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首页> 外文期刊>Journal of glaucoma >Trabecular meshwork and uveoscleral outflow models.
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Trabecular meshwork and uveoscleral outflow models.

机译:小梁网和葡萄膜巩膜流出模型。

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PURPOSE:: To describe current laboratory models used to study aqueous outflow. Because development of primary open angle glaucoma (POAG) is rare in animals, no animal model of POAG is available for laboratory study on the pathogenesis of this condition. This review will discuss the alternative models used in the laboratory to study aqueous outflow. METHODS:: This is a brief review of published techniques, with commentary upon advantages and limitations of each. RESULTS:: Whole eyes and anterior segments are useful in assessing aqueous outflow resistance and anatomical changes in the meshwork. They have a limited duration of viability. Cell cultures are less expensive, easier to obtain, provide more cells than in intact meshwork, and are excellent in studying cellular physiology. The artificial environment of cell culture, however, including the plastic dish or artificial substrate and also the requirement of serum supplements, may limit applicability. Modern understanding of cells, their interaction with the extracellular matrix, and sensitivity to the composition of culture media suggest that these laboratory models should be updated to more closely mimic the in vivo situation. CONCLUSION:: Outflow models are a useful beginning in the study of cellular physiology, cell-extracellular matrix interactions, and reactions of the whole meshwork. All have limitations, however; the development of an animal model of human POAG would be an ideal solution to many of the current limitations.
机译:目的::描述用于研究水流出的当前实验室模型。由于原发性开角型青光眼(POAG)的发生在动物中很少见,因此尚无可用于实验室研究该病发病机理的动物模型。这篇评论将讨论在实验室中研究水流出的替代模型。方法:这是对已发表技术的简要回顾,并评述了每种技术的优缺点。结果:全眼和前节可用于评估房水流出阻力和网状结构的解剖变化。它们的生存期有限。与完整的网格相比,细胞培养更便宜,更容易获得,提供更多的细胞,并且在研究细胞生理学方面非常出色。然而,细胞培养的人工环境,包括塑料皿或人工基质,以及对血清补充剂的要求,可能会限制其适用性。对细胞的现代理解,它们与细胞外基质的相互作用以及对培养基成分的敏感性表明,应更新这些实验室模型以更紧密地模仿体内情况。结论:流出模型是研究细胞生理学,细胞-细胞外基质相互作用以及整个网状结构反应的有用起点。但是都有局限性。建立人类POAG动物模型将是解决当前许多局限性的理想解决方案。

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