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生长因子和间充质干细胞在骨科中的应用。

The use of growth factors and mesenchymal stem cells in orthopaedics.

作者信息

Kanitkar Medha, Tailor Hiteshkumar D, Khan Wasim S

机构信息

University College London Medical School, Gower Street, London WC1E 6BT, UK.

出版信息

Open Orthop J. 2011;5 Suppl 2:271-5. doi: 10.2174/1874325001105010271. Epub 2011 Jul 28.

Abstract

Stem cell therapy is an exciting and upcoming branch of tissue engineering with application in the field of orthopaedics. The most commonly used type of stem cells, mesenchymal stem cells (MSCs), can be easily isolated from bone marrow or synovium and cultured in vitro. Newer techniques using tissue engineering to regenerate musculoskeletal tissue by using biomimetic materials are now being studied. These osteoconductive three dimensional constructs seeded with MSCs are highly porous, biodegradable and biomechanically stable scaffolds which do not evoke an immunogenic host cell response. Research has shown the importance of growth factors in guiding and modulating the differentiation of MSCs in order to obtain the required cell type. Gene-based delivery systems have aided the delivery of sustained quantities of these growth factors. The evidence from growth factor enhanced tissue engineering studies for tissue healing looks very positive. This is a multi-disciplinary approach that integrates molecular, biochemical and clinical techniques with developmental and engineering processes. Initial studies indicate an immense potential for cell based strategies to enhance current orthopaedic approaches in skeletal tissue reconstruction. Ultimately, there is a need for randomised controlled trials on human populations to apply these findings to a clinical setting. Nevertheless, stem cell based tissue engineering in orthopaedics shows a promising future.

摘要

干细胞疗法是组织工程中一个令人兴奋且新兴的分支,在骨科领域有应用。最常用的干细胞类型,即间充质干细胞(MSCs),可以很容易地从骨髓或滑膜中分离出来并在体外培养。目前正在研究利用组织工程通过使用仿生材料来再生肌肉骨骼组织的新技术。这些接种了间充质干细胞的具有骨传导性的三维构建体是高度多孔、可生物降解且生物力学稳定的支架,不会引发免疫原性宿主细胞反应。研究表明生长因子在引导和调节间充质干细胞分化以获得所需细胞类型方面的重要性。基于基因的递送系统有助于持续递送这些生长因子。生长因子增强组织工程促进组织愈合的研究证据看起来非常积极。这是一种将分子、生化和临床技术与发育和工程过程相结合的多学科方法。初步研究表明基于细胞的策略在增强当前骨科骨骼组织重建方法方面具有巨大潜力。最终,需要对人群进行随机对照试验,以便将这些发现应用于临床环境。尽管如此,骨科中基于干细胞的组织工程显示出有前途的未来。

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本文引用的文献

2
Bone marrow stromal cells with a combined expression of BMP-2 and VEGF-165 enhanced bone regeneration.
Biomed Mater. 2011 Feb;6(1):015013. doi: 10.1088/1748-6041/6/1/015013. Epub 2011 Jan 21.
3
Gene delivery of TGF-β1 induces arthrofibrosis and chondrometaplasia of synovium in vivo.
Lab Invest. 2010 Nov;90(11):1615-27. doi: 10.1038/labinvest.2010.145. Epub 2010 Aug 9.
4
Application of bone morphogenetic proteins to femoral non-unions: a 4-year multicentre experience.
Injury. 2009 Dec;40 Suppl 3:S54-61. doi: 10.1016/S0020-1383(09)70013-0.
5
Use of genetically modified muscle and fat grafts to repair defects in bone and cartilage.
Eur Cell Mater. 2009 Dec 31;18:96-111. doi: 10.22203/ecm.v018a09.

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