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Supercritical fluids in biomedical and tissue engineering applications: a review

机译:超临界流体在生物医学和组织工程中的应用:综述

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Over the past several years, the definition of a scaffold for tissue engineering has changed dramatically, from a material that acts only as an inert structural support for cell attachment to serving as a more complex and dynamic environment for tissue development. This paper is a review on the existing and on the new emerging techniques based on supercritical fluid technology for the preparation of scaffolds and particles for tissue engineering applications. Supercritical fluid technology has already proven to be feasible for many pharmaceutical applications and is now emerging as an alternative to conventional materials' processing methods for the preparation of three-dimensional structures and injectable particles suitable to be used in regenerative medicine. The basic principles underlying each technique are here presented as well as the advantages and disadvantages of each process. The state of the art is reviewed and the major conclusions of the studies reported in the literature are discussed.
机译:在过去的几年中,用于组织工程的支架的定义发生了巨大变化,从仅用作细胞附着的惰性结构支持的材料到为组织发育提供更为复杂和动态的环境。本文是对基于超临界流体技术的用于组织工程应用的支架和颗粒制备的现有技术和新兴技术的综述。超临界流体技术已被证明对于许多制药应用都是可行的,并且正在替代传统材料的加工方法,以制备适用于再生医学的三维结构和可注射颗粒。这里介绍了每种技术的基本原理,以及每种方法的优缺点。回顾了现有技术,并讨论了文献报道的研究的主要结论。

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