...
首页> 外文期刊>Biomedical Microdevices >Solid freeform fabrication and in-vitro response of osteoblast cells of mPEG-PCL-mPEG bone scaffolds
【24h】

Solid freeform fabrication and in-vitro response of osteoblast cells of mPEG-PCL-mPEG bone scaffolds

机译:固体自由形式的制备和mPEG-PCL-mPEG骨支架的成骨细胞体外反应

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Bone tissue engineering is an emerging approach to provide viable substitutes for bone regeneration. Polyethylene glycol) (PEG) is a good candidate of bone scaffold because of several advantages such as hydrophilicity, biocompatibility, and intrinsic resistance to protein adsorption and cell adhesion. However, its low compressive strength limits application for bone regeneration. Poly(e-caprolactone) (PCL), a hydrophobic nonionic polymer, is adopted to enhance the compressive strength of PEG alone.We aimed to investigate the in-vitro response of osteoblast-like cells cultured with porous scaffolds of triblock PEG-PCL-PEG copol-ymer fabricated by an air pressure-aided deposition system. A desktop air pressure-aided deposition system that involves melting and plotting PEG-PCL-PEG was used to fabricate three-dimensional scaffolds having rectangular pores. The experimental results showed that PEG-PCL-PEG with a molecular weight of 25,000 can be melted and stably deposited through a heating nozzle at an air pressure of 0.3 MPa and no crack occurs after it solidifies. The scaffolds with predetermined pore size of 400× 420 μm and a porosity of 79 % were fabricated, and their average compressive strength was found to be 18.2 MPa. Osteoblast-like cells, MC3T3-E1, were seeded on fabricated scaffolds to investigate the in-vitro response of cells including toxicity and cellular locomotion. In a culture period of 28 days, the neutral-red stained osteoblasts were found to well distributed in the interior of the scaffold. Furthermore, the cellular attachment and movement in the first 10 h of cell culture were observed with time-lapse microscopy indicating that the porous PEG-PCL-PEG scaffolds fabricated by air pressure-aided deposition system is non-toxicity for osteoblast-like cells.
机译:骨组织工程学是为骨再生提供可行替代品的新兴方法。聚乙二醇(PEG)由于具有许多优点,例如亲水性,生物相容性以及对蛋白质吸附和细胞粘附的固有抗性,因此是骨支架的良好候选者。但是,其低的抗压强度限制了骨再生的应用。聚(e-己内酯)(PCL)是一种疏水性非离子聚合物,被用于增强单独的PEG的抗压强度。我们旨在研究用三嵌段PEG-PCL-的多孔支架培养的成骨样细胞的体外反应通过气压辅助沉积系统制造的PEG共聚体。使用涉及熔化和绘制PEG-PCL-PEG的台式气压辅助沉积系统来制造具有矩形孔的三维支架。实验结果表明,分子量为25,000的PEG-PCL-PEG可以在0.3 MPa的气压下通过加热喷嘴熔化并稳定沉积,固化后不会出现裂纹。制备具有400×420μm的预定孔径和79%的孔隙率的支架,并且发现它们的平均抗压强度为18.2MPa。将成骨细胞样细胞MC3T3-E1播种在预制支架上,以研究细胞的体外反应,包括毒性和细胞运动。在28天的培养期内,发现中性红色染色的成骨细胞充分分布在支架内部。此外,通过延时显微镜观察细胞培养的最初10小时中的细胞附着和运动,表明通过气压辅助沉积系统制备的多孔PEG-PCL-PEG支架对成骨细胞样细胞无毒。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号