Haji A, Ohi Y
Laboratory of Neuropharmacology, School of Pharmacy, Aichi Gakuin University, 1-100 Kusumoto, Chikusa, Nagoya 464-8650, Japan.
Neuroscience. 2006 Jun 19;140(1):343-54. doi: 10.1016/j.neuroscience.2006.02.006. Epub 2006 Mar 14.
The cytosolic Ca(2+) released from internal stores is important for distinctive cell functions. To assess the role of ryanodine/Ca(2+) releasing mechanisms in the rhythmic activity of respiratory neurons, effects of intracellular injection of ryanodine on the membrane potential trajectory of postinspiratory and augmenting inspiratory neurons were investigated in unanesthetized, decerebrate, paralyzed and artificially ventilated cats. Ryanodine injection hyperpolarized the membrane and decreased input resistance throughout the respiratory cycle in both types of respiratory neurons. Specifically, membrane repolarization during postinspiration was accelerated in postinspiratory neurons, and the large hyperpolarization at the onset of postinspiration was increased in augmenting inspiratory neurons. Spike-afterhyperpolarization consisting of a fast, early component and slow, late component increased in size after ryanodine, resulting in prolongation of inter-spike intervals and decrease of burst discharge. Intracellular injection of caffeine produced similar effects on these respiratory neurons, and Ruthenium Red, an antagonist of ryanodine receptors, had opposite effects. Immunoreactivity for ryanodine receptors was detected in all respiratory neurons labeled intracellularly with neurobiotin. These results demonstrate that ryanodine-sensitive Ca(2+) stores modulate the periodic membrane potential fluctuations and spike activity in respiratory neurons.
从细胞内储存库释放的胞质钙离子(Ca(2+))对于独特的细胞功能很重要。为了评估兰尼碱/钙离子释放机制在呼吸神经元节律性活动中的作用,在未麻醉、去大脑、麻痹并人工通气的猫中,研究了细胞内注射兰尼碱对吸气后神经元和增强吸气神经元膜电位轨迹的影响。在两种类型的呼吸神经元中,注射兰尼碱都会使膜超极化,并在整个呼吸周期中降低输入电阻。具体而言,吸气后神经元在吸气后期间的膜复极化加速,而增强吸气神经元在吸气后开始时的大超极化增加。由快速早期成分和缓慢晚期成分组成的动作电位后超极化在注射兰尼碱后幅度增大,导致动作电位间隔延长和爆发性放电减少。细胞内注射咖啡因对这些呼吸神经元产生类似的影响,而兰尼碱受体拮抗剂钌红则产生相反的作用。在用神经生物素进行细胞内标记的所有呼吸神经元中均检测到兰尼碱受体的免疫反应性。这些结果表明,对兰尼碱敏感的钙离子储存库调节呼吸神经元中的周期性膜电位波动和动作电位活动。