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首页> 外文期刊>RSC Advances >Synthesis of chitosan/PEO/silica nanofiber coating for controlled release of cefepime from implants
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Synthesis of chitosan/PEO/silica nanofiber coating for controlled release of cefepime from implants

机译:壳聚糖/ PEO /二氧化硅纳米纤维涂料的合成用于控制头孢吡肟从植入物中的释放

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摘要

Nanofibers, which have good properties such as high surface to volume ratio, high porosity, very small pores, and the ability to load drugs, can be considered for a variety of medical applications. Silica/chitosan/poly(ethylene oxide) (PEO)/cefepime nanofibers are suitable as an antibacterial coating for orthopedic implants. This bioactive coating reduced adhesion of bacteria to the surface of the implants and prevented the formation of biofilms. Electrospinning is known to be the best way to produce the nanofibers because of the low cost, simplicity of the process and production of polymeric nanofibers from biodegradable materials. The morphology of electrospun nanofibers was studied by the use of a scanning electron microscope (SEM). The average diameters of the prepared nanofibers was determined by Image J software. Nanofibers cross linked by glutaraldehyde are stable in different pH of 5.5, 7.4 and 8.4 of SBF buffer for 24 h at 37 degrees C. These nanofibers are effective on E. coli, S. aureus and S. epidermidis bacteria. Cefepime release from the nanofibers was investigated by UV-vis spectroscopy at lambda(max) = 258.4 nm and continued for 16 days. The chemical structures of the nanofibers were evaluated by FT-IR. The growth and viability percentage of fibroblast cells with nanofibers are at desirable levels after 6 days. The aim of this work is to improve the known methods of forming antibacterial coatings on orthopedic implants to prevent the development of biofilms.
机译:纳米纤维具有良好的特性,例如高的表面体积比,高的孔隙率,非常小的孔隙以及负载药物的能力,可以用于各种医疗应用。二氧化硅/壳聚糖/聚环氧乙烷(PEO)/头孢吡肟纳米纤维适合作为整形外科植入物的抗菌涂层。这种生物活性涂层减少了细菌对植入物表面的粘附,并防止了生物膜的形成。众所周知,静电纺丝是生产纳米纤维的最佳方法,因为其成本低,工艺简单以及由可生物降解材料生产聚合物纳米纤维。通过使用扫描电子显微镜(SEM)研究了电纺纳米纤维的形态。制备的纳米纤维的平均直径通过Image J软件确定。通过戊二醛交联的纳米纤维在37℃下在pH值分别为5.5、7.4和8.4的SBF缓冲液中稳定24小时。这些纳米纤维对大肠杆菌,金黄色葡萄球菌和表皮葡萄球菌有效。通过紫外可见光谱在λ(max)= 258.4 nm处研究了纳米纤维中头孢吡肟的释放,并持续了16天。通过FT-IR评估纳米纤维的化学结构。 6天后,具有纳米纤维的成纤维细胞的生长和存活率百分比处于理想水平。这项工作的目的是改进在整形外科植入物上形成抗菌涂层以防止生物膜形成的已知方法。

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