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Photoactivation of olfactory sensory neurons does not affect action potential conduction in individual trigeminal sensory axons innervating the rodent nasal cavity

机译:嗅觉感觉神经元的光激活不影响支配啮齿动物鼻腔的三叉神经感觉轴突中动作电位的传导

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摘要

Olfactory and trigeminal chemosensory systems reside in parallel within the mammalian nose. Psychophysical studies in people indicate that these two systems interact at a perceptual level. Trigeminal sensations of pungency mask odour perception, while olfactory stimuli can influence trigeminal signal processing tasks such as odour localization. While imaging studies indicate overlap in limbic and cortical somatosensory areas activated by nasal trigeminal and olfactory stimuli, there is also potential cross-talk at the level of the olfactory epithelium, the olfactory bulb and trigeminal brainstem. Here we explored the influence of olfactory and trigeminal signaling in the nasal cavity. A forced choice water consumption paradigm was used to ascertain whether trigeminal and olfactory stimuli could influence behaviour in mice. Mice avoided water sources surrounded by both volatile TRPV1 (cyclohexanone) and TRPA1 (allyl isothiocyanate) irritants and the aversion to cyclohexanone was mitigated when combined with a pure odorant (rose fragrance, phenylethyl alcohol, PEA). To determine whether olfactory-trigeminal interactions within the nose could potentially account for this behavioural effect we recorded from single trigeminal sensory axons innervating the nasal respiratory and olfactory epithelium using an isolated in vitro preparation. To circumvent non-specific effects of chemical stimuli, optical stimulation was used to excite olfactory sensory neurons in mice expressing channel-rhodopsin (ChR2) under the olfactory marker protein (OMP) promoter. Photoactivation of olfactory sensory neurons produced no modulation of axonal action potential conduction in individual trigeminal axons. Similarly, no evidence was found for collateral branching of trigeminal axon that might serve as a conduit for cross-talk between the olfactory and respiratory epithelium and olfactory dura mater. Using direct assessment of action potential activity in trigeminal axons we observed neither paracrine nor axon reflex mediated cross-talk between olfactory and trigeminal sensory systems in the rodent nasal cavity. Our current results suggest that olfactory sensory neurons exert minimal influence on trigeminal signals within the nasal cavity.
机译:嗅觉和三叉神经的化学感觉系统平行存在于哺乳动物的鼻子内。人们的心理物理学研究表明,这两个系统在感知水平上相互作用。刺鼻的三叉感觉掩盖了气味感知,而嗅觉刺激会影响三叉信号处理任务,例如气味定位。影像学研究表明,在鼻三叉神经和嗅觉刺激激活的边缘和皮质体感区域中存在重叠,但在嗅觉上皮,嗅球和三叉神经干水平也存在潜在的串扰。在这里,我们探讨了嗅觉和三叉神经信号在鼻腔中的影响。强制选择饮水范式用于确定三叉神经和嗅觉刺激是否可以影响小鼠行为。小鼠避免了被挥发性TRPV1(环己酮)和TRPA1(烯丙基异硫氰酸烯丙酯)刺激物包围的水源,当与纯净的气味剂(玫瑰香,苯乙醇,PEA)结合使用时,减轻了对环己酮的厌恶感。为了确定鼻子内的嗅觉-三叉神经相互作用是否可能潜在地解释了这种行为效应,我们使用分离的体外制剂从支配鼻呼吸道和嗅觉上皮的单个三叉感觉轴突进行了记录。为了规避化学刺激的非特异性作用,在嗅觉标记蛋白(OMP)启动子下,光学刺激被用于激发表达通道-视紫红质(ChR2)的小鼠的嗅觉感觉神经元。嗅觉感觉神经元的光激活在单个三叉神经轴突中不产生轴突动作电位传导的调节。同样,也没有发现三叉神经轴突的侧支分支的证据,这些分支分支可作为嗅觉和呼吸道上皮与嗅觉硬脑膜之间串扰的管道。通过直接评估三叉神经轴突中动作电位的活动,我们没有观察到啮齿动物鼻腔中的嗅觉和三叉神经感觉系统之间的旁分泌或轴突反射介导的串扰。我们目前的结果表明,嗅觉感觉神经元对鼻腔内三叉神经信号的影响最小。

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