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3D Cytocompatible Composites of PCL/Magnetite

机译:PCL /磁铁矿的3D细胞相容性复合材料

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摘要

A study of Magnetite (Fe O ) as a suitable matrix for the improved adhesion and proliferation of MC3T3-E1 pre-osteoblast cells in bone regeneration is presented. Biodegradable and magnetic polycaprolactone (PCL)/magnetite (Fe O ) scaffolds, which were fabricated by Thermally Induced Phase Separation, are likewise analyzed. Various techniques are used to investigate in vitro degradation at 37 °C, over 104 weeks, in a phosphate buffered saline (PBS) solution. Magnetic measurements that were performed at physiological temperature (310 K) indicated that degradation neither modified the nature nor the distribution of the magnetite nanoparticles. The coercive field strength of the porous matrices demonstrated ferromagnetic behavior and the probable presence of particle interactions. The added nanoparticles facilitated the absorption of PBS, with no considerable increase in matrix degradation rates, as shown by the Gel Permeation Chromatography (GPC) results for Mw, Mn, and I. There was no collapse of the scaffold structures that maintained their structural integrity. Their suitability for bone regeneration was also supported by the absence of matrix cytotoxicity in assays, even after additions of up to 20% magnetite.
机译:磁铁矿(Fe O)作为合适的基质,可改善MC3T3-E1前成骨细胞在骨再生中的粘附和增殖的研究。同样分析了通过热诱导相分离法制备的可生物降解的磁性聚己内酯(PCL)/磁铁矿(Fe O)支架。在磷酸盐缓冲盐水(PBS)溶液中,采用各种技术研究37℃下104周的体外降解。在生理温度(310 K)下进行的磁性测量表明,降解既未改变磁铁矿纳米颗粒的性质,也不改变其分布。多孔基体的矫顽场强显示出铁磁行为和可能存在的粒子相互作用。添加的纳米颗粒促进了PBS的吸收,基质降解速率没有显着提高,如Mw,Mn和I的凝胶渗透色谱(GPC)结果所示。保持结构完整性的支架结构没有塌陷。即使在添加多达20%的磁铁矿后,测定中也没有基质细胞毒性,也支持了它们对骨骼再生的适用性。

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