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肠绒毛的电子显微镜研究。I. 禁食动物。

An electron microscopic study of the intestinal villus. I. The fasting animal.

作者信息

PALAY S L, KARLIN L J

出版信息

J Biophys Biochem Cytol. 1959 May 25;5(3):363-72. doi: 10.1083/jcb.5.3.363.

Abstract

The structure of the intestinal villus of the rat was studied in thin sections of tissue fixed in buffered osmium tetroxide and embedded in methacrylate. The simple columnar epithelium investing the villus is surmounted by a striated border consisting of slender projections of the cell surface. These microvilli are arranged in almost crystalline, hexagonal array, and increase the apical surface area of the cell by a factor of 24. The core of each microvillus is filled with fine fibrils which arise from the filamentous substance of the terminal web underlying the striated border. Each microvillus is covered by a tubular extension of the plasma membrane of the epithelial cell. Pinocytotic vesicles originating from the plasma membrane occur at the bases of the intermicrovillous spaces. The nucleus, mitochondria, and the endoplasmic reticulum of the epithelial cell display no unusual features. Small bits of ergastoplasm occur in the apical cytoplasm. A thin basement membrane separates the epithelium from the lamina propria which consists of vessels, nerves, and numerous lymphocytes, eosinophiles, mast cells, plasma cells, smooth muscle fibers, and macrophages suspended in a delicate stroma of fibroblasts and collagen fibers. Intercellular fat droplets often occur in this stroma, even in animals fasted for 40 hours. The blood capillaries are distinguished by their extremely attenuated, fenestrated endothelial cells. The lacteal has a thicker endothelium which, although not fenestrated, appears to have significant interruptions, especially at the margins between neighboring lining cells. Strands of smooth muscle always accompany the lacteal but do not form an integral part of its wall. Unmyelinated nerves, many of which are too small to be distinguished with the light microscope, course through the lamina propria in association with the vessels. The nerve fibers evidently do not cross the basement membrane into the epithelium. Neuromuscular junctions or other terminal apparatus were not found.

摘要

在经缓冲四氧化锇固定并包埋于甲基丙烯酸酯中的大鼠组织薄片中,研究了大鼠肠绒毛的结构。覆盖绒毛的单层柱状上皮由细胞表面的细长突起构成的纹状缘覆盖。这些微绒毛排列成几乎呈晶体状的六边形阵列,使细胞的顶端表面积增加了24倍。每个微绒毛的核心充满了细纤维,这些细纤维起源于纹状缘下方终末网的丝状物质。每个微绒毛都被上皮细胞质膜的管状延伸所覆盖。源自质膜的胞饮小泡出现在微绒毛间隙的基部。上皮细胞的细胞核、线粒体和内质网没有异常特征。在顶端细胞质中有少量的动质。一层薄的基底膜将上皮与固有层分隔开,固有层由血管、神经以及许多淋巴细胞、嗜酸性粒细胞、肥大细胞、浆细胞、平滑肌纤维和巨噬细胞组成,它们悬浮在由成纤维细胞和胶原纤维构成的精细基质中。即使在禁食40小时的动物中,这种基质中也经常出现细胞间脂肪滴。血毛细血管以其极度变薄且有窗孔的内皮细胞为特征。中央乳糜管有较厚的内皮,虽然没有窗孔,但似乎有明显的间断,尤其是在相邻衬里细胞之间的边缘处。平滑肌束总是伴随中央乳糜管,但不构成其管壁的组成部分。无髓神经,其中许多太小而无法用光学显微镜分辨,与血管一起穿过固有层。神经纤维显然不会穿过基底膜进入上皮。未发现神经肌肉接头或其他终末装置。

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