首页> 外文期刊>The International journal of oral & maxillofacial implants >Image-based extracorporeal tissue engineering of individualized bone constructs.
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Image-based extracorporeal tissue engineering of individualized bone constructs.

机译:基于图像的个体化骨构造的体外组织工程。

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PURPOSE: Computer-aided technologies have been recently employed for use in extracorporeal bone tissue engineering strategies. In this pilot animal experimental study, the intention was to test whether autologous osteoblast-like cells cultured in vitro on individualized scaffolds can be used to support bone regeneration in a clinical environment. MATERIALS AND METHODS: For this purpose, mandibular bone defects were surgically introduced into the mandibles of minipigs and the scaffold of the defect site was modeled by computer-aided design/computer-aided manufacturing technique. Autologous bone cells from porcine calvaria were harvested from minipigs and grown in culture. Cells were seeded on scaffolds generated by rapid prototyping of polylactic acid/polyglycolic acid copolymers. The defects were then reconstructed by implanting the tissue constructs. RESULTS: The intraoperative sites as well as the postoperative computerized tomographic scans demonstrated an accurate fit in the defect sites. The implanted scaffold constructs enriched with osteoblast-like cells were well tolerated and appeared to support bone formation, as revealed by histologic and immunohistochemical analyses. DISCUSSION: These results indicated that in vitro expanded osteoblast-like cells spread on a resorbable individualized scaffold can be capable of promoting the repair of bony defects in vivo. CONCLUSION: These results warrant further attempts to combine computer modeling and tissue engineering for use in bone reconstructive surgery.
机译:目的:计算机辅助技术最近已用于体外骨组织工程策略。在这项实验动物实验研究中,目的是测试在个性化支架上体外培养的自体成骨样细胞是否可用于支持临床环境中的骨再生。材料与方法:为此,将下颌骨缺损通过外科手术引入小型猪的下颌骨中,并通过计算机辅助设计/计算机辅助制造技术对缺损部位的支架进行建模。从小型猪中收获猪颅骨的自体骨细胞,并使其培养。将细胞接种在通过快速原型化聚乳酸/聚乙醇酸共聚物产生的支架上。然后通过植入组织构造物重建缺损。结果:术中部位以及术后计算机断层扫描显示出正确的位置适合缺损部位。组织学和免疫组织化学分析显示,植入的富含成骨细胞样细胞的支架构建体具有良好的耐受性,并似乎支持骨形成。讨论:这些结果表明,体外扩增的成骨细胞样细胞分布在可吸收的个体化支架上可以在体内促进骨缺损的修复。结论:这些结果值得进一步尝试将计算机建模和组织工程学结合起来用于骨重建手术。

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