Money T G A, Sproule M K J, Cross K P, Robertson R M
Department of Biology, Queen's University, Kingston, Ontario, Canada; and.
Centre for Neuroscience Studies, Queen's University, Kingston, Ontario, Canada.
J Neurophysiol. 2016 Sep 1;116(3):949-59. doi: 10.1152/jn.00354.2016. Epub 2016 Jun 8.
Mechanisms that could mitigate the effects of hypoxia on neuronal signaling are incompletely understood. We show that axonal performance of a locust visual interneuron varied depending on oxygen availability. To induce hypoxia, tracheae supplying the thoracic nervous system were surgically lesioned and action potentials in the axon of the descending contralateral movement detector (DCMD) neuron passing through this region were monitored extracellularly. The conduction velocity and fidelity of action potentials decreased throughout a 45-min experiment in hypoxic preparations, whereas conduction reliability remained constant when the tracheae were left intact. The reduction in conduction velocity was exacerbated for action potentials firing at high instantaneous frequencies. Bath application of octopamine mitigated the loss of conduction velocity and fidelity. Action potential conduction was more vulnerable in portions of the axon passing through the mesothoracic ganglion than in the connectives between ganglia, indicating that hypoxic modulation of the extracellular environment of the neuropil has an important role to play. In intact locusts, octopamine and its antagonist, epinastine, had effects on the entry to, and recovery from, anoxic coma consistent with octopamine increasing overall neural performance during hypoxia. These effects could have functional relevance for the animal during periods of environmental or activity-induced hypoxia.
能够减轻缺氧对神经元信号传导影响的机制尚未完全明确。我们发现,蝗虫视觉中间神经元的轴突功能会因氧气供应情况而有所不同。为诱导缺氧,对供应胸神经节的气管进行手术损伤,并在细胞外监测通过该区域的下行对侧运动检测器(DCMD)神经元轴突中的动作电位。在缺氧准备的45分钟实验过程中,动作电位的传导速度和保真度均下降,而气管保持完整时,传导可靠性保持不变。对于以高瞬时频率发放的动作电位,传导速度的降低更为明显。浴用章鱼胺可减轻传导速度和保真度的损失。穿过中胸神经节的轴突部分的动作电位传导比神经节之间的连接更易受影响,这表明神经纤维网细胞外环境的缺氧调节起着重要作用。在完整的蝗虫中,章鱼胺及其拮抗剂依匹斯汀对缺氧昏迷的进入和恢复有影响,这与章鱼胺在缺氧期间提高整体神经功能一致。这些效应在环境或活动诱导的缺氧期间可能对动物具有功能相关性。