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Microsphere-Based Scaffolds in Regenerative Engineering
Annual Review of Biomedical Engineering ( IF 12.8 ) Pub Date : 2017-06-20 00:00:00 , DOI: 10.1146/annurev-bioeng-071516-044712
Vineet Gupta 1 , Yusuf Khan 2, 3, 4 , Cory J. Berkland 1, 5 , Cato T. Laurencin 2, 3, 4 , Michael S. Detamore 6
Affiliation  

Microspheres have long been used in drug delivery applications because of their controlled release capabilities. They have increasingly served as the fundamental building block for fabricating scaffolds for regenerative engineering because of their ability to provide a porous network, offer high-resolution control over spatial organization, and deliver growth factors/drugs and/or nanophase materials. Because they provide physicochemical gradients via spatiotemporal release of bioactive factors and nanophase ceramics, microspheres are a desirable tool for engineering complex tissues and biological interfaces. In this review we describe various methods for microsphere fabrication and sintering, and elucidate how these methods influence both micro- and macroscopic scaffold properties, with a special focus on the nature of sintering. Furthermore, we review key applications of microsphere-based scaffolds in regenerating various tissues. We hope to inspire researchers to join a growing community of investigators using microspheres as tissue engineering scaffolds so that their full potential in regenerative engineering may be realized.

中文翻译:


再生工程中基于微球的支架

微球由于其控释功能而长期用于药物递送应用。由于它们具有提供多孔网络,对空间组织提供高分辨率控制并提供生长因子/药物和/或纳米相材料的能力,它们已越来越成为制造用于再生工程的支架的基本构件。因为它们通过时空释放生物活性因子和纳米相陶瓷提供理化梯度,所以微球是用于工程化复杂组织和生物界面的理想工具。在这篇综述中,我们描述了用于微球制造和烧结的各种方法,并阐明了这些方法如何影响微观和宏观的支架性能,并特别关注烧结的性质。此外,我们回顾了基于微球的支架在再生各种组织中的关键应用。我们希望激发研究人员加入使用微球作为组织工程支架的研究者社区,从而发挥其在再生工程中的全部潜力。

更新日期:2017-06-20
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