Dawson Jonathan I, Oreffo Richard O C
Bone and Joint Research Group, Centre for Human Development, Stem Cells and Regeneration, Developmental Origins of Health and Disease, Institute of Developmental Sciences, University of Southampton, Southampton SO16 6YD, UK.
Arch Biochem Biophys. 2008 May 15;473(2):124-31. doi: 10.1016/j.abb.2008.03.024. Epub 2008 Mar 26.
Advances in our understanding of skeletal stem cells and their role in bone development and repair, offer the potential to open new frontiers in bone regeneration. Tissue engineering seeks to harness the regenerative capacity innate to bone for the replacement of tissue lost or damaged through a broad range of conditions associated with an increasingly aged population. The strategy entails ex vivo expansion of multipotential populations followed by delivery to the site of damage on dynamically durable-biodegradable three-dimensional structures which provide the requisite extracellular microenvironment for stem cell driven tissue development. This review will examine bone stem cell biology, and current advances in skeletal tissue engineering through the enhancement and marrying of biologically informed and clinically relevant strategies.
我们对骨骼干细胞及其在骨骼发育和修复中作用的理解取得了进展,这为开辟骨再生的新领域提供了潜力。组织工程旨在利用骨骼固有的再生能力,以替代因与人口老龄化日益相关的广泛病症而丧失或受损的组织。该策略需要对多能细胞群体进行体外扩增,然后将其递送至损伤部位,置于动态耐用的可生物降解三维结构上,这些结构为干细胞驱动的组织发育提供必要的细胞外微环境。本综述将通过加强和结合具有生物学依据且与临床相关的策略,来探讨骨干细胞生物学以及骨骼组织工程的当前进展。