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龟嗅觉球中低阈值钙峰对颗粒细胞兴奋性的调节。

Regulation of granule cell excitability by a low-threshold calcium spike in turtle olfactory bulb.

作者信息

Pinato Giulietta, Midtgaard Jens

机构信息

Department of Medical Physiology, University of Copenhagen, DK-2200 N Copenhagen, Denmark.

出版信息

J Neurophysiol. 2003 Nov;90(5):3341-51. doi: 10.1152/jn.00560.2003. Epub 2003 Jul 16.

Abstract

Granule cells excitability in the turtle olfactory bulb was analyzed using whole cell recordings in current- and voltage-clamp mode. Low-threshold spikes (LTSs) were evoked at potentials that are subthreshold for Na spikes in normal medium. The LTSs were evoked from rest, but hyperpolarization of the cell usually increased their amplitude so that they more easily boosted Na spike initiation. The LTS persisted in the presence of TTX but was antagonized by blockers of T-type calcium channels. The voltage dependence, kinetics, and inactivation properties of the LTS were characteristic of a low-threshold calcium spike. The threshold of the LTS was slightly above the resting potential but well below the Na spike threshold, and the LTS was often evoked in isolation in normal medium. Tetraethylammonium (TEA) and 4-aminopyridine (4-AP) had only minimal effects on the LTS but revealed the presence of a high-threshold Ca2+ spike (HTS), which was antagonized by Cd2+. The LTS displayed paired-pulse attenuation, with a timescale for recovery from inactivation of about 2 s at resting membrane potential. The LTS strongly boosted Na spike initiation; with repetitive stimulation, the long recovery of the LTS governed Na spike initiation. Thus the olfactory granule cells possess an LTS, with intrinsic kinetics that contribute to sub- and suprathreshold responses on a timescale of seconds. This adds a new mechanism to the early processing of olfactory input.

摘要

利用全细胞记录的电流钳和电压钳模式,分析了乌龟嗅球中颗粒细胞的兴奋性。在正常培养基中,低于钠峰阈值的电位可诱发低阈值尖峰(LTS)。LTS从静息状态诱发,但细胞超极化通常会增加其幅度,使其更容易促进钠峰起始。LTS在TTX存在下持续存在,但被T型钙通道阻滞剂拮抗。LTS的电压依赖性、动力学和失活特性是低阈值钙峰的特征。LTS的阈值略高于静息电位,但远低于钠峰阈值,并且在正常培养基中LTS常单独诱发。四乙铵(TEA)和4-氨基吡啶(4-AP)对LTS只有最小的影响,但揭示了高阈值Ca2+峰(HTS)的存在,其被Cd2+拮抗。LTS表现出双脉冲衰减,在静息膜电位下从失活恢复的时间尺度约为2秒。LTS强烈促进钠峰起始;在重复刺激下,LTS的长时间恢复控制着钠峰起始。因此,嗅颗粒细胞具有LTS,其内在动力学在数秒的时间尺度上对阈下和阈上反应有贡献。这为嗅觉输入的早期处理增加了一种新机制。

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