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首页> 外文期刊>The Journal of Physiology >Calcium oscillations in rhythmically active respiratory neurones in the brainstem of the mouse.
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Calcium oscillations in rhythmically active respiratory neurones in the brainstem of the mouse.

机译:小鼠脑干中有节奏的活动性呼吸神经元中的钙振荡。

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1. The rhythmically active respiratory network in the brainstem slice of the mouse was investigated under in vitro conditions using patch clamp and microfluorometric techniques. Rhythmic respiratory activity persisted over the whole course of an experiment. 2. Electrophysiologically recorded rhythmic activity in respiratory neurones was accompanied by oscillations in intracellular calcium, which displayed a maximal concentration of 300 nM and decayed to basal levels with a mean time constant of 1.6 +/- 0.9 s. 3. Elevations of calcium concentrations were highly correlated with the amplitude of rhythmic membrane depolarization of neurones, indicating that they were initiated by a calcium influx across the plasma membrane through voltage-gated calcium channels. 4. Voltage clamp protocols activating either high voltage-activated (HVA) or both HVA and low voltage-activated (LVA) calcium channels showed that intracellular calcium responses were mainly evoked by calcium currents through HVA channels. 5. Somatic calcium signals depended linearly on transmembrane calcium fluxes, suggesting that calcium-induced calcium release did not substantially contribute to the response. 6. For calcium elevations below 1 microM, decay time constants were essentially independent of the amplitude of calcium rises, indicating that calcium extrusion was adequately approximated by a linear extrusion mechanism. 7. Cytosolic calcium oscillations observed in neurones of the ventral respiratory group provide further evidence for rhythmic activation of calcium-dependent conductances or second messenger systems participating in the generation and modulation of rhythmic activity in the central nervous system.
机译:1.在体外条件下使用膜片钳和微荧光技术研究了小鼠脑干切片中具有节律活性的呼吸网络。在整个实验过程中,节律性呼吸活动持续存在。 2.电生理学记录的呼吸神经元的节律活动伴有细胞内钙的振荡,该振荡显示最大浓度为300 nM,并衰减至基础水平,平均时间常数为1.6 +/- 0.9 s。 3.钙浓度的升高与神经元的节律膜去极化的幅度高度相关,这表明它们是由钙离子通过电压门控钙通道穿过质膜而引发的。 4.激活高电压激活(HVA)或同时激活HVA和低电压激活(LVA)钙通道的电压钳方案显示,细胞内钙反应主要由通过HVA通道的钙电流引起。 5.体细胞钙信号线性依赖于跨膜钙通量,表明钙诱导的钙释放基本上不影响反应。 6.对于低于1 microM的钙离子升高,衰变时间常数基本上与钙离子升高的幅度无关,这表明通过线性挤压机制可以充分估计钙的挤压。 7.在腹侧呼吸组神经元中观察到的胞质钙振荡为钙依赖性电导或参与中枢神经系统节律活动的产生和调节的第二信使系统的节律性激活提供了进一步的证据。

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