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雏鸡胚胎发育中的脾脏中网状纤维的形成。

Formation of reticular fibers in the developing spleen of the chick embryo.

作者信息

Fukuta K, Mochizuki K

出版信息

Arch Histol Jpn. 1982 May;45(2):181-9. doi: 10.1679/aohc.45.181.

Abstract

An electron microscope study was made to elucidate the manner in which reticular fibers form in the developing spleen of the chick embryo. On the 7th day of incubation, the splenic reticulum consisted of dendritic reticular cells without reticular fibers. From the 9th day onward, the intercellular gaps between processes of adjacent reticular cells were expanded, becoming occupied by fine flocculent materials. With the growth of the embryos, these materials were aggregated into felt-like bands, exhibiting the characteristics of mature reticular fibers. In the interstices of the reticulum, there appeared microfibrils of 8-30 nm in diameter. The reticular cells possessed numerous free ribosomes and polysomes, well-developed Golgi apparatuses, dilated rough-surfaced endoplasmic reticula, and many coated vesicles. The coated vesicles contained fine flocculent materials as presumable fiber precursors. The vesicles were enlarged as they approached the cell periphery, where they appeared to discharge their contents by reverse pinocytosis. some vesicles close to the cell membrane contained ruthenium red-positive materials which were considered to be glycosaminoglycan in nature and to compose the matrix of fibers. These materials also seemed to be secreted by reverse pinocytosis, being densely accumulated in the intercellular gaps. The differentiation of fibrous proteins into felt-like reticular fibers or striated microfibrils seems, therefore, to be intimately associated with the amount of glycosaminoglycan.

摘要

进行了一项电子显微镜研究,以阐明雏鸡胚胎发育中的脾脏中网状纤维形成的方式。在孵化第7天时,脾网状组织由没有网状纤维的树突状网状细胞组成。从第9天起,相邻网状细胞突起之间的细胞间隙扩大,被细小的絮状物质占据。随着胚胎的生长,这些物质聚集成毡状带,呈现出成熟网状纤维的特征。在网状组织的间隙中,出现了直径为8 - 30纳米的微原纤维。网状细胞拥有大量游离核糖体和多核糖体、发育良好的高尔基体、扩张的糙面内质网以及许多有被小泡。有被小泡含有细小的絮状物质,被认为是可能的纤维前体。当小泡靠近细胞周边时会增大,在那里它们似乎通过反向胞饮作用排出其内容物。一些靠近细胞膜的小泡含有钌红阳性物质,这些物质在本质上被认为是糖胺聚糖,构成纤维的基质。这些物质似乎也是通过反向胞饮作用分泌的,密集地积累在细胞间隙中。因此,纤维蛋白分化为毡状网状纤维或横纹微原纤维似乎与糖胺聚糖的量密切相关。

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