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TRPM5-expressing microvillous cells in the main olfactory epithelium

机译:在主要嗅上皮中表达TRPM5的微绒毛细胞

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Background The main olfactory epithelium (MOE) in the nasal cavity detects a variety of air borne molecules that provide information regarding the presence of food, predators and other relevant social and environmental factors. Within the epithelium are ciliated sensory neurons, supporting cells, basal cells and microvillous cells, each of which is distinct in morphology and function. Arguably, the least understood, are the microvillous cells, a population of cells that are small in number and whose function is not known. We previously found that in a mouse strain in which the TRPM5 promoter drives expression of the green fluorescent protein (GFP), a population of ciliated olfactory sensory neurons (OSNs), as well as a population of cells displaying microvilli-like structures is labeled. Here we examined the morphology and immunocytochemical properties of these microvillous-like cells using immunocytochemical methods. Results We show that the GFP-positive microvillous cells were morphologically diversified and scattered throughout the entire MOE. These cells immunoreacted to an antibody against TRPM5, confirming the expression of this ion channel in these cells. In addition, they showed a Ca2+-activated non-selective cation current in electrophysiological recordings. They did not immunoreact to antibodies that label cell markers and elements of the transduction pathways from olfactory sensory neurons and solitary chemosensory cells of the nasal cavity. Further, the TRPM5-expressing cells did not display axon-like processes and were not labeled with a neuronal marker nor did trigeminal peptidergic nerve fibers innervate these cells. Conclusion We provide morphological and immunocytochemical characterization of the TRPM5-expressing microvillous cells in the main olfactory epithelium. Our data demonstrate that these cells are non-neuronal and in terms of chemosensory transduction do not resemble the TRPM5-expressing olfactory sensory neurons and nasal solitary chemosensory cells.
机译:背景技术鼻腔中的主要嗅觉上皮(MOE)检测各种空气传播的分子,这些分子可提供有关食物,捕食者和其他相关社会及环境因素的信息。纤毛上皮内有纤毛的感觉神经元,支持细胞,基底细胞和微绒毛细胞,它们的形态和功能各不相同。可以说,最不了解的是微绒毛细胞,是数量很少且功能未知的细胞群。我们之前发现,在TRPM5启动子驱动绿色荧光蛋白(GFP)表达的小鼠品系中,纤毛嗅觉感觉神经元(OSNs)以及显示微绒毛状结构的细胞被标记了。在这里,我们使用免疫细胞化学方法检查了这些微绒毛状细胞的形态和免疫细胞化学特性。结果我们显示,GFP阳性微绒毛细胞在形态上是多样的,并散布在整个MOE中。这些细胞与针对TRPM5的抗体发生免疫反应,从而证实了这些离子通道在这些细胞中的表达。此外,他们在电生理记录中显示了Ca 2 + 活化的非选择性阳离子电流。它们对标记细胞标志物和嗅觉感觉神经元和鼻腔孤立化学感觉细胞的转导途径元素的抗体没有免疫反应。此外,表达TRPM5的细胞不显示轴突样过程,没有用神经元标记物标记,三叉神经肽能神经纤维也不会支配这些细胞。结论我们提供了主要嗅上皮中表达TRPM5的微绒毛细胞的形态学和免疫细胞化学特征。我们的数据表明,这些细胞是非神经元的,在化学感觉转导方面与表达TRPM5的嗅觉感觉神经元和鼻孤立性化学感觉细胞不同。

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