首页> 外文期刊>In Vitro Cellular and Developmental Biology. Animal: Journal of the Tissues Culture Association >Review-progress in concept and practice of growing anchorage-dependent mammalian cells in three dimension.
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Review-progress in concept and practice of growing anchorage-dependent mammalian cells in three dimension.

机译:在三维上生长锚固依赖性哺乳动物细胞的概念和实践的审查进展。

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摘要

Tissue culture has played a major role in the rapid advances made in medical science in the past 50 yr. The full potential of the technique, however, is limited by the fact that growth of cells is usually restricted to a monolayer accompanied by major decreases in many of their tissue-specific functions. This has been shown to be due, in large part, to the inadequate oxygenation of cells growing in tissue culture dishes. Studies that show that the high charge density and rigidity of the plastic and glass surfaces used for culture are also major factors limiting growth of cells to a monolayer, are reviewed. A new culture system has been developed in which cells are grown on substrata made using perfluorocarbons (PFCs) coated with collagen type 1 and other adhesive factors. Perfluorocarbons have a much higher solubility for oxygen than water and have been used as oxygen delivery systems to protect cells from hypoxia. These new PFC-based substrata can provide both the optimal level of oxygen cells need tomaintain differentiated functions and the flexible and weaker type of adhesion that allows cells to round up, interact with each other, and when provided with adequate nutritional support, to grow in three dimension.
机译:在过去的50年中,组织培养在医学科学的快速发展中发挥了重要作用。然而,该技术的全部潜力受到以下事实的限制:细胞的生长通常被限制为单层,并伴随着许多组织特异性功能的大幅下降。已经表明,这在很大程度上是由于组织培养皿中生长的细胞氧合不足所致。研究表明,用于培养的塑料和玻璃表面的高电荷密度和刚性也是限制细胞向单层生长的主要因素。已经开发了一种新的培养系统,其中的细胞可以在基质上生长,该基质使用涂有1型胶原蛋白和其他粘附因子的全氟化碳(PFC)制成。全氟化碳对氧气的溶解度比水高得多,已被用作氧气输送系统,以保护细胞免受缺氧影响。这些新的基于PFC的基质既可以提供维持分化功能所需的氧气细胞的最佳水平,又可以提供柔韧性和较弱的粘附力类型,从而使细胞能够聚拢,彼此相互作用,并在提供足够的营养支持时得以生长三维。

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