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Aquaporin Pathways and Mucin Secretion of Bowman's Glands Might Protect the Olfactory Mucosa

机译:Bowman腺的水通道蛋白途径和粘蛋白分泌可能保护嗅觉粘膜

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摘要

The sense of smell is conveyed by the olfactory sensory neurons of the olfactory mucosa. Uniquely for sensory systems, the olfactory neurons directly face the external environment and are thus vulnerable to infections and changes in the airway surface liquid, but the surface liquid production and maintenance is not well understood. Here we show in rats and mice that Bowman's glands secrete the mucin MUC5AC. Aquaporin-5 was present at the apical face of the olfactory epithelium, completing a water transport pathway to the surface of the epithelium. Immunogold electron microscopy analysis revealed an intricate network of fine Aquaporin-1 -positive fibroblast processes that surround Bowman's glands, whereas deeper blood vessels were unlabeled for Aquaporin-1. Our results show how the olfactory mucosa might be protected against infections and dehydration generally and how neuronal function is protected against ion concentration changes in the airway surface liquid by rapid replacement of water losses through the aquaporin pathways.
机译:嗅觉由嗅觉粘膜的嗅觉感觉神经元传达。嗅觉神经元直接面向外部环境,因此对于嗅觉系统来说是唯一的感觉,因此易受感染和气道表层液体变化的影响,但对表层液体的产生和维护尚不甚了解。在这里,我们在大鼠和小鼠中显示鲍曼氏腺分泌粘蛋白MUC5AC。 Aquaporin-5存在于嗅觉上皮的顶表面,完成了向上皮表面的水传输路径。免疫金电子显微镜分析揭示了包围鲍曼腺的精细的Aquaporin-1阳性成纤维细胞过程的复杂网络,而更深的血管未标记Aquaporin-1。我们的研究结果表明,如何通过快速替换通过水通道蛋白途径损失的水分,可以保护嗅觉粘膜不受感染和脱水的影响,以及如何保护神经元功能免受气道表面液体中离子浓度变化的影响。

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