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接种于异种脱矿松质骨支架上用于骨移植的鸽成骨细胞的分离、培养及特性研究

Isolation, cultivation and characterisation of pigeon osteoblasts seeded on xenogeneic demineralised cancellous bone scaffold for bone grafting.

作者信息

Harvanová Denisa, Hornák Slavomír, Amrichová Judita, Spaková Tímea, Mikes Jaromír, Plsíková Jana, Ledecký Valent, Rosocha Ján

机构信息

Associated Tissue Bank of Faculty of Medicine of P. J. Safárik University and L. Pasteur University Hospital, Trieda SNP 1, SK-041 66, Kosice, Slovakia,

出版信息

Vet Res Commun. 2014 Sep;38(3):221-8. doi: 10.1007/s11259-014-9607-0. Epub 2014 Jun 12.

Abstract

Avian osteoblasts have been isolated particularly from chicken embryo, but data about other functional tissue sources of adult avian osteoblast precursors are missing. The method of preparation of pigeon osteoblasts is described in this study. We demonstrate that pigeon cancellous bone derived osteoblasts have particular proliferative capacity in vitro in comparison to mammalian species and developed endogenous ALP. Calcium deposits formation in vitro was confirmed by alizarin red staining. Only a few studies have attempted to investigate bone grafting and treatment of bone loss in birds. Lack of autologous bone grafts in birds has prompted investigation into the use of avian xenografts for bone augmentation. Here we present a method of xenografting of ostrich demineralised cancellous bone scaffold seeded with allogeneic adult pigeon osteoblasts. Ostrich demineralised cancellous bone scaffold supported proliferation of pigeon osteoblasts during two weeks of co - cultivation in vitro. Scanning electron microscopy demonstrated homogeneous adult pigeon osteoblasts attachment and distribution on the surface of xenogeneic ostrich demineralised cancellous bone. Our preliminary in vitro results indicate that demineralised cancellous bone from ostrich tibia could provide an effective biological support for growth and proliferation of allogeneic osteoblasts derived from cancellous bone of pigeons.

摘要

禽成骨细胞尤其已从鸡胚胎中分离出来,但关于成年禽类成骨细胞前体的其他功能组织来源的数据尚缺。本研究描述了鸽成骨细胞的制备方法。我们证明,与哺乳动物相比,鸽松质骨来源的成骨细胞在体外具有特定的增殖能力,并能产生内源性碱性磷酸酶。通过茜素红染色证实了体外钙沉积的形成。只有少数研究试图探讨鸟类的骨移植和骨质流失的治疗。鸟类缺乏自体骨移植促使人们研究使用禽异种移植物进行骨增量。在此,我们介绍一种用同种异体成年鸽成骨细胞接种的鸵鸟脱矿松质骨支架进行异种移植的方法。在体外共培养两周期间,鸵鸟脱矿松质骨支架支持鸽成骨细胞的增殖。扫描电子显微镜显示成年鸽成骨细胞在异种鸵鸟脱矿松质骨表面均匀附着和分布。我们初步的体外研究结果表明,鸵鸟胫骨的脱矿松质骨可为来自鸽松质骨的同种异体成骨细胞的生长和增殖提供有效的生物支持。

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