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首页> 外文期刊>Chemical Senses >Ultrastructural localization of amiloride-sensitive sodium channels and Na+,K+-ATPase in the rat's olfactory epithelial surface
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Ultrastructural localization of amiloride-sensitive sodium channels and Na+,K+-ATPase in the rat's olfactory epithelial surface

机译:阿米洛利敏感性钠通道和Na +,K + -ATPase在大鼠嗅上皮表面的超微结构定位

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Several studies have indicated that olfactory responses are impeded by amiloride. Therefore, it was of interest to see whether, and if so which, olfactory epithelial cellular compartments have amiloride-sensitive structures. Using ultrastructural methods that involved rapid freezing, freeze-substitution and low temperature embedding of olfactory epithelia, this study shows that, in the rat, this tissue is immunoreactive to antibodies against amiloride sensitive Na+-channels. However, microvilli of olfactory supporting cells, as opposed to receptor cilia, contained most of the immunoreactive sites. Apices from which the microvilli sprout and receptor cell dendritic knobs had much less if any of the amiloride-antibody binding sites. Using a direct ligand-binding cytochemical method, this study also confirms earlier ones that showed that olfactory receptor cell cilia have Na+,K+-ATPase. It is proposed that supporting cell microvilli and the receptor cilia themselves have mechanisms, different but likely complementary, that participate in regulating ti-ie salt concentration around the receptor cell cilia. in this way, both structures help to provide the ambient mucous environment for receptor cells to function properly This regulation of the salt concentration of an ambient fluid environment is a function that the olfactory epithelium shares with cells of transporting epithelia, such as those of kidney. [References: 72]
机译:多项研究表明,阿米洛利阻碍了嗅觉反应。因此,关注嗅觉上皮细胞区室是否具有阿米洛利敏感结构以及是否存在嗅觉上皮细胞室是令人感兴趣的。使用涉及嗅觉上皮的快速冷冻,冷冻替代和低温嵌入的超微结构方法,这项研究表明,在大鼠中,该组织对阿米洛利敏感的Na +通道抗体具有免疫反应性。然而,与受体纤毛相反,嗅觉支持细胞的微绒毛含有大部分的免疫反应位点。如果有任何阿米洛利-抗体结合位点,则微绒毛发芽和受体细胞树突状结的顶端要少得多。使用直接配体结合细胞化学方法,这项研究还证实了较早的那些,表明嗅觉受体细胞纤毛具有Na +,K + -ATPase。提出支持细胞微绒毛和受体纤毛本身具有参与调节受体细胞纤毛周围的盐浓度的机制,这些机制不同但可能互补。以这种方式,两个结构都有助于为受体细胞提供正常的粘液环境。对环境流体环境的盐浓度的调节是嗅觉上皮与运输上皮细胞(例如肾脏的细胞)共享的功能。 [参考:72]

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