Rekling J C, Shao X M, Feldman J L
Department of Neurobiology, University of California, Los Angeles, Los Angeles, California 90095-1763, USA.
J Neurosci. 2000 Dec 1;20(23):RC113. doi: 10.1523/JNEUROSCI.20-23-j0003.2000.
Breathing pattern is postulated to be generated by brainstem neurons. However, determination of the underlying cellular mechanisms, and in particular the synaptic interactions between respiratory neurons, has been difficult. Here we used dual recordings from two distinct populations of brainstem respiratory neurons, hypoglossal (XII) motoneurons, and rhythmogenic (type-1) neurons in the preBötzinger complex (preBötC), the hypothesized site for respiratory rhythm generation, to determine whether electrical and chemical transmission is present. Using an in vitro brainstem slice preparation from newborn mice, we found that intracellularly recorded pairs of XII motoneurons and pairs of preBötC inspiratory type-1 neurons showed bidirectional electrical coupling. Coupling strength was low (<0.10), and the current that passed between two neurons was heavily filtered (corner frequency, <10 Hz). Dual recordings also demonstrated unidirectional excitatory chemical transmission (EPSPs of approximately 3 mV) between type-1 neurons. These data indicate that respiratory motor output from the brainstem involves gap junction-mediated current transfer between motoneurons. Furthermore, bidirectional electrical coupling and unidirectional excitatory chemical transmission are present between type-1 neurons in the preBötC and may be important for generation or modulation of breathing rhythm.
呼吸模式被假定为由脑干神经元产生。然而,确定其潜在的细胞机制,尤其是呼吸神经元之间的突触相互作用,一直很困难。在这里,我们使用了来自脑干呼吸神经元的两个不同群体的双记录,即舌下(XII)运动神经元和前包钦格复合体(preBötC)中的节律性(1型)神经元,preBötC被认为是呼吸节律产生的部位,以确定是否存在电传递和化学传递。使用新生小鼠的体外脑干切片标本,我们发现细胞内记录的XII运动神经元对和preBötC吸气性1型神经元对表现出双向电耦合。耦合强度较低(<0.10),并且在两个神经元之间通过的电流经过了大量滤波(转折频率,<10Hz)。双记录还证明了1型神经元之间存在单向兴奋性化学传递(约3mV的兴奋性突触后电位)。这些数据表明,脑干的呼吸运动输出涉及运动神经元之间由缝隙连接介导的电流传递。此外,preBötC中的1型神经元之间存在双向电耦合和单向兴奋性化学传递,这可能对呼吸节律的产生或调节很重要。