Literature DB >> 11760880

Radiation-induced apoptosis of oligodendrocytes in the adult rat brain.

H Kurita1, N Kawahara, A Asai, K Ueki, M Shin, T Kirino.   

Abstract

Although radiation injuries to the brain are well documented, immediate early histological changes in the brain remain to be defined. The present study characterizes glial injury provoked in adult rat white matter within 24 h after a single irradiation of the whole brain (10 or 20 Gray). Irradiated brains were histologically and histochemically analyzed. TUNEL-positive cells exhibiting apoptotic morphology were counted in five representative regions of the white matter. Glial cell death was further evaluated by glial cell density 24 h after irradiation, which induced both dose (p < 0.0001)- and time- (p < 0.0001) dependent apoptosis in these cells. The overall apoptotic rate in the white matter peaked within 8 h after irradiation. Total glial cell density decreased significantly in the white matter 24 h after irradiation. TUNEL-positive cells were immunohistochemically negative for GFAP, a marker for astrocytes, but positive for CNP, a marker for oligodendrocytes. The apoptotic rate was highest in the external capsule (p < 0.0001), followed by the fimbria and genu of the corpus callosum (p < 0.0001). The rates were lowest in the internal capsule and cerebellum. These data indicated that brain irradiation induces rapid apoptotic depletion of the oligodendroglial population, which may participate in the development of radiation-induced pathological conditions.

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Year:  2001        PMID: 11760880     DOI: 10.1179/016164101101199324

Source DB:  PubMed          Journal:  Neurol Res        ISSN: 0161-6412            Impact factor:   2.448


  24 in total

Review 1.  Treatment of Radiation-Induced Cognitive Decline in Adult Brain Tumor Patients.

Authors:  Christina K Cramer; Tiffany L Cummings; Rachel N Andrews; Roy Strowd; Stephen R Rapp; Edward G Shaw; Michael D Chan; Glenn J Lesser
Journal:  Curr Treat Options Oncol       Date:  2019-04-08

2.  Delayed leukoencephalopathy of non-small cell lung cancer patients with brain metastases underwent whole brain radiation therapy.

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3.  Sublethal total body irradiation leads to early cerebellar damage and oxidative stress.

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Review 4.  Mechanisms of radiotherapy-associated cognitive disability in patients with brain tumours.

Authors:  Milan T Makale; Carrie R McDonald; Jona A Hattangadi-Gluth; Santosh Kesari
Journal:  Nat Rev Neurol       Date:  2016-12-16       Impact factor: 42.937

5.  Human embryonic stem cell-derived oligodendrocyte progenitors remyelinate the brain and rescue behavioral deficits following radiation.

Authors:  Jinghua Piao; Tamara Major; Gordon Auyeung; Edelweiss Policarpio; Jayanthi Menon; Leif Droms; Philip Gutin; Kunihiro Uryu; Jason Tchieu; Denis Soulet; Viviane Tabar
Journal:  Cell Stem Cell       Date:  2015-02-05       Impact factor: 24.633

Review 6.  Childhood Brain Tumors: a Systematic Review of the Structural Neuroimaging Literature.

Authors:  Alyssa S Ailion; Kyle Hortman; Tricia Z King
Journal:  Neuropsychol Rev       Date:  2017-06-23       Impact factor: 7.444

7.  Maintenance of white matter integrity in a rat model of radiation-induced cognitive impairment.

Authors:  Lei Shi; M Constance Linville; Elizabeth Iversen; Doris P Molina; Jessie Yester; Kenneth T Wheeler; Michael E Robbins; Judy K Brunso-Bechtold
Journal:  J Neurol Sci       Date:  2009-07-21       Impact factor: 3.181

Review 8.  Postradiation imaging changes in the CNS: how can we differentiate between treatment effect and disease progression?

Authors:  Amanda J Walker; Jake Ruzevick; Ashkan A Malayeri; Daniele Rigamonti; Michael Lim; Kristin J Redmond; Lawrence Kleinberg
Journal:  Future Oncol       Date:  2014-05       Impact factor: 3.404

Review 9.  Research progress on mechanism and imaging of temporal lobe injury induced by radiotherapy for head and neck cancer.

Authors:  Zhuangzhuang Zheng; Bin Wang; Qin Zhao; Yuyu Zhang; Jinlong Wei; Lingbin Meng; Ying Xin; Xin Jiang
Journal:  Eur Radiol       Date:  2021-07-29       Impact factor: 5.315

Review 10.  Pathological changes in the central nervous system following exposure to ionizing radiation.

Authors:  S Bálentová; M Adamkov
Journal:  Physiol Res       Date:  2020-05-29       Impact factor: 1.881

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