Rahaman Mohamed N, Mao Jeremy J
Department of Bioengineering, University of Illinois at Chicago, 851 S. Morgan St., Chicago, Illinois 60607, USA.
Biotechnol Bioeng. 2005 Aug 5;91(3):261-84. doi: 10.1002/bit.20292.
A major task of contemporary medicine and dentistry is restoration of human tissues and organs lost to diseases and trauma. A decade-long intense effort in tissue engineering has provided the proof of concept for cell-based replacement of a number of individual tissues such as the skin, cartilage, and bone. Recent work in stem cell-based in vivo restoration of multiple tissue phenotypes by composite tissue constructs such as osteochondral and fibro-osseous grafts has demonstrated probable clues for bioengineered replacement of complex anatomical structures consisting of multiple cell lineages such as the synovial joint condyle, tendon-bone complex, bone-ligament junction, and the periodontium. Of greater significance is a tangible contribution by current attempts to restore the structure and function of multitissue structures using cell-based composite tissue constructs to the understanding of ultimate biological restoration of complex organs such as the kidney or liver. The present review focuses on recent advances in stem cell-based composite tissue constructs and attempts to outline challenges for the manipulation of stem cells in tailored biomaterials in alignment with approaches potentially utilizable in regenerative medicine of human tissues and organs.
当代医学和牙科学的一项主要任务是修复因疾病和创伤而受损的人体组织和器官。组织工程领域长达十年的高强度努力已为基于细胞的多种个体组织(如皮肤、软骨和骨骼)替代提供了概念验证。最近,通过复合组织构建体(如骨软骨和纤维骨移植物)在体内基于干细胞恢复多种组织表型的研究,为生物工程替代由多种细胞谱系组成的复杂解剖结构(如滑膜关节髁、肌腱-骨复合体、骨-韧带连接和牙周组织)提供了可能的线索。更重要的是,当前使用基于细胞的复合组织构建体恢复多组织结构的结构和功能的尝试,对理解诸如肾脏或肝脏等复杂器官的最终生物修复做出了切实贡献。本综述重点关注基于干细胞的复合组织构建体的最新进展,并试图概述在定制生物材料中操纵干细胞的挑战,以及与人体组织和器官再生医学中可能采用的方法相一致的方法。