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Membrane properties of the granule cells of the islands of Calleja of the rat studied in vitro.

机译:大鼠的Calleja岛的颗粒细胞的膜特性进行了体外研究。

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摘要

1. Using patch-clamp techniques, we have studied granule neurones from the islands of Calleja in vitro: as isolated cells or as groups of varying numbers following enzymic digestion, or within untreated slices of approximately 100 microns thickness. 2. Recordings were made with patch pipettes in conventional or nystatin-perforated whole-cell mode. Current-clamp recordings indicated that these granule cells are excitable and at resting potential produce irregular spontaneous activity. In voltage clamp the transient inward current underlying these action potentials could be evoked. This current had a threshold for activation of about -50 mV and was sensitive to TTX. In some cells a TTX-resistant transient inward current was observed with a threshold for activation of about -70 mV. 3. Island of Calleja granule cells also exhibited outward currents. A rapidly activating transient current was observed that was resistant to TEA and sensitive to 4-AP, and therefore resembled IA. The current was half-maximally activated at -6 mV and steady-state inactivation was half-complete at -65 mV. 4. More sustained outward currents were also observed. Although some cells appeared to express a Ca(2+)-activated K+ current, the most common finding was a rapidly activating, slowly inactivating, voltage-dependent K+ current that was sensitive to TEA and Ba2+. This current resembled M-current more than delayed rectifier but displayed a number of idiosyncratic kinetic properties. Chief amongst these was the accumulation of an inactivating process when the current was repeatedly evoked from potentials near the cells' resting value by voltage steps that by themselves produced no observable inactivation during the voltage command; this behaviour was similar to the 'C-terminal' inactivation exhibited by lymphocytes and certain expressed K+ channel clones (Kv1.3). 5. These results indicate that the granule cells of the islands of Calleja are excitable and contain a number of additional regulatory conductances. The implications of these findings in, and the usefulness of this preparation to, the elucidation of the function(s) of the islands of Calleja are discussed.
机译:1.使用膜片钳技术,我们已经在体外研究了Calleja岛的颗粒神经元:作为分离的细胞或酶消化后成不同数目的组,或在未经处理的约100微米厚的切片中。 2.用贴片移液器以常规或制霉菌素穿孔的全细胞模式进行记录。电流钳记录表明这些颗粒细胞是可兴奋的,在静息电位下会产生不规则的自发活动。在电压钳制中,可以诱发这些动作电位下的瞬态内向电流。该电流的激活阈值约为-50 mV,并且对TTX敏感。在某些电池中,观察到具有TTX耐受性的瞬态内向电流,其激活阈值约为-70 mV。 3. Calleja颗粒细胞岛也表现出外向电流。观察到快速激活的瞬态电流对TEA具有抵抗力,并且对4-AP敏感,因此类似于IA。电流在-6 mV时最大半激活,稳态失活在-65 mV时半完全激活。 4.还观察到更持续的外向电流。尽管某些细胞似乎表达Ca(2+)激活的K +电流,但最常见的发现是对TEA和Ba2 +敏感的快速激活,缓慢失活的电压依赖性K +电流。该电流比延迟整流器更类似于M电流,但显示出许多特质动力学特性。其中最主要的是失活过程的累积,这是因为通过电压阶跃反复从电池静止值附近的电位中激发出电流,而电压阶跃在电压指令期间本身并没有产生可观察到的失活。这种行为类似于淋巴细胞和某些表达的K +通道克隆(Kv1.3)表现出的“ C端”失活。 5.这些结果表明,Calleja岛的颗粒细胞具有兴奋性,并包含许多其他调节电导。讨论了这些发现的含义以及该准备工作对阐明Calleja岛的功能的有用性。

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