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Gentamicin Released from Porous Scaffolds Fabricated by Stereolithography

机译:庆大霉素从立体光刻法制备的多孔支架中释放

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摘要

Porous oligolactide-hydroxyapatite composite scaffolds were obtained by stereolithographic fabrication. Gentamicin was then coated on the scaffolds afterwards, to achieve antimicrobial delivery ability to treat bone infection. The scaffolds examined by stereomicroscope, SEM, and μCT-scan showed a well-ordered pore structure with uniform pore distribution and pore interconnectivity. The physical and mechanical properties of the scaffolds were investigated. It was shown that not only porosity but also scaffold structure played a critical role in governing the strength of scaffolds. A good scaffold design could create proper orientation of pores in a way to strengthen the scaffold structure. The drug delivery profile of the porous scaffolds was also analyzed using microbiological assay. The release rates of gentamicin from the scaffolds showed prolonged drug release at the levels higher than the minimum inhibitory concentrations for S. aureus and E. coli over a 2-week period. It indicated a potential of the scaffolds to serve as local antibiotic delivery to prevent bacterial infection.
机译:通过立体光刻法制备多孔的低聚乳酸-羟基磷灰石复合支架。然后,庆大霉素随后被涂覆在支架上,以达到治疗骨骼感染的抗菌作用。通过立体显微镜,SEM和μCT扫描检查的支架显示出井然有序的孔结构,具有均匀的孔分布和孔互连性。研究了支架的物理和机械性能。结果表明,不仅孔隙率而且支架结构在控制支架强度方面都起着至关重要的作用。良好的脚手架设计可以以加强脚手架结构的方式创建适当的孔定向。还使用微生物测定法分析了多孔支架的药物递送特征。庆大霉素从支架上的释放速率显示出在2周时间内药物释放时间延长,其水平高于金黄色葡萄球菌和大肠杆菌的最低抑制浓度。这表明支架有潜力用作局部抗生素递送以预防细菌感染。

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