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Processing of Materials for Regenerative Medicine Using Supercritical Fluid Technology

机译:使用超临界流体技术处理再生医学材料

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摘要

The increase in the world demand of bone and cartilage replacement therapies urges the development of advanced synthetic scaffolds for regenerative purposes, not only providing mechanical support for tissue formation, but also promoting and guiding the tissue growth. Conventional manufacturing techniques have severe restrictions for designing these upgraded scaffolds, namely, regarding the use of organic solvents, shearing forces, and high operating temperatures. In this context, the use of supercritical fluid technology has emerged as an attractive solution to design solvent-free scaffolds and ingredients for scaffolds under mild processing conditions. The state-of-the-art on the technological endeavors for scaffold production using supercritical fluids is presented in this work with a critical review on the key processing parameters as well as the main advantages and limitations of each technique. A special stress is focused on the strategies suitable for the incorporation of bioactive agents (drugs, bioactive glasses, and growth factors) and the in vitro and in vivo performance of supercritical CO2-processed scaffolds.
机译:世界对骨和软骨替代疗法的需求的增加促使用于再生目的的高级合成支架的发展,不仅为组织形成提供机械支持,而且促进和引导组织生长。常规的制造技术对于设计这些升级的支架具有严格的限制,即关于有机溶剂的使用,剪切力和高的操作温度。在这种情况下,使用超临界流体技术已经成为一种有吸引力的解决方案,可以在温和的加工条件下设计无溶剂的脚手架和脚手架成分。在这项工作中介绍了有关使用超临界流体生产脚手架的最新技术成果,并对关键工艺参数以及每种技术的主要优点和局限性进行了严格审查。特别强调的重点是适合纳入生物活性剂(药物,生物活性玻璃和生长因子)的策略以及超临界CO2处理的支架的体外和体内性能。

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