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脂肪来源干细胞来源的类球体在异种兔模型中诱导颅骨骨生成。

Human Spheroids from Adipose-Derived Stem Cells Induce Calvarial Bone Production in a Xenogeneic Rabbit Model.

机构信息

From the BIOPLAST-Laboratory of BIOlogy and Regenerative Medicine-PLASTic Surgery, Plastic and Reconstructive Surgery Section, Department of Surgical, Oncological and Oral Sciences, University of Palermo.

Tumor Immunology Unit, Department of Health Science.

出版信息

Ann Plast Surg. 2021 Jun 1;86(6):714-720. doi: 10.1097/SAP.0000000000002579.

Abstract

Calvarial defects can result from several causes. Tissue engineering hold the potential to restore native form and protective function. We have recently shown that stemness and differentiation ability of spheroids from adipose-derived stem cells (S-ASCs) promotes osteoblasts growth within Integra in a small vertebral lesion. In our study, we aimed to test osteogenic potential of S-ASCs in aiding regeneration of a calvarial defect. Groups containing Integra showed increased bone regeneration at the calvarial defect-Integra interface compared with the control group. In particular, S-ASC-derived osteoblasts group showed a superior calvarial remodeling than undifferentiated S-ASCs group. Clusters of ossification were observed in these both groups with enhanced microvasculature density and fibrosis. In conclusion, seeding of S-ASCs in dermal regeneration templates enhanced bone healing in a rabbit calvarial defect model. These findings could prompt the elective use of S-ASCs with enhanced multilineage differentiation potential for tissue engineering purposes.

摘要

颅骨缺损可由多种原因引起。组织工程具有恢复原生形态和保护功能的潜力。我们最近表明,脂肪来源干细胞(S-ASCs)球体的干细胞特性和分化能力可促进 Integra 内小椎骨病变中的成骨细胞生长。在我们的研究中,我们旨在测试 S-ASCs 在辅助颅骨缺损再生方面的成骨潜力。与对照组相比,含有 Integra 的组在颅骨缺损-Integra 界面处显示出增加的骨再生。特别是,与未分化的 S-ASCs 组相比,S-ASC 衍生的成骨细胞组显示出更好的颅骨重塑。这两组均观察到骨化簇,微血管密度和纤维化增强。总之,在真皮再生模板中接种 S-ASCs 可增强兔颅骨缺损模型中的骨愈合。这些发现可能促使选择使用具有增强多能性分化潜力的 S-ASCs 用于组织工程目的。

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