Institute of Medical and Biological Engineering University of Leeds, Leeds, The United Kingdom.
Curr Stem Cell Res Ther. 2012 Sep;7(5):336-46. doi: 10.2174/157488812802481436.
A growing array of synthetic bone regeneration scaffolds has been in use over the last century. These scaffolds aim to provide a three dimensional substrate for bone cells to populate on and to function appropriately. The majority of commercially-available scaffolds are based on calcium sulphate salts, calcium phosphate salts, or composites of the two. The mechanical and biological properties of these scaffolds are a result of the properties of the constituent materials and their ratio in the composite. This review addresses the mechanical and biological characteristics and provides an up-to-date summary of the clinical data available about the use of these calcium-based scaffolds. It will also assess the benefit of using stem cell technology along with this type of scaffolds. This article links between the basic science evidence and the clinical outcomes and details the commercially-available options.
在过去的一个世纪中,越来越多的合成骨再生支架被应用于临床。这些支架旨在为骨细胞提供一个三维的基质,使其能够在上面生长并发挥适当的功能。目前大多数市售的支架基于硫酸钙盐、磷酸钙盐或两者的复合材料。这些支架的机械和生物学特性是由组成材料的特性及其在复合材料中的比例决定的。本文综述了这些基于钙的支架的机械和生物学特性,并对其临床应用数据进行了最新总结。同时还评估了在这种支架中使用干细胞技术的益处。本文将基础科学证据与临床结果联系起来,并详细介绍了市售的各种选择。