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盲鼹鼠(Spalax ehrenbergi)肥大细胞分泌颗粒的结构。

The structure of mast cell secretory granules in the blind mole rat (Spalax ehrenbergi).

作者信息

Amihai D, Trachtenberg S, Terkel J, Hammel I

机构信息

Department of Pathology, Sackler Faculty of Medicine, Tel Aviv University, Tel Aviv 69978, Israel.

出版信息

J Struct Biol. 2001 Nov;136(2):96-100. doi: 10.1006/jsbi.2001.4429.

Abstract

Eosinophils, basophils, and mast cells produce and secrete active substances whose role is to attack invading parasites and protect the host. In this study we use morphometric methods to study mast cells in the blind mole rat (Spalax ehrenbergi). The subterranean and solitary way of life of this species has led to the evolutionary development of special anatomical, morphological, behavioral, and physiological adaptations. Because of its particular lifestyle, the mole rat is less exposed to parasites than other rodents. This could provide a unique model for research into the pathobiology of mast cells. The paracrystalline structure of the mast cell granule content is composed of parallel plates. Diffraction analysis of electron micrographs of thin sections of araldite-embedded tissues indicated that each crystal line plate is a periodic array of parallelograms. The crystal unit cell volume is approximately 930 nm(3), suggesting that each unit cell is composed of one heparin molecule and one to three additional adsorbed proteins. Morphometric data show that characteristics of the secretory granules of mast cells of the blind mole rat resemble those of other rodents. The mast cell unit granule volume in the present study was calculated to be 0.055 microm(3), similar to that of rat peritoneal mast cells.

摘要

嗜酸性粒细胞、嗜碱性粒细胞和肥大细胞产生并分泌活性物质,其作用是攻击入侵的寄生虫并保护宿主。在本研究中,我们使用形态测量方法来研究盲鼹鼠(Spalax ehrenbergi)中的肥大细胞。该物种的地下独居生活方式导致了特殊的解剖学、形态学、行为学和生理学适应性的进化发展。由于其特殊的生活方式,鼹鼠比其他啮齿动物更少接触寄生虫。这可能为肥大细胞病理生物学研究提供一个独特的模型。肥大细胞颗粒内容物的准晶体结构由平行板组成。对用环氧树脂包埋组织的薄切片的电子显微照片进行衍射分析表明,每个晶体线板是平行四边形的周期性阵列。晶体单位晶胞体积约为930 nm³,表明每个单位晶胞由一个肝素分子和一到三种额外吸附的蛋白质组成。形态测量数据表明,盲鼹鼠肥大细胞分泌颗粒的特征与其他啮齿动物相似。本研究中肥大细胞单位颗粒体积计算为0.055 µm³,与大鼠腹膜肥大细胞相似。

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