to that in Group A and B rats from P1 to P26.(ABSTRACT TRUNCATED AT 250 WORDS)

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Year:  1990        PMID: 1701853     DOI: 10.2176/nmc.30.445

Source DB:  PubMed          Journal:  Neurol Med Chir (Tokyo)        ISSN: 0470-8105            Impact factor:   1.742


  8 in total

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2.  Imaging of spontaneous ventriculomegaly and vascular malformations in Wistar rats: implications for preclinical research.

Authors:  Tsang-Wei Tu; L Christine Turtzo; Rashida A Williams; Jacob D Lescher; Dana D Dean; Joseph A Frank
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4.  Disruption of the murine nuclear factor I-A gene (Nfia) results in perinatal lethality, hydrocephalus, and agenesis of the corpus callosum.

Authors:  L das Neves; C S Duchala; F Tolentino-Silva; M A Haxhiu; C Colmenares; W B Macklin; C E Campbell; K G Butz; R M Gronostajski; F Godinho
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5.  Minocycline inhibits glial proliferation in the H-Tx rat model of congenital hydrocephalus.

Authors:  James P McAllister; Janet M Miller
Journal:  Cerebrospinal Fluid Res       Date:  2010-05-27

6.  Morphological and behavioral changes in the pathogenesis of a novel mouse model of communicating hydrocephalus.

Authors:  Allison B McMullen; Gurlal S Baidwan; Ken D McCarthy
Journal:  PLoS One       Date:  2012-01-24       Impact factor: 3.240

7.  Minocycline reduces reactive gliosis in the rat model of hydrocephalus.

Authors:  Hao Xu; Guowei Tan; Shaolin Zhang; Hongwei Zhu; Feng Liu; Caiquan Huang; Feifei Zhang; Zhanxiang Wang
Journal:  BMC Neurosci       Date:  2012-12-05       Impact factor: 3.288

8.  Reduction of astrogliosis and microgliosis by cerebrospinal fluid shunting in experimental hydrocephalus.

Authors:  Janet M Miller; James P McAllister
Journal:  Cerebrospinal Fluid Res       Date:  2007-06-07
  8 in total

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