Andjelic Sofija, Torre Vincent
Instituto Nazionale Fisica della Materia and International School for Advanced Studies, Trieste, Italy.
J Neurophysiol. 2005 Dec;94(6):4430-40. doi: 10.1152/jn.00695.2005. Epub 2005 Aug 31.
Calcium dynamics in leech neurons were studied using a fast CCD camera. Fluorescence changes (DeltaF/F) of the membrane impermeable calcium indicator Oregon Green were measured. The dye was pressure injected into the soma of neurons under investigation. DeltaF/F caused by a single action potential (AP) in mechanosensory neurons had approximately the same amplitude and time course in the soma and in distal processes. By contrast, in other neurons such as the Anterior Pagoda neuron, the Annulus Erector motoneuron, the L motoneuron, and other motoneurons, APs evoked by passing depolarizing current in the soma produced much larger fluorescence changes in distal processes than in the soma. When APs were evoked by stimulating one distal axon through the root, DeltaF/F was large in all distal processes but very small in the soma. Our results show a clear compartmentalization of calcium dynamics in most leech neurons in which the soma does not give propagating action potentials. In such cells, the soma, while not excitable, can affect information processing by modulating the sites of origin and conduction of AP propagation in distal excitable processes.
利用快速电荷耦合器件(CCD)相机研究了水蛭神经元中的钙动力学。测量了膜不可渗透的钙指示剂俄勒冈绿的荧光变化(ΔF/F)。将该染料通过压力注入到被研究神经元的胞体中。机械感觉神经元中单个动作电位(AP)引起的ΔF/F在胞体和远端突起中的幅度和时间进程大致相同。相比之下,在其他神经元中,如前塔神经元、环肌运动神经元、L运动神经元和其他运动神经元,通过在胞体中注入去极化电流诱发的动作电位在远端突起中产生的荧光变化比在胞体中要大得多。当通过神经根刺激一条远端轴突诱发动作电位时,所有远端突起中的ΔF/F都很大,但在胞体中却非常小。我们的结果表明,在大多数水蛭神经元中,钙动力学存在明显的区室化,其中胞体不会产生传播性动作电位。在这类细胞中,胞体虽然不可兴奋,但可以通过调节动作电位在远端可兴奋突起中的起源部位和传导来影响信息处理。