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钠缺乏和钠负荷绵羊肾上腺球状带的结构与功能研究

Structural and functional studies of the adrenal zona glomerulosa in sodium-depleted and sodium-loaded sheep.

作者信息

Hill P A, Coghlan J P, Butkus A, Ryan G B

出版信息

Cell Tissue Res. 1983;229(3):515-31. doi: 10.1007/BF00207695.

Abstract

The effects of alterations in sodium status upon the morphology of the adrenal zona glomerulosa in sheep have been examined qualitatively and quantitatively, using light- and electron microscopy, and correlated with functionally related biochemical data. With severe sodium depletion induced by parotid-cannula drainage, there was mitotic activity throughout the zona glomerulosa, and glandular cells showed striking ultrastructural changes. These changes particularly affected mitochondria, which were enlarged, rounded and showed replacement of their normal lamelliform cristae by thin elongated cristal elements and bundles of tubular "rod-like" structures. Quantitative morphometric studies showed an increase in the volumes of zona glomerulosa cells, nuclei, mitochondria, smooth and granular endoplasmic reticulum, and Golgi profiles. In contrast, with dietary sodium loading, zona glomerulosa cells appeared shrunken and showed cytoplasmic lipid accumulation; mitochondria and other organelles were not significantly altered. The correlation of the ultrastructural cytological alterations in zona glomerulosa cells in sodium-depleted sheep with raised blood aldosterone levels suggests that such morphologic changes reflect a heightened capacity of these cells for aldosterone biosynthesis and secretion. These changes may also account for the increased sensitivity of the zona glomerulosa to aldosterone-producing stimuli during sodium deficiency.

摘要

利用光学显微镜和电子显微镜,对绵羊钠状态改变对肾上腺球状带形态的影响进行了定性和定量研究,并与功能相关的生化数据进行了关联分析。通过腮腺插管引流诱导严重缺钠时,整个球状带出现有丝分裂活动,腺细胞呈现出显著的超微结构变化。这些变化尤其影响线粒体,线粒体增大、变圆,其正常的板层状嵴被细长的嵴状元件和管状“杆状”结构束所取代。定量形态计量学研究表明,球状带细胞、细胞核、线粒体、滑面和粗面内质网以及高尔基体轮廓的体积增加。相反,在饮食中钠负荷增加时,球状带细胞出现皱缩并伴有细胞质脂质蓄积;线粒体和其他细胞器无明显改变。缺钠绵羊球状带细胞超微结构细胞学改变与血醛固酮水平升高之间的相关性表明,这种形态学变化反映了这些细胞合成和分泌醛固酮的能力增强。这些变化也可能解释了缺钠期间球状带对醛固酮生成刺激的敏感性增加。

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