首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Autologous bone marrow stromal cells loaded onto porous hydroxyapatite ceramic accelerate bone repair in critical-size defects of sheep long bones.
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Autologous bone marrow stromal cells loaded onto porous hydroxyapatite ceramic accelerate bone repair in critical-size defects of sheep long bones.

机译:装载在多孔羟基磷灰石陶瓷上的自体骨髓基质细胞可加速绵羊长骨关键尺寸缺损的骨修复。

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摘要

The ability of marrow-derived osteoprogenitor cells to promote repair of critical-size tibial gaps upon autologous transplantation on a hydroxyapatite ceramic (HAC) carrier was tested in a sheep model. Conditions for in vitro expansion of sheep bone marrow stromal cells (BMSC) were established and the osteogenic potential of the expanded cells was validated. Ectopic implantation of sheep BMSC in immunocompromised mice led to extensive bone formation. When used to repair tibial gaps in sheep, cell-loaded implants (n = 2) conducted a far more extensive bone formation than did cell-free HAC cylinders (n = 2) over a 2-month period. In cell-loaded implants, bone formation was found to occur both within the internal macropore space and around the HAC cylinder while in control cell-free implants, bone formation was limited mostly to the outer surface and was not observed in most of the inner pores. As tested in an indentation assay, the stiffness of the complex HAC-bone material was found to be higher in cell-loaded implants compared to controls. Our pilot study on a limited number of large-sized animals suggests that the use of autologous BMSC in conjunction with HAC-based carriers results in faster bone repair compared to HAC alone. Potentially this combination could be used clinically in the treatment of extensive long bone defects. Copyright 2000 John Wiley & Sons, Inc.
机译:在绵羊模型中测试了在羟基磷灰石陶瓷(HAC)载体上自体移植后,骨髓来源的骨祖细胞促进修复关键尺寸的胫骨间隙的能力。建立了绵羊骨髓基质细胞(BMSC)的体外扩增条件,并验证了该扩增细胞的成骨潜能。在免疫功能低下的小鼠中异位植入绵羊BMSC导致大量骨形成。当用于修复绵羊的胫骨间隙时,在两个月内,装有细胞的植入物(n = 2)比无细胞的HAC圆柱体(n = 2)具有更广泛的骨形成。在装有细胞的植入物中,发现骨形成同时发生在内部大孔空间内和HAC圆柱体周围,而在无细胞的对照植入物中,骨形成主要限于外表面,而在大多数内孔中未观察到。如在压痕试验中测试的那样,发现与细胞对照组相比,在装有细胞的植入物中,复杂的HAC骨材料的刚度更高。我们对有限数量的大型动物进行的初步研究表明,与单独使用HAC相比,将自体BMSC与基于HAC的载体结合使用可更快地修复骨骼。该组合有可能在临床上用于治疗广泛的长骨缺损。版权所有2000 John Wiley&Sons,Inc.

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