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Magnetic sugar particles for particulate leaching in fabrication of sheet-like scaffold

机译:用于制造片状支架的颗粒浸出的磁性糖颗粒

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Magnetic field has been used for manipulation of micro-robots; in this research we use it for scaffold fabrication. Magnetic sugar particle (MSP) was used as porogen to control pore size, pore structure and pore density in the scaffold. We studied the influence of the strength of magnetic fields for controlling the coating thickness of unmagnetized MSPs during the fabrication of sheet-like scaffolds. The experimental relationship between magnetic flux density and the thickness of MSP layer was illustrated. Furthermore we investigated the infiltration capacity of poly(L-lactide-co-ε-caprolactone) (PLCL) which was used as scaffold material on the MSP clusters. 5% and 10% PLCL solutions were employed in the experiments. After polymer casting and removal of the sugar template, spherical pores were generated inside scaffold, the thickness evaluation of a single layer scaffold was carried out and the cytocompatibility experiment of NdFeB powder used in fabrication of MSP was confirmed with human umbilical vein endothelial cells.
机译:磁场已用于操纵微型机器人。在这项研究中,我们将其用于脚手架制造。磁性糖颗粒(MSP)被用作致孔剂,以控制支架中的孔径,孔结构和孔密度。我们研究了在片状支架制造过程中磁场强度对未磁化MSP涂层厚度控制的影响。阐述了磁通密度与MSP层厚度之间的实验关系。此外,我们研究了聚(L-丙交酯-ε-己内酯)(PLCL)的渗透能力,该物质用作MSP簇上的支架材料。实验中使用了5%和10%的PLCL溶液。聚合物浇铸并除去糖模板后,在支架内部产生球形孔,对单层支架进行厚度评估,并用人脐静脉内皮细胞证实了用于制备MSP的NdFeB粉末的细胞相容性实验。

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