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Bioactive Sr(II)/Chitosan/Poly(ε-caprolactone) Scaffolds for Craniofacial Tissue Regeneration. In Vitro and In Vivo Behavior

机译:具有生物活性的Sr(II)/壳聚糖/聚(ε-己内酯)支架可用于颅面组织再生。体外和体内行为

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摘要

In craniofacial tissue regeneration, the current gold standard treatment is autologous bone grafting, however, it presents some disadvantages. Although new alternatives have emerged there is still an urgent demand of biodegradable scaffolds to act as extracellular matrix in the regeneration process. A potentially useful element in bone regeneration is strontium. It is known to promote stimulation of osteoblasts while inhibiting osteoclasts resorption, leading to neoformed bone. The present paper reports the preparation and characterization of strontium (Sr) containing hybrid scaffolds formed by a matrix of ionically cross-linked chitosan and microparticles of poly(ε-caprolactone) (PCL). These scaffolds of relatively facile fabrication were seeded with osteoblast-like cells (MG-63) and human bone marrow mesenchymal stem cells (hBMSCs) for application in craniofacial tissue regeneration. Membrane scaffolds were prepared using chitosan:PCL ratios of 1:2 and 1:1 and 5 wt % Sr salts. Characterization was performed addressing physico-chemical properties, swelling behavior, in vitro biological performance and in vivo biocompatibility. Overall, the composition, microstructure and swelling degree (≈245%) of scaffolds combine with the adequate dimensional stability, lack of toxicity, osteogenic activity in MG-63 cells and hBMSCs, along with the in vivo biocompatibility in rats allow considering this system as a promising biomaterial for the treatment of craniofacial tissue regeneration.
机译:在颅面组织再生中,当前的金标准治疗是自体骨移植,但是它存在一些缺点。尽管已经出现了新的替代方法,但仍然迫切需要可生物降解的支架在再生过程中充当细胞外基质。锶在骨再生中可能有用。已知促进成骨细胞的刺激,同时抑制破骨细胞的吸收,从而导致新形成的骨。本文报道了由离子交联的壳聚糖和聚(ε-己内酯)(PCL)微粒形成的含锶杂化支架的制备和表征。将这些相对容易制造的支架接种成骨细胞样细胞(MG-63)和人骨髓间充质干细胞(hBMSC),用于颅面组织再生。使用壳聚糖∶PCL比率为1∶2和1∶1以及5wt%的Sr盐制备膜支架。针对物理化学性质,溶胀行为,体外生物学性能和体内生物相容性进行了表征。总的来说,支架的组成,微观结构和溶胀度(约245%)与足够的尺寸稳定性,缺乏毒性,MG-63细胞和hBMSCs的成骨活性以及大鼠的体内生物相容性相结合,可以认为该系统为一种用于颅面组织再生的有前途的生物材料。

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