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纳米纤维和微纤维材料的组合用于增强细胞渗透和体内骨组织形成。

The combination of nanofibrous and microfibrous materials for enhancement of cell infiltration and in vivo bone tissue formation.

机构信息

University Center for Energy Efficient Buildings (UCEEB), Czech Technical University in Prague, Třinecká 1024, 273 43, Buštěhrad, Czechia. Laboratory of Tissue Engineering, Institute of Experimental Medicine, Czech Academy of Sciences, Vídeňská 1083, 142 40, Prague, Czechia.

出版信息

Biomed Mater. 2018 Jan 24;13(2):025004. doi: 10.1088/1748-605X/aa9717.

Abstract

Fibrous scaffolds are desired in tissue engineering applications for their ability to mimic extracellular matrix. In this study we compared fibrous scaffolds prepared from polycaprolactone using three different fabrication methods, electrospinning (ES), electro-blowing and melt-blown combined with ES. Scaffolds differed in morphology, fiber diameters and pore sizes. Mesenchymal stem cell adhesion, proliferation and osteogenic differentiation on scaffolds was evaluated. The most promising scaffold was shown to be melt-blown in combination with ES which combined properties of both technologies. Microfibers enabled good cell infiltration and nanofibers enhanced cell adhesion. This scaffold was used for further testing in critical sized defects in rabbits. New bone tissue formation occurred from the side of the treated defects, compared to a control group where only fat tissue was present. Polycaprolactone fibrous scaffold prepared using a combination of melt-blown and ES technology seems to be promising for bone regeneration. The practical application of results is connected with enormous production capacity and low cost of materials produced by melt-blown technology, compared to other bone scaffold fabrication methods.

摘要

纤维支架在组织工程应用中受到青睐,因为它们能够模拟细胞外基质。在这项研究中,我们比较了三种不同制备方法(静电纺丝、电喷和熔融纺丝与静电纺丝结合)制备的聚己内酯纤维支架。支架在形态、纤维直径和孔径方面存在差异。评估了间充质干细胞在支架上的黏附、增殖和成骨分化情况。结果表明,最有前途的支架是静电纺丝与熔融纺丝结合的支架,它结合了两种技术的优点。微纤维有利于细胞的渗透,纳米纤维增强了细胞的黏附。该支架在兔临界尺寸缺陷中进行了进一步的测试。与对照组(仅存在脂肪组织)相比,治疗缺陷侧出现了新的骨组织形成。使用静电纺丝和熔融纺丝组合技术制备的聚己内酯纤维支架似乎在骨再生方面具有应用前景。与其他骨支架制备方法相比,静电纺丝与熔融纺丝结合的技术具有产量大、材料成本低的优势,这使其具有实际应用价值。

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