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肺泡上皮之上:表面活性剂与糖萼。

On Top of the Alveolar Epithelium: Surfactant and the Glycocalyx.

机构信息

Institute of Functional Anatomy, Charité-Universitätsmedizin Berlin, 10117 Berlin, Germany.

German Center for Lung Research (DZL), 10117 Berlin, Germany.

出版信息

Int J Mol Sci. 2020 Apr 27;21(9):3075. doi: 10.3390/ijms21093075.

Abstract

Gas exchange in the lung takes place via the air-blood barrier in the septal walls of alveoli. The tissue elements that oxygen molecules have to cross are the alveolar epithelium, the interstitium and the capillary endothelium. The epithelium that lines the alveolar surface is covered by a thin and continuous liquid lining layer. Pulmonary surfactant acts at this air-liquid interface. By virtue of its biophysical and immunomodulatory functions, surfactant keeps alveoli open, dry and clean. What needs to be added to this picture is the glycocalyx of the alveolar epithelium. Here, we briefly review what is known about this glycocalyx and how it can be visualized using electron microscopy. The application of colloidal thorium dioxide as a staining agent reveals differences in the staining pattern between type I and type II alveolar epithelial cells and shows close associations of the glycocalyx with intraalveolar surfactant subtypes such as tubular myelin. These morphological findings indicate that specific spatial interactions between components of the surfactant system and those of the alveolar epithelial glycocalyx exist which may contribute to the maintenance of alveolar homeostasis, in particular to alveolar micromechanics, to the functional integrity of the air-blood barrier, to the regulation of the thickness and viscosity of the alveolar lining layer, and to the defence against inhaled pathogens. Exploring the alveolar epithelial glycocalyx in conjunction with the surfactant system opens novel physiological perspectives of potential clinical relevance for future research.

摘要

气体在肺部的交换通过肺泡壁的气-血屏障进行。氧气分子必须穿过的组织元素是肺泡上皮、间质和毛细血管内皮。衬在肺泡表面的上皮被一层薄而连续的液体衬里层所覆盖。肺表面活性物质在这个气-液界面发挥作用。由于其生物物理和免疫调节功能,表面活性物质使肺泡保持开放、干燥和清洁。需要补充到这个图景中的是肺泡上皮的糖萼。在这里,我们简要回顾一下已知的关于糖萼的知识,以及如何使用电子显微镜对其进行可视化。胶体二氧化钍作为一种染色剂的应用揭示了 I 型和 II 型肺泡上皮细胞之间在染色模式上的差异,并显示了糖萼与肺泡内表面活性物质亚型(如管状髓磷脂)之间的密切关联。这些形态学发现表明,表面活性物质系统的成分与肺泡上皮糖萼的成分之间存在特定的空间相互作用,这可能有助于维持肺泡内稳态,特别是肺泡微力学、气-血屏障的功能完整性、肺泡衬里层的厚度和粘度的调节,以及对吸入病原体的防御。结合表面活性物质系统探索肺泡上皮糖萼,为未来的研究提供了具有潜在临床相关性的新的生理视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6b4/7246550/c2f5407bb587/ijms-21-03075-g001.jpg

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