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An ultrastructural study of the tracheal epithelium of the guinea-pig with special reference to the ciliary structure.

机译:豚鼠气管上皮的超微结构研究特别涉及睫状结构。

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摘要

The ultrastructure of the normal guinea-pig tracheal mucosa has been characterised by transmission and scanning electron microscopy. The pseudostratified epithelium was composed of basal cells, goblet cells, ciliated cells and intermediate cells. Interepithelial granulocytes and lymphocytes were occasionally seen. Regional variations in the distribution of goblet cells and ciliated cells were noted, and the continual turnover of the epithelial cells was manifested in the findings of proliferating, differentiating and exfoliating cells. The function of the numerous microvilli extending into the lumen remains unknown, although the bundles of actin filaments in their core and the anionic properties of their surface suggest a dual function, as motile processes and as sites of re-absorption of excess fluid. Numerous microtubules criss-cross the apex of the ciliated cell. It is suggested that they are an integrated part of the cytoskeleton and/or are involved in some kind of intracytoplasmic transport. Other microtubules are attached to the basal feet and penetrate deep into the cytoplasm; their function has yet to be elucidated. A possible role may be that they, alone or in conjunction with the microfilaments (actin) of the cell cytoplasm, constitute a contractile mechanism responsible for the synchronous beating of the cilia in a given cell. Only in rare cases have the basal bodies developed striated rootlets. Morphological evidence from the current study, that the ciliary crown is in physical contact with the superficial mucus layer, supports the hypothesis that this structure serves as a special device for pushing the mucus forward.
机译:正常豚鼠气管粘膜的超微结构已通过透射和扫描电子显微镜表征。假复层上皮由基底细胞,杯状细胞,纤毛细胞和中间细胞组成。偶尔可见上皮间质细胞和淋巴细胞。注意到杯状细胞和纤毛细胞分布的区域差异,并且在增生,分化和剥落细胞的发现中表现出上皮细胞的连续更新。延伸到管腔的许多微绒毛的功能仍是未知的,尽管肌动蛋白丝束在其核心和其表面的阴离子性质表明其具有双重功能,既作为运动过程又作为多余液体的再吸收位点。许多微管纵横交错地横穿纤毛细胞的顶端。建议它们是细胞骨架的组成部分和/或参与某种胞质内运输。其他微管附着在基足上并深入到细胞质中。它们的功能尚未阐明。可能的作用可能是它们单独或与细胞质的微丝(肌动蛋白)结合,构成负责特定细胞中纤毛同步跳动的收缩机制。仅在极少数情况下,基体才会发育成条纹状的小根。根据当前研究的形态学证据,睫状冠与表层粘液层物理接触,支持以下假说:该结构可作为推动粘液前进的特殊装置。

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