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骨组织工程与脊柱融合:通过结合骨祖细胞和支架构建混合结构的潜力。

Bone tissue engineering and spinal fusion: the potential of hybrid constructs by combining osteoprogenitor cells and scaffolds.

作者信息

Kruyt M C, van Gaalen S M, Oner F C, Verbout A J, de Bruijn J D, Dhert W J A

机构信息

Department of Orthopaedics, University Medical Center Utrecht, PO Box 85500, 3508 GA, Utrecht, Netherlands.

出版信息

Biomaterials. 2004 Apr;25(9):1463-73. doi: 10.1016/s0142-9612(03)00490-3.

Abstract

In this paper, we discuss the current knowledge and achievements on bone tissue engineering with regard to spinal fusion and highlight the technique that employs hybrid constructs of porous scaffolds with bone marrow stromal cells. These hybrid constructs potentially function in a way comparable to the present golden standard, the autologous bone graft, which comprises besides many other factors, a construct of an optimal biological scaffold with osteoprogenitor cells. However, little is known about the role of the cells in autologous grafts, and especially survival of these cells is questionable. Therefore, more research will be needed to establish a level of functioning of hybrid constructs to equal the autologous bone graft. Spinal fusion models are relevant because of the increasing demand for graft material related to this procedure. Furthermore, they offer a very challenging environment to further investigate the technique. Anterior and posterolateral animal models of spinal fusion are discussed together with recommendations on design and assessment of outcome parameters.

摘要

在本文中,我们讨论了骨组织工程在脊柱融合方面的现有知识和成果,并重点介绍了采用多孔支架与骨髓基质细胞的混合构建体的技术。这些混合构建体的潜在功能与目前的金标准——自体骨移植相当,自体骨移植除了许多其他因素外,还包括一个由具有成骨祖细胞的最佳生物支架组成的构建体。然而,对于自体移植物中细胞的作用知之甚少,尤其是这些细胞的存活情况值得怀疑。因此,需要更多的研究来确定混合构建体的功能水平,使其等同于自体骨移植。脊柱融合模型具有相关性,因为与该手术相关的移植材料需求不断增加。此外,它们为进一步研究该技术提供了极具挑战性的环境。本文讨论了脊柱融合的前侧和后外侧动物模型,并给出了关于设计和结果参数评估的建议。

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