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Strategies for regeneration of the bone using porcine adult adipose-derived mesenchymal stem cells

机译:使用成年猪脂肪间充质干细胞进行骨再生的策略

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摘要

Bone is a plastic tissue with a large healing capability. However, extensive bone loss due to disease or trauma requires tissue-engineering applications. Presently, bone grafting is the gold standard for bone repair, but presents serious limitations including donor site morbidity, rejection, and limited tissue regeneration. The use of stem cells appears to be a means to overcome such limitations. Bone marrow mesenchymal stem cells (BMSC) have been the choice, thus far, for stem cell therapy for bone regeneration. However, it has been shown that adipose-derived stem cells (ASC) have similar immunophenotype, morphology, multilineage potential, and transcriptome compared to BMSC. Moreover, ASC are much more abundant, more accessible and have lower donor morbidity, which combined may make ASC a better alternative to BMSC. ASC are also able to migrate to the site of injury and have immunosuppressive abilities similar to BMSC. Further, ASC have demonstrated extensive osteogenic capacity both in vitro and in vivo in several species, greatly enhancing the healing of critical size defects. The use of scaffolds in combination with ASC and growth factors provides a valuable tool for guided bone regeneration, especially for complex anatomic defects. Some critical elements include ASC-scaffold interactions and appropriate three-dimensional design of the porous osteoinductive structures. This review examines data that provides strong support for the clinical translation of ASC for bone regeneration
机译:骨是具有大愈合能力的塑料组织。但是,由于疾病或创伤造成的大量骨质流失需要组织工程应用。目前,植骨是骨修复的金标准,但存在严重的局限性,包括供体部位发病率,排斥反应和组织再生受限。干细胞的使用似乎是克服这些限制的一种手段。迄今为止,骨髓间充质干细胞(BMSC)已经成为用于骨再生的干细胞疗法的选择。但是,已经证明,与BMSC相比,脂肪干细胞(ASC)具有相似的免疫表型,形态,多谱系潜能和转录组。此外,ASC更加丰富,更容易获得,而且供体发病率更低,这可能使ASC成为BMSC的更好替代品。 ASC还能够迁移到损伤部位,并具有类似于BMSC的免疫抑制能力。此外,ASC在几种物种的体内和体外均显示出广泛的成骨能力,从而极大地增强了关键尺寸缺陷的愈合。将支架与ASC和生长因子结合使用可为引导骨再生(尤其是复杂的解剖缺陷)提供有价值的工具。一些关键要素包括ASC-支架相互作用和多孔骨诱导结构的适当三维设计。这篇综述检查了为ASC的骨再生临床翻译提供有力支持的数据

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