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In vivo evaluation of chitosan-glycerol gel scaffolds seeded with stem cells for full-thickness mandibular bone regeneration

机译:干细胞接种壳聚糖甘油凝胶支架的全壁下颌骨再生体内评价

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摘要

The aim of this study was to evaluate in vivo bone regeneration, mediated by adipose-derived stem cells (ADSCs), induced to differentiate into osteoblasts and carried by a scaffold gel. In the test group, bone regeneration was mediated by ADSCs, induced to differentiate into osteoblasts, and carried by a scaffold gel. In the control group a scaffold without cells was used. The scaffold, consisting of chitosan and glycerol phosphate, was maintained in situ by a cross-linked resorbable membrane. The osteogenic potential of ADSCs was confirmed by osteocalcin assay and Von Kossa staining performed before implantation. Histological assays detected an initial increase in bone formation in the test group compared with the control group. Microcomputed tomography analysis did not show significant differences between the two groups. Both histological and microcomputed tomography analysis were performed on the ex vivo specimens after a follow-up period of 8 weeks. We observed that differentiated ADSCs could increase bone regeneration and that the scaffold used here can be a suitable carrier to entrap and maintain the cells in situ. On the contrary, the membrane used was not functional in isolating the site of the defect from surrounding soft tissues and caused a significant inflammatory reaction.
机译:这项研究的目的是评估由脂肪干细胞(ADSC)介导,诱导分化为成骨细胞并由支架凝胶携带的体内骨骼再生。在测试组中,骨骼再生由ADSC介导,诱导分化为成骨细胞,并由脚手架凝胶携带。在对照组中,使用没有细胞的支架。由壳聚糖和磷酸甘油组成的支架通过交联的可吸收膜原位保持。植入前通过骨钙素测定法和Von Kossa染色证实了ADSCs的成骨潜力。组织学分析检测到与对照组相比,测试组的骨形成开始增加。微型计算机断层扫描分析未显示两组之间的显着差异。在8周的随访期后,对离体标本进行了组织学和显微计算机断层扫描分析。我们观察到分化的ADSCs可以增加骨骼再生,并且这里使用的支架可以是合适的载体,以原位捕获和维持细胞。相反,所用的膜不能从周围的软组织中分离出缺损部位,并引起明显的炎症反应。

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