Wächtler J, Mayer C, Grafe P
Physiologisches Institut, Ludwig-Maximilians-Universität München, Pettenkoferstrasse 12, D-80336 Munich, Germany.
Pflugers Arch. 1998 Apr;435(5):678-86. doi: 10.1007/s004240050569.
Confocal laser scanning microscopy was used to follow changes in the free intracellular calcium concentration ([Ca2+]i) in nerve fibres and adjacent Schwann cells in isolated rat vagus nerves. [Ca2+]i was monitored by the Ca2+-sensitive fluorescent dyes Calcium Green-1 and Fura Red. Intracellular Ca2+ transients were observed during repetitive (1-50 Hz) supramaximal electrical stimulation or by bath application of ATP. Trains of action potentials were more effective at elongated, fibre-like structures of the vagus nerves, whereas ATP-induced Ca2+ transients were found predominantly in regions of Schwann cell bodies. Activity-induced Ca2+ signals were unaffected by pharmacological manipulation of intracellular Ca2+ stores, during long-lasting application of purinergic receptor agonists, or by substitution of extracellular Na+ with Li+. However, they were abolished in the presence of Ca2+-free bathing solution or after the blocking of Ca2+ channels with Cd2+. Ca2+ transients were also observed during Ca2+ action potentials. Such "Ca2+ spikes" were elicited by electrical stimulation in the presence of a combination of tetrodotoxin and K+ channel blockers. These data suggest that voltage-dependent Ca2+ channels, activated during short trains of Na+ action potentials, produce an increase in intra-axonal [Ca2+] of rat vagus nerves. We did not find evidence for activity-dependent Ca2+ transients in the Schwann cells surrounding the unmyelinated axons.
共聚焦激光扫描显微镜用于追踪离体大鼠迷走神经中神经纤维和相邻施万细胞内游离钙浓度([Ca2+]i)的变化。[Ca2+]i通过钙敏荧光染料钙黄绿素-1和氟罗红进行监测。在重复(1 - 50 Hz)的超强电刺激期间或通过浴加ATP观察到细胞内钙瞬变。一连串的动作电位在迷走神经细长的纤维状结构上更有效,而ATP诱导的钙瞬变主要在施万细胞体区域发现。在长期应用嘌呤能受体激动剂期间,或用Li+替代细胞外Na+时,活性诱导的钙信号不受细胞内钙储存的药理学操作影响。然而,在无钙浴液存在或用Cd2+阻断钙通道后,它们被消除。在钙动作电位期间也观察到钙瞬变。这种“钙尖峰”是在河豚毒素和钾通道阻滞剂联合存在的情况下通过电刺激引发的。这些数据表明,在短串钠动作电位期间激活的电压依赖性钙通道会导致大鼠迷走神经轴突内[Ca2+]增加。我们没有发现在无髓鞘轴突周围的施万细胞中有活性依赖性钙瞬变的证据。