Porous silicon and related composites as functional tissue engineering scaffolds

J. Coffer
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引用次数: 2

Abstract

Abstract: This chapter describes the fundamental properties of porous silicon (PSi) that make it an appealing choice for use as a therapeutic scaffold in the field of tissue engineering. We begin with a discussion of the unique ability of the mesoporous form of this material to be resorbed in vivo, followed by the tunability of its degradation kinetics through surface chemistry. Practical manipulation of the PSi is made possible by formulation with appropriate polymers, and representative in vitro/in vivo studies of these composites in the areas of orthopedics are subsequently presented. Finally, we conclude with a presentation of data suggesting the possible future uses of PSi as a ‘smart’ biomaterial in the field of orthopedic applications and opportunities in ophthalmological tissue engineering.
多孔硅及其复合材料作为功能性组织工程支架
摘要:本章描述了多孔硅(PSi)的基本特性,使其成为组织工程领域治疗性支架的一个有吸引力的选择。我们首先讨论了这种材料的介孔形式在体内被吸收的独特能力,其次是通过表面化学对其降解动力学的可调性。PSi的实际操作可以通过适当的聚合物配方来实现,这些复合材料在骨科领域的代表性体外/体内研究随后被提出。最后,我们总结了一组数据,表明PSi作为一种“智能”生物材料在骨科应用领域的潜在未来用途,以及在眼科组织工程中的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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