McBain C J, Traynelis S F, Dingledine R
Department of Pharmacology, University of North Carolina, Chapel Hill 27599.
Science. 1990 Aug 10;249(4969):674-7. doi: 10.1126/science.2382142.
The factors responsible for the unusual susceptibility of the hippocampus to seizures and ischemic cell damage are not well understood. The CA1 pyramidal subfield of the hippocampus is particularly vulnerable to seizure activity and damage after ischemia. The possibility was examined that regional differences exist in extracellular volume, which might influence neuronal excitability and response to injury in the hippocampus. CA1 stratum pyramidale exhibited an exceptionally low extracellular volume fraction (EVF) of 0.12, whereas the EVFs of CA3 and dentate were considerably higher--0.18 and 0.15, respectively. The EVF of CA1 stratum pyramidale was reversibly reduced by 30 percent when the extracellular potassium concentration was raised from 3.5 to 8.5 mM, a procedure that induced spontaneous electrographic seizures in CA1. Thus there are regional variations in the properties of the extracellular space in the hippocampus that might underlie the propensity of the CA1 region to develop seizures and to suffer damage after ischemia.
海马体对癫痫发作和缺血性细胞损伤异常敏感的原因尚未完全明确。海马体的CA1锥体亚区对癫痫活动和缺血后的损伤尤为敏感。研究了细胞外容积是否存在区域差异,这可能会影响海马体中神经元的兴奋性和对损伤的反应。CA1锥体层的细胞外容积分数(EVF)异常低,为0.12,而CA3和齿状回的EVF则高得多,分别为0.18和0.15。当细胞外钾浓度从3.5 mM升高到8.5 mM时,CA1锥体层的EVF可逆性降低30%,这一过程在CA1中诱发了自发性脑电图癫痫发作。因此,海马体中细胞外空间的特性存在区域差异,这可能是CA1区易发生癫痫发作和缺血后受损的基础。