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Whole-cell Recordings and Photolysis of Caged Compounds in Olfactory Sensory Neurons Isolated from the Mouse

机译:从小鼠中分离出来的嗅觉感觉神经元中笼状化合物的全细胞记录和光解

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Gene manipulation and molecular biological techniques for the study of olfaction are well developed in mice,while electrophysiological properties of mouse olfactory sensory neurons have been less extensively investigated.We used the whole-cell voltage-clamp technique in mouse isolated olfactory sensory neurons to investigate both voltage-gated and transduction currents.Voltage-gated currentswere composed of transient inward currents followed by outward currents with transient and sustained components.Of the tested olfactory sensory neurons,12% responded to the odorant cineole with an inward current.Caged compounds were introduced into the cytoplasm through the patch pipette and flash photolysis of caged cyclic nucleotides activated an inward current in 94% of the cells.When the flash was localized at the cilia,the response latency,rising time and duration were shorter than when the flash illuminated the some.The amplitude of the photolysis response was dependent on light intensity and the relation was fitted by the Hill equation,with a Hill coefficient of 3.2.These results demonstrate that it is possible to obtain recordings in the whose-cell configuration from olfactory sensory neurons isolated from the mouse and that voltage-gated currents and transduction properties are largely similar to those of amphibians.
机译:用于嗅觉研究的基因操纵和分子生物学技术在小鼠中已经发展成熟,而对小鼠嗅觉感觉神经元的电生理特性的研究还不够广泛。我们在小鼠离体嗅觉感觉神经元中使用全细胞电压钳技术来研究这两种嗅觉神经元。电压门控电流和电压门控电流由瞬态向内电流,瞬态和持续成分的向外电流组成。在测试的嗅觉感觉神经元中,有12%的嗅觉神经元对向内的嗅觉神经鞘响应,将笼状化合物引入通过贴片移液器的细胞质和笼状环状核苷酸的快速光解激活了94%的细胞的内向电流。当闪光灯位于纤毛上时,响应潜伏期,上升时间和持续时间比闪光灯照亮一些时短。光解反应的幅度取决于光强度和该关系由Hill方程拟合,Hill系数为3.2。这些结果表明,可以从小鼠分离的嗅觉感觉神经元获得其细胞构型的记录,并且电压门控电流和转导特性是与两栖动物基本相似。

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