大鼠肾上腺髓质中染色质颗粒的精细超微结构表明囊泡介导的分泌过程。

Anatomy and Embryology Pub Date : 2006-01-01 Epub Date: 2005-11-17 DOI:10.1007/s00429-005-0059-8
E Crivellato, D Guidolin, B Nico, G G Nussdorfer, D Ribatti
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引用次数: 10

摘要

通过透射电镜观察,结合形态计量学分析和估计程序,发现大鼠肾上腺髓质中25.94%的去甲肾上腺素(NA)颗粒和16.85%的肾上腺素(A)颗粒具有独特的超微结构特征。这包括颗粒限制膜的外翻,形成具有不同形态和延伸的出芽结构。在14.8%的NA颗粒和12.0%的A颗粒中,出袋相对较短,看起来像从颗粒表面出现的小气泡,通常含有电子致密物质。11.2%的NA颗粒和4.9%的A颗粒的超微结构特征最为显著。这些分泌细胞器呈细长的尾状或茎状附属物,由不同的染色质填充,末端为不同电子密度的球形膨胀。在其附近或粒间细胞质中发现了一系列大小不等(直径30- 150nm)和含量不等的囊泡。碘化锌-四氧化锇(ZIO)固定的肾上腺髓细胞检查显示,染色质颗粒、出芽结构和细胞质囊泡中有精细的电子致密沉淀物。这些数据表明,在染色质细胞中,ZIO组织化学反应揭示了一种共同的成分。由于儿茶酚类化合物是ZIO复合物的主要组织靶点,儿茶酚胺是负责观察到的ZIO反应性的良好候选者。本研究进一步证实了一种假设,即从嗜铬颗粒中释放分泌物质可能是通过典型的碎片脱粒的囊泡运输机制来完成的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fine ultrastructure of chromaffin granules in rat adrenal medulla indicative of a vesicle-mediated secretory process.

Observation by transmission electron microscopy, coupled with morphometric analysis and estimation procedure, revealed unique ultrastructural features in 25.94% of noradrenaline (NA)-containing granules and 16.85% of adrenaline (A)-containing granules in the rat adrenal medulla. These consisted of evaginations of the granule limiting membrane to form budding structures having different morphology and extension. In 14.8% of NA granules and 12.0% of A granules, outpouches were relatively short, looked like small blebs emerging from the granule surface and generally contained electron-dense material. A proportion of 11.2% of NA granules and 4.9% of A granules revealed the most striking ultrastructural features. These secretory organelles presented thin, elongated, tail-like or stem-like appendages, which were variably filled by chromaffin substance and terminated with spherical expansions of different electron density. A cohort of vesicles of variable size (30-150 nm in diameter) and content was found either close to them or in the intergranular cytosol. Examination of adrenal medullary cells fixed by zinc iodide-osmium tetroxide (ZIO) revealed fine electron dense precipitates in chromaffin granules, budding structures as well as cytoplasmic vesicles. These data indicate that a common constituent is revealed by the ZIO histochemical reaction in chromaffin cells. As catecholic compounds are the main tissue targets of ZIO complexes, catecholamines are good candidates to be responsible for the observed ZIO reactivity. This study adds further to the hypothesis that release of secretory material from chromaffin granules may be accomplished by a vesiclular transport mechanism typical of piecemeal degranulation.

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