Astroglial plasticity in the hippocampus is affected by chronic psychosocial stress and concomitant Fluoxetine treatment

被引:337
作者
Czeh, Boldizsar
Simon, Maria
Schmelting, Barthel
Hiemke, Christoph
Fuchs, Eberhard
机构
[1] German Primate Ctr, Clin Neurobiol Lab, D-37077 Gottingen, Germany
[2] Univ Mainz, Dept Psychiat, D-6500 Mainz, Germany
[3] Univ Gottingen, Sch Med, Dept Neurol, D-3400 Gottingen, Germany
关键词
glia; astrocyte; cell number; stereology; antidepressant; hippocampal volume;
D O I
10.1038/sj.npp.1300982
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Analysis of post-mortem tissue from patients with affective disorders has revealed a decreased number of glial cells in several brain areas. Here, we examined whether long-term psychosocial stress influences the number and morphology of hippocampal astrocytes in an animal model with high validity for research on the pathophysiology of major depression. Adult male tree shrews were submitted to 5 weeks of psychosocial stress, after which immunocytochemical and quantitative stereological techniques were used to estimate the total number and somal volume of glial fibrillary acidic protein-positive astrocytes in the hippocampal formation. Stress significantly decreased both the number (-25%) and somal volume (-25%) of astroglia, effects that correlated notably with the stress-induced hippocampal volume reduction. Additionally, we examined whether antidepressant treatment with fluoxetine, a selective serotonin reuptake inhibitor, offered protection from these stress-induced effects. Animals were subjected to 7 days of psychosocial stress before the onset of daily oral administration of fluoxetine (15 mg/kg per day), with stress continued throughout the 28-day treatment period. Fluoxetine treatment prevented the stress-induced numerical decrease of astrocytes, but had no counteracting effect on somal volume shrinkage, In nonstressed animals, fluoxetine treatment had no effect on the number of astrocytes, but stress exposure significantly reduced their somal volumes (-20%). These notable changes of astroglial structural plasticity in response to stress and antidepressant treatment support the notion that glial changes may contribute to the pathophysiology of affective disorders as well as to the cellular actions of antidepressants.
引用
收藏
页码:1616 / 1626
页数:11
相关论文
共 77 条
[1]   Blockade of CRF1 or V1b receptors reverses stress-induced suppression of neurogenesis in a mouse model of depression [J].
Alonso, R ;
Griebel, G ;
Pavone, G ;
Stemmelin, J ;
Le Fur, G ;
Soubrié, P .
MOLECULAR PSYCHIATRY, 2004, 9 (03) :278-286
[2]   Glial cells as targets and producers of neurotrophins [J].
Althaus, HH ;
Richter-Landsberg, C .
INTERNATIONAL REVIEW OF CYTOLOGY - A SURVEY OF CELL BIOLOGY, VOL. 197, 2000, 197 :203-277
[3]   Cellular localization of the 5-HT1A receptor in primate brain neurons and glial cells [J].
Azmitia, EC ;
Gannon, PJ ;
Kheck, NM ;
WhitakerAzmitia, PM .
NEUROPSYCHOPHARMACOLOGY, 1996, 14 (01) :35-46
[4]   Modern views on an ancient chemical: Serotonin effects on cell proliferation, maturation, and apoptosis [J].
Azmitia, EC .
BRAIN RESEARCH BULLETIN, 2001, 56 (05) :413-424
[5]   The AGNP-TDM expert group consensus guidelines:: Therapeutic Drug Monitoring in psychiatry [J].
Baumann, P ;
Hiemke, C ;
Ulrich, S ;
Eckermann, G ;
Gaertner, I ;
Gerlach, M ;
Kuss, HJ ;
Laux, G ;
Müller-Oerlinghausen, B ;
Rao, ML ;
Riederer, P ;
Zernig, G .
PHARMACOPSYCHIATRY, 2004, 37 (06) :243-265
[6]   Low glial numbers in the amygdala in major depressive disorder [J].
Bowley, MP ;
Drevets, WC ;
Öngür, D ;
Price, JL .
BIOLOGICAL PSYCHIATRY, 2002, 52 (05) :404-412
[7]   Neuroimaging studies in post-traumatic stress disorder. [J].
Bremner J.D. .
Current Psychiatry Reports, 2002, 4 (4) :254-263
[8]  
Brown G., 1993, STRESS SYNAPSE SYNDR, P20
[9]   Protoplasmic astrocytes in CA1 stratum radiatum occupy separate anatomical domains [J].
Bushong, EA ;
Martone, ME ;
Jones, YZ ;
Ellisman, MH .
JOURNAL OF NEUROSCIENCE, 2002, 22 (01) :183-192
[10]   FURTHER EVIDENCE THAT FLUOXETINE INTERACTS WITH A 5-HT2C RECEPTOR IN GLIAL-CELLS [J].
CHEN, Y ;
PENG, LA ;
ZHANG, XH ;
STOLZENBURG, JU ;
HERTZ, L .
BRAIN RESEARCH BULLETIN, 1995, 38 (02) :153-159