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钙化软骨吸收的透射和扫描电子显微镜研究

Transmission and scanning electron microscope studies of calcified cartilage resorption.

作者信息

Savostin-Asling I, Asling C W

出版信息

Anat Rec. 1975 Nov;183(3):373-91. doi: 10.1002/ar.1091830303.

Abstract

The authors' previous report (Savostin-Asling and Asling, '73) demonstrated that Meckel's carilage is a favorable site for study of calcified cartilage resorption. In the present study the ultrastructural features at this resorption front have been examined by transmission and scanning electron microscopes (19-day rat retus). Multinucleated giant cells chondroclasts) dominated the erosion front. The many features which they showed in common with osteoclasts included abundant mitochondria, vacuolation, lysonsomes, sparsity of rough-sufaced endoplasmic reticulum, and deep infoldings at loci of contact with calcified matrix. Crumbling of matrix (with mineral crystals penetrating between these foldings) and fragmentation of collagen fibrils were also seen. The propensity of chondroclasts for spanning several opened lacunae provided special opportunity to demonstrate cell surface modifications in presence or absence of matrix contact. Amebiod processes extending into lacunae were seen by both transmission and scanning procedures; they were sometimes tipped with a veil of filamentous processes as small as 0.3 mum in diameter. Most hypertrophic chondrocytes. when released from lacunae, appeared to be disintegrating. However, in accord with previous evidence of their possible merger with chondroclasts (in light microscopic studies) there was also evidence for breakdown of cell walls between a chondroclast and a chondrocyte in intimate contact, with possibility of cytoplasmic continuity.

摘要

作者之前的报告(萨沃斯汀 - 阿斯林和阿斯林,1973年)表明,梅克尔软骨是研究钙化软骨吸收的理想部位。在本研究中,通过透射电子显微镜和扫描电子显微镜(19日龄大鼠胎儿)检查了该吸收前沿的超微结构特征。多核巨细胞(破软骨细胞)在侵蚀前沿占主导地位。它们与破骨细胞共有的许多特征包括丰富的线粒体、空泡化、溶酶体、糙面内质网稀少以及与钙化基质接触部位的深陷折叠。还可见基质破碎(矿物晶体穿透这些折叠之间)和胶原纤维断裂。破软骨细胞跨越几个开放腔隙的倾向为证明在有无基质接触情况下细胞表面的变化提供了特殊机会。通过透射和扫描程序均可见到延伸到腔隙中的阿米巴样突起;它们有时顶端带有直径小至0.3微米的丝状突起的面纱。大多数肥大软骨细胞从腔隙中释放出来时似乎正在解体。然而,与之前它们可能与破软骨细胞合并的证据(在光学显微镜研究中)一致,也有证据表明紧密接触的破软骨细胞和软骨细胞之间的细胞壁破裂,存在细胞质连续的可能性。

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