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绵羊腮腺细胞内向整流和外向整流钾电流的发育调控与维持

Developmental regulation and maintenance of inwardly and outwardly rectifying K+ currents in sheep parotid cells.

作者信息

Hirono C, Steward M C, Sangster N, Poronnik P, Young J A, Cook D I

机构信息

Department of Physiology, University of Sydney, New South Wales, Australia.

出版信息

Am J Physiol. 1994 Nov;267(5 Pt 1):G947-53. doi: 10.1152/ajpgi.1994.267.5.G947.

Abstract

Sheep parotid secretory cells contain an inwardly rectifying K+ conductance not seen in nonruminants. The channels underlying this conductance are highly active in unstimulated cells and, in consequence, have been implicated in spontaneous secretion (secretion in the absence of neural and hormonal stimulation), an unusual phenomenon seen conspicuously in ruminant parotid glands. Since spontaneous secretion by the sheep parotid first appears after weaning, at the same time that the parasympathetic secretomotor innervation becomes functional, and since parasympathetic denervation of the adult parotid causes spontaneous secretion to abate over a period of weeks, it might be expected that the activity of the inwardly rectifying K+ conductance would be similarly related to parasympathetic innervation if it plays an important role in spontaneous secretion. To test this hypothesis, we used whole cell patch-clamp techniques to study the inwardly rectifying K+ conductance in secretory cells from the parotid glands of unweaned lambs and normal adult sheep studied 6 wk after unilateral parotid parasympathectomy. The secretory cells from unweaned lambs showed almost no inwardly rectifying current, and the cells from parasympathectomized glands in adults showed a reduced current compared with the contralateral control glands. Our results thus provide evidence that the inwardly rectifying current is somehow enabled by the development of a functional parasympathetic innervation.

摘要

绵羊腮腺分泌细胞含有一种内向整流钾离子电导,这在非反刍动物中未见。这种电导所依赖的通道在未受刺激的细胞中高度活跃,因此,与自发分泌(在无神经和激素刺激时的分泌)有关,这是反刍动物腮腺中明显可见的一种不寻常现象。由于绵羊腮腺的自发分泌在断奶后首次出现,此时副交感神经分泌运动神经支配开始发挥作用,而且由于成年腮腺的副交感神经去支配会导致自发分泌在数周内减弱,因此可以预期,如果内向整流钾离子电导在自发分泌中起重要作用,其活性将与副交感神经支配有类似的关系。为了验证这一假设,我们使用全细胞膜片钳技术研究了未断奶羔羊腮腺以及单侧腮腺副交感神经切除术后6周的正常成年绵羊腮腺分泌细胞中的内向整流钾离子电导。未断奶羔羊的分泌细胞几乎没有内向整流电流,与对侧对照腺体相比,成年去交感神经腺体的细胞显示电流减小。因此,我们的结果提供了证据,表明内向整流电流在某种程度上是由功能性副交感神经支配的发育所促成的。

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