Audesirk G, Audesirk T
Neurotoxicology. 1984 Winter;5(4):1-7.
Both acute and chronic lead exposure have been found to inhibit transmission at chemical synapses, possibly by interfering with inward calcium current. We have found that chronic lead exposure slightly reduces input resistance and greatly reduces the junctional resistance between two strongly electrically coupled neurons in the pond snail Lymnaea stagnalis. The net effect is to increase the strength of electrical coupling. A reduction in gap junctional resistance would also be expected to increase the flow of small molecules between cells. However, Lucifer Yellow injections did not reveal dye-coupling between the cells. Lead exposure also increases the capacitance of the neurons.
已发现急性和慢性铅暴露均会抑制化学突触处的传递,可能是通过干扰内向钙电流来实现的。我们发现,慢性铅暴露会略微降低输入电阻,并极大地降低池塘蜗牛椎实螺中两个强电耦合神经元之间的连接电阻。最终结果是增加电耦合强度。间隙连接电阻的降低也有望增加细胞间小分子的流动。然而,注射荧光黄并未显示细胞间存在染料耦合。铅暴露还会增加神经元的电容。