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首页> 外文期刊>Journal of Biotechnology >Development of biodegradable scaffolds based on magnetically guided assembly of magnetic sugar particles
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Development of biodegradable scaffolds based on magnetically guided assembly of magnetic sugar particles

机译:基于磁性糖粒的磁性引导组装的可生物降解支架的开发

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Biodegradable scaffolds with controlled pore layout and porosity have great significance in tissue engineering for cell penetration, tissue ingrowth, vascularization, and nutrient delivery. Porogen leaching has been commonly used to control pore size, pore structure and porosity in the scaffold. In this paper we focus on the use/development of two magnetically guided porogen assembly methods using magnetic sugar particles (MSPs) for scaffold fabrication. First, a patterning device is utilized to align MSPs following designed templates. Then a magnetic sheet film is fabricated by mixing poly(vinyl alcohol, PVA) and NdFeB powder for steering the MSPs. After poly(l-lactide-co-epsilon-caprolactone) (PLCL) casting and removal of the sugar template, a scaffold with spherical pores is obtained. The surface and the inner structure of the scaffolds are evaluated using light and electron micrographs showing their interconnection of pores, pore wall morphology and porosity. Single layer scaffolds with the size of 8 mm in width and 10 mm in length were constructed with controllable pore diameters in the ranges of 105-150 mu m, 250-300 mu m and 425-500 mu m. (C) 2012 Elsevier B.V
机译:具有可控孔布局和孔隙度的可生物降解支架在组织工程中对于细胞渗透,组织向内生长,血管形成和营养输送具有重要意义。孔隙浸出已普遍用于控制支架中的孔径,孔结构和孔隙率。在本文中,我们着重于使用/开发两种使用磁糖颗粒(MSP)进行支架制造的磁导造孔剂组装方法。首先,图案化装置用于按照设计的模板对齐MSP。然后,通过混合聚乙烯醇,PVA和NdFeB粉末来制造MSP,从而制作出磁性薄膜。在聚(1-丙交酯-ε-己内酯-己内酯)(PLCL)浇铸并除去糖模板后,获得具有球形孔的支架。支架的表面和内部结构使用光学和电子显微照片进行评估,该显微照片显示出它们的孔隙相互连接,孔隙壁形态和孔隙率。构建宽度为8mm,长度为10mm的单层支架,其可控制的孔径在105-150μm,250-300μm和425-500μm的范围内。 (C)2012 Elsevier B.V

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