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大鼠肠黏膜内收缩细胞网络的形态学和生化证据。

Morphologic and biochemical evidence for a contractile cell network within the rat intestinal mucosa.

作者信息

Joyce N C, Haire M F, Palade G E

出版信息

Gastroenterology. 1987 Jan;92(1):68-81. doi: 10.1016/0016-5085(87)90841-9.

Abstract

Subepithelial and pericryptal fibroblastlike cells form a two-dimensional network immediately subjacent to the epithelial basal lamina in the small intestine and colon in several mammalian species. Stellate-shaped cells with similar, but not identical characteristics, form a three-dimensional network deep within the villar lamina propria. Electron microscopic studies indicate that these cells contain a putative contractile apparatus, are attached to each other and to apparently organized elements of the extracellular matrix by typical adhesive devices, and form gap junctions with each other. Comparative in situ immunoperoxidase localization studies document the presence in these cells of four contraction-associated proteins (smooth muscle isotropomyosin, cyclic guanosine monophosphate-dependent protein kinase, both nonmuscle and smooth muscle isomyosin, and actin) in amounts generally greater than those found in connective tissue fibroblasts, but less than in smooth muscle cells. Taken together, these results strongly suggest a smooth muscle-like, contractile function for these cells and indicate that this cellular network may provide a supportive tonus for the epithelium, as well as provide the force needed for active movement of the villus, expulsion of crypt secretion products, and propulsion of absorption products in the lamina propria, the microvasculature, and lacteals of the intestinal villus.

摘要

在几种哺乳动物的小肠和结肠中,上皮下和隐窝周围的成纤维细胞样细胞在紧邻上皮基底层的位置形成一个二维网络。具有相似但不完全相同特征的星状细胞在绒毛固有层深处形成一个三维网络。电子显微镜研究表明,这些细胞含有一个假定的收缩装置,通过典型的粘附装置相互连接,并与细胞外基质中明显有组织的成分相连,且它们之间形成缝隙连接。比较性原位免疫过氧化物酶定位研究证明,这些细胞中存在四种与收缩相关的蛋白质(平滑肌等向肌球蛋白、环磷酸鸟苷依赖性蛋白激酶、非肌肉和平滑肌异肌球蛋白以及肌动蛋白),其含量通常高于结缔组织成纤维细胞中的含量,但低于平滑肌细胞中的含量。综合这些结果强烈表明这些细胞具有类似平滑肌的收缩功能,并表明这个细胞网络可能为上皮提供支持性张力,以及为绒毛的主动运动、隐窝分泌产物的排出和固有层、小肠绒毛的微脉管系统和乳糜管中吸收产物的推进提供所需的力量。

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