Immunocytochemical analysis of synaptic proteins provides new insights into diabetes-mediated plasticity in the rat hippocampus

被引:99
作者
Grillo, CA
Piroli, GG
Wood, GE
Reznikov, LR
McEwen, BS
Reagan, LP
机构
[1] Univ S Carolina, Sch Med, Dept Pharmacol Physiol & Neurosci, Columbia, SC 29208 USA
[2] Rockefeller Univ, Harold & Margaret Milliken Hatch Lab Neuroendocri, New York, NY 10021 USA
关键词
glucocorticoid; corticosterone; radioimmunocytochemistry; confocal microscopy;
D O I
10.1016/j.neuroscience.2005.08.019
中图分类号
Q189 [神经科学];
学科分类号
071006 [神经生物学];
摘要
The hippocampus, an important integration center for learning and memory in the mammalian brain, undergoes neurological changes in response to a variety of stimuli that are suggestive of ongoing synaptic reorganization. Accordingly, the aim of this study was to identify markers of synaptic plasticity using rapid and reliable techniques such as radioimmunocytochemistry and confocal microscopy, thereby providing a "birds-eye view" of the whole hippocampus under hypercorticosteronemic conditions. The regulation of microtubule-associated protein 2, synaptophysin and postsynaptic density-95 was examined in two different animal models of hypercorticosteronemia: corticosterone administration and streptozotocin-induced diabetes using both a short-term (1 week) and long-term (5 weeks) treatment. Glucocorticoids and/or hyperglycemia increased synaptophysin expression in CA1, CA3 and the dentate gyrus, regions that exhibit synaptic plasticity in response to glucocorticoid exposure. In these models, postsynaptic density-95 expression increased in the CA3 region, particularly in the diabetic rats, while microtubule-associated protein 2 exhibited more selective changes. Fluoro-Jade histochemistry did not detect neuronal damage, suggesting that glucocorticoids and/or hyperglycemia induce plastic and not irreversible neuronal changes at these time points. Collectively, these results demonstrate that changes in the expression and distribution of synaptic proteins provide another measure of synaptic plasticity in the rat hippocampus in response to glucocorticoid exposure, changes that may accompany or contribute to neuroanatomical, neurochemical, and behavioral changes observed in experimental models of type 1 diabetes. (c) 2005 IBRO. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:477 / 486
页数:10
相关论文
共 67 条
[1]
Water maze learning and hippocampal synaptic plasticity in streptozotocin-diabetic rats: effects of insulin treatment [J].
Biessels, GJ ;
Kamal, A ;
Urban, IJA ;
Spruijt, BM ;
Erkelens, DW ;
Gispen, WH .
BRAIN RESEARCH, 1998, 800 (01) :125-135
[2]
Place learning and hippocampal synaptic plasticity in streptozotocin-Induced diabetic rats [J].
Biessels, GJ ;
Kamal, A ;
Ramakers, GM ;
Urban, IJ ;
Spruijt, BM ;
Erkelens, DW ;
Gispen, WH .
DIABETES, 1996, 45 (09) :1259-1266
[3]
Brake WG, 2001, ENDOCRINOLOGY, V142, P1284, DOI 10.1210/en.142.3.1284
[4]
BREMNER JD, 1995, AM J PSYCHIAT, V152, P973
[5]
Impaired modulation of AMPA receptors by calcium-dependent processes in streptozotocin-induced diabetic rats [J].
Chabot, C ;
Massicotte, G ;
Milot, M ;
Trudeau, F ;
Gagne, J .
BRAIN RESEARCH, 1997, 768 (1-2) :249-256
[6]
Estradiol increases pre- and post-synaptic proteins in the CA1 region of the hippocampus in female rhesus macaques (Macaca mulatta) [J].
Choi, JM ;
Romeo, RD ;
Brake, WG ;
Bethea, CL ;
Rosenwaks, Z ;
McEwen, BS .
ENDOCRINOLOGY, 2003, 144 (11) :4734-4738
[7]
Repeated restraint stress facilitates fear conditioning independently of causing hippocampal CA3 dendritic atrophy [J].
Conrad, CD ;
Magariños, AM ;
LeDoux, JE ;
McEwen, BS .
BEHAVIORAL NEUROSCIENCE, 1999, 113 (05) :902-913
[8]
Chronic stress impairs rat spatial memory on the Y maze, and this effect is blocked by tianeptine pretreatment [J].
Conrad, CD ;
Galea, LAM ;
Kuroda, Y ;
McEwen, BS .
BEHAVIORAL NEUROSCIENCE, 1996, 110 (06) :1321-1334
[9]
DISSOCIATION OF CORTISOL AND ADRENAL ANDROGEN SECRETION IN POORLY CONTROLLED INSULIN-DEPENDENT DIABETES-MELLITUS [J].
COUCH, RM .
ACTA ENDOCRINOLOGICA, 1992, 127 (02) :115-117
[10]
Cortisol reduces hippocampal glucose metabolism in normal elderly, but not in Alzheimer's disease [J].
deLeon, MJ ;
McRae, T ;
Rusinek, H ;
Convit, A ;
DeSanti, S ;
Tarshish, C ;
Golomb, J ;
Volkow, N ;
Daisley, K ;
Orentreich, N ;
McEwen, B .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 1997, 82 (10) :3251-3259