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Dual functions of mammalian olfactory sensory neurons as odor detectors and mechanical sensors.

机译:哺乳动物嗅觉感觉神经元的双重功能是气味检测器和机械传感器。

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摘要

Most sensory systems are primarily specialized to detect one sensory modality. Here we report that olfactory sensory neurons (OSNs) in the mammalian nose can detect two distinct modalities transmitted by chemical and mechanical stimuli. As revealed by patch-clamp recordings, many OSNs respond not only to odorants, but also to mechanical stimuli delivered by pressure ejections of odor-free Ringer solution. The mechanical responses correlate directly with the pressure intensity and show several properties similar to those induced by odorants, including onset latency, reversal potential and adaptation to repeated stimulation. Blocking adenylyl cyclase or knocking out the cyclic nucleotide-gated channel CNGA2 eliminates the odorant and the mechanical responses, suggesting that both are mediated by a shared cAMP cascade. We further show that this mechanosensitivity enhances the firing frequency of individual neurons when they are weakly stimulated by odorants and most likely drives the rhythmic activity (theta oscillation) in the olfactory bulb to synchronize with respiration.
机译:大多数感觉系统主要专门用于检测一种感觉模态。在这里,我们报告在哺乳动物鼻子中的嗅觉感觉神经元(OSNs)可以检测到由化学和机械刺激传递的两种不同的方式。正如膜片钳录音所揭示的那样,许多OSN不仅响应气味,而且还响应无味林格液压力喷射产生的机械刺激。机械响应与压力强度直接相关,并显示出类似于由加味剂诱导的一些特性,包括起效潜伏期,反转电位和对重复刺激的适应性。阻断腺苷酸环化酶或敲除环状核苷酸门控通道CNGA2消除了气味和机械响应,这表明两者均由共享的cAMP级联介导。我们进一步表明,当单个神经元被气味弱刺激时,这种机械敏感性会增强单个神经元的放电频率,并且最有可能驱动嗅球的节律活动(θ振荡)以与呼吸同步。

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