Kinney Gregory A, Spain William J
Veterans Affairs Puget Sound Health Care System, Seattle, 98108, USA.
J Neurophysiol. 2002 Dec;88(6):2899-908. doi: 10.1152/jn.00037.2002.
The presence, magnitude, and time course of GABA transporter currents were investigated in electrophysiologically characterized neocortical astrocytes in an in vitro slice preparation. On stimulation with a bipolar-tungsten stimulating electrode placed nearby, the majority of cells tested displayed long-lasting GABA transporter currents using both single and repetitive stimulation protocols. Using subtype-specific GABA transporter antagonists, long-lasting GABA transporter currents were identified in neocortical astrocytes that originated from at least two subtypes of GABA transporters: GAT-1 and GAT-2/3. These transporter currents displayed slow rise times and long decay times, contrasting the time course observed for glutamate transporter currents, and are indicative of a long extracellular time course of GABA as well as a role for glial GABA transporters during synaptic transmission.
在体外脑片制备中,对经电生理特性鉴定的新皮质星形胶质细胞中的GABA转运体电流的存在、大小和时程进行了研究。使用置于附近的双极钨刺激电极进行刺激时,采用单次和重复刺激方案,大多数受试细胞显示出持久的GABA转运体电流。使用亚型特异性GABA转运体拮抗剂,在新皮质星形胶质细胞中鉴定出持久的GABA转运体电流,这些电流至少源自两种GABA转运体亚型:GAT-1和GAT-2/3。这些转运体电流显示出缓慢的上升时间和较长的衰减时间,这与谷氨酸转运体电流所观察到的时程形成对比,表明GABA在细胞外的作用时间较长,以及胶质GABA转运体在突触传递过程中发挥作用。