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人骨祖细胞的免疫选择和腺病毒基因调控:聚乳酸支架上的体内骨形成

Immunoselection and adenoviral genetic modulation of human osteoprogenitors: in vivo bone formation on PLA scaffold.

作者信息

Howard Daniel, Partridge Kris, Yang Xuebin, Clarke Nicholas M P, Okubo Yasunori, Bessho Kazuhisa, Howdle Steven M, Shakesheff Kevin M, Oreffo Richard O C

机构信息

University Orthopaedics, University of Southampton, SO16 6YD, Southampton, UK.

出版信息

Biochem Biophys Res Commun. 2002 Nov 29;299(2):208-15. doi: 10.1016/s0006-291x(02)02561-5.

Abstract

The aim of this study was to examine the potential of immunoselected genetically modified human osteoprogenitors to form bone in vivo on porous PLA scaffolds. Human osteoprogenitors from bone marrow were selected using the antibody STRO-1 utilising a magnetically activated cell separation system. The STRO-1(+) fraction isolated 7% of nucleated marrow cells and increased fibroblastic colony formation by 300% and alkaline phosphatase activity by 190% over unselected marrow cell cultures. To engineer bone tissue, STRO-1(+) culture-expanded cells were transduced with AxCAOBMP-2, an adenovirus carrying the human BMP-2 gene, injected into diffusion chambers containing porous PLA scaffolds, and implanted in vivo. After 11 weeks the presence of bone mineral was observed by X-ray analysis and confirmed for mineral by von Kossa, as well as bone matrix composition by Sirius red staining, birefringence, and type I collagen immunohistochemistry. Bone formation in vivo indicates the potential of using immunoselected progenitor cells and ex vivo gene transfer with biodegradable scaffolds, for the development of protocols for the treatment of a wide variety of musculo-skeletal disorders.

摘要

本研究的目的是检测经免疫筛选的转基因人骨祖细胞在多孔聚乳酸(PLA)支架上体内成骨的潜力。利用磁激活细胞分离系统,通过抗体STRO-1从骨髓中筛选出人骨祖细胞。与未筛选的骨髓细胞培养物相比,分离得到的STRO-1(+)组分占核化骨髓细胞的7%,成纤维细胞集落形成增加了300%,碱性磷酸酶活性增加了190%。为构建骨组织,用携带人骨形态发生蛋白-2(BMP-2)基因的腺病毒AxCAOBMP-2转导经STRO-1(+)培养扩增的细胞,将其注入含有多孔PLA支架的扩散小室,并植入体内。11周后,通过X射线分析观察到骨矿物质的存在,用冯·科萨(von Kossa)染色法证实矿物质的存在,并用天狼星红染色、双折射和I型胶原免疫组织化学法确定骨基质成分。体内骨形成表明,利用免疫筛选的祖细胞和可生物降解支架进行体外基因转移,有潜力开发出治疗多种肌肉骨骼疾病的方案。

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