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间歇性与持续性乙醇暴露对大鼠海马突触的长期影响。

Long-term effects of intermittent versus continuous ethanol exposure on hippocampal synapses of the rat.

作者信息

Lundqvist C, Volk B, Knoth R, Alling C

机构信息

Department of Psychiatry and Neurochemistry, University of Lund, Sweden.

出版信息

Acta Neuropathol. 1994;87(3):242-9. doi: 10.1007/BF00296739.

Abstract

The hippocampus is known to be very sensitive to a large spectrum of different neurotoxins including ethanol. Ethanol administered continuously or intermittently may affect the hippocampus in different ways. Intermittent administration of ethanol has many features in common with the low level electrical stimulation protocols which lead to the functional changes associated with the phenomenon of kindling. In this study, the differential effects of intermittent intraperitoneal ethanol injections (3 g/kg twice daily) and continuously administered ethanol in drinking water (20%) on hippocampal synapses in the rat were studied using ethanolic phosphotungstic acid staining and electron microscopy. After 1 month of intermittent exposure a significant reduction (18%) of synapses was seen in the stratum lucidum of the CA3 region. Continuously treated animals showed no significant change over this time despite a higher total ethanol intake. In the dentate gyrus, a compensatory increase in supragranular synaptic number was seen only in continuously treated animals. These findings demonstrate the sensitivity of synapses of the hippocampus to the presence of ethanol and the larger effects of peaking ethanol concentrations compared to more constant levels. These results emphasize the need to consider the differential effects of various types of ethanol consumption also on the human brain.

摘要

已知海马体对包括乙醇在内的多种不同神经毒素非常敏感。持续或间歇性给予乙醇可能会以不同方式影响海马体。间歇性给予乙醇具有许多与低水平电刺激方案相同的特征,这些方案会导致与点燃现象相关的功能变化。在本研究中,使用乙醇磷钨酸染色和电子显微镜研究了间歇性腹腔注射乙醇(每日两次,每次3 g/kg)和在饮用水中持续给予乙醇(20%)对大鼠海马体突触的不同影响。间歇性暴露1个月后,CA3区透明层的突触显著减少(18%)。尽管持续处理组动物的乙醇总摄入量较高,但在此期间未观察到显著变化。在齿状回中,仅在持续处理的动物中观察到颗粒上层突触数量的代偿性增加。这些发现表明海马体突触对乙醇存在的敏感性,以及与更恒定水平相比,乙醇浓度峰值的影响更大。这些结果强调了也需要考虑不同类型乙醇摄入对人类大脑的不同影响。

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