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首页> 外文期刊>Journal of Materials Science. Materials in Medicine >In vivo characterisation of a novel bioresorbable poly(lactide-co-glycolide) tubular foam scaffold for tissue engineering applications
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In vivo characterisation of a novel bioresorbable poly(lactide-co-glycolide) tubular foam scaffold for tissue engineering applications

机译:用于组织工程应用的新型生物可吸收聚(丙交酯-共-乙交酯)管状泡沫支架的体内表征

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Polylactide-co-glycolide (PLGA) foams of tubular shape were assessed for their use as soft-tissue engineering scaffolds in vitro and in vivo. Porous membranes were fabricated by a thermally induced phase separation process of PLGA solutions in dimethylcarbonate. The parameters investigated were the PLGA concentration and the casting volume of solution. Membranes produced from 5 wt/v% polymer solutions and a 6 ml casting volume of polymer solution were selected for fabricating tubes of 3 mm diameter, 20 mm length and a nominal wall thickness of 1.5mm. Scanning electron microscopy revealed that the structure of the tubularfoams consisted of radially oriented and highly interconnected pores with a large size distribution (50-300μm). Selected tubes were implanted subcutaneously into adult male Lewis rats. Although the lumen of the tubes collapsed within one week of implantation, histological examination of the implanted scaffolds revealed that the foam tubes were well tolerated. Cellular infiltration into the foams, consisting mainly of fibrovascular tissue, was evident after two weeks and complete within eight weeks of implantation. The polymer was still evident in the scaffolds after eight weeks of implantation. The results from this study demonstrate that the PLGA tubular foams may be useful as soft-tissue engineering scaffolds with modification holding promise for the regeneration of tissues requiring a tubular shape scaffold such as intestine.
机译:评估了管状聚乳酸-共-乙交酯(PLGA)泡沫在体外和体内作为软组织工程支架的用途。多孔膜是通过热诱导的碳酸二甲酯中PLGA溶液的相分离过程制成的。研究的参数是PLGA浓度和溶液的浇铸体积。选择由5 wt / v%的聚合物溶液和6 ml的浇铸体积的聚合物溶液生产的膜,用于制造直径3 mm,长度20 mm和标称壁厚1.5mm的管。扫描电子显微镜显示,管状泡沫的结构由径向取向且高度互连的孔组成,孔的大小分布较大(50-300μm)。将选定的管皮下植入成年雄性Lewis大鼠。尽管在植入的一周内管的内腔塌陷,但是对植入的支架的组织学检查显示,泡沫管具有良好的耐受性。两周后,细胞渗透到主要由纤维血管组织组成的泡沫中,并在植入后八周内完全浸润。植入八周后,聚合物在支架中仍然很明显。这项研究的结果表明,PLGA管状泡沫材料可用作软组织工程支架,其改性有望使需要管状形状的支架(如肠)的组织再生。

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