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人唾液腺线粒体中超微结构定位的褪黑素。

Melatonin ultrastructural localization in mitochondria of human salivary glands.

机构信息

Department of Biomedical Sciences, Section of Cytomorphology, University of Cagliari, Cagliari, Italy.

Department of Biomedical Sciences, Section of Physiology, University of Cagliari, Cagliari, Italy.

出版信息

J Anat. 2023 Feb;242(2):146-152. doi: 10.1111/joa.13775. Epub 2022 Sep 29.

Abstract

The hormone melatonin was initially believed to be synthesized exclusively by the pineal gland and the enterochromaffin cells, but nowadays its production and distribution were observed in several other tissues and organs. Among others, the ultrastructural localization of melatonin and its receptors has been reported in human salivary glands. In these glands, the fine localization of melatonin in intracellular organelles, above all in mitochondria, remains to be explored comprehensively. Bioptic samples of parotid and submandibular glands were treated to search for melatonin using the immunogold staining method by transmission electron microscopy. Morphometric analysis was applied to micrographs. The results indicated that, both in parotid and submandibular glands mitochondria, a certain melatonin positivity was present. Within glandular cells, melatonin was less retrieved in mitochondria than in secretory granules; however, its presence in this organelle was clearly evident. Inside striated duct cells, melatonin staining in mitochondria was more prominent than in glandular cells. Our data provide an ultrastructural report on the presence of melatonin in mitochondria of human major salivary glands and represent a fundamental prerequisite for a better understanding of the melatonin role in this organelle.

摘要

激素褪黑素最初被认为仅由松果腺和肠嗜铬细胞合成,但如今在其他几种组织和器官中也观察到了其产生和分布。在人类唾液腺中,已经报道了褪黑素及其受体的超微结构定位。在这些腺体中,褪黑素在细胞内细胞器中的精细定位,尤其是在线粒体中的定位,仍有待全面探索。使用免疫胶体金染色法通过透射电子显微镜对腮腺和颌下腺的活检样本进行了褪黑素的检测。对显微镜照片进行了形态计量学分析。结果表明,在腮腺和颌下腺的线粒体中均存在一定程度的褪黑素阳性。在腺细胞内,褪黑素在分泌颗粒中的含量低于线粒体,但在该细胞器中其存在是显而易见的。在纹状导管细胞中,线粒体中的褪黑素染色比腺细胞更为明显。我们的数据提供了关于人主要唾液腺线粒体中褪黑素存在的超微结构报告,这是更好地理解褪黑素在该细胞器中作用的基本前提。

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