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原代培养新生大鼠肝细胞中细胞间连接和胆小管的超微结构特征

Ultrastructural characteristics of intercellular contacts and bile canaliculi in neonatal rat hepatocytes in primary culture.

作者信息

Kohno Y, Akiyoshi H, Fukunaga M, Shiraki K

机构信息

Department of Pediatrics, Faculty of Medicine, Tottori University, Yonago, Japan.

出版信息

Virchows Arch B Cell Pathol Incl Mol Pathol. 1993;63(5):317-24. doi: 10.1007/BF02899278.

Abstract

The ultrastructure of the cellular contacts and bile canaliculi was examined in cultured neonatal (day 5) rat hepatocytes to elucidate the development of cellular polarity. A new scanning electron microscopic technique for cultured hepatocytes allowed a view of cell-cell attachment and the entire cell surface, including the underside on plastic dishes. At 3 h after plating, neonatal hepatocytes were shown to be round, with loss of the preferential localization of cell organelles. After 6 h of culture, the cells had become oblong; they were aggregated in groups of several cells and the cellular contacts were not as rigid or as straight as those in adult hepatocytes. Transmission electron microscopy showed the biliary functional polarity to be like that in vivo. On the undersurfaces of adjacent neonatal hepatocytes a hemicanalicular structure lined with microvilli was found, which probably corresponds to the ultrastructure of bile canaliculi in vivo. However, no canaliculi or orifices of bile channels were found in adult hepatocytes. These results suggest that in neonatal rat hepatocytes the formation of tight rigid cellular contacts was suppressed. Modulation of cell membranes appeared on the undersurfaces of neonatal hepatocytes in early culture stages. The differences in the development of cellular polarity could be caused by the proliferating activity of neonatal hepatocytes.

摘要

为阐明细胞极性的发育过程,对培养的新生(5日龄)大鼠肝细胞的细胞连接和胆小管的超微结构进行了研究。一种用于培养肝细胞的新型扫描电子显微镜技术,能够观察细胞 - 细胞附着以及整个细胞表面,包括塑料培养皿上细胞的底面。接种后3小时,新生肝细胞呈圆形,细胞器失去了优先定位。培养6小时后,细胞变成椭圆形;它们聚集成几个细胞的群体,细胞连接不像成年肝细胞那样紧密或笔直。透射电子显微镜显示胆小管功能极性与体内相似。在相邻新生肝细胞的底面发现了一个衬有微绒毛的半胆小管结构,这可能与体内胆小管的超微结构相对应。然而,在成年肝细胞中未发现胆小管或胆管开口。这些结果表明,新生大鼠肝细胞中紧密刚性细胞连接的形成受到抑制。在培养早期阶段,新生肝细胞的底面出现了细胞膜的调制。细胞极性发育的差异可能是由新生肝细胞的增殖活性引起的。

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