不同抗生素对多孔羟基磷灰石(HA)抑菌活性的影响

F. Chai , J.-C. Hornez , N. Blanchemain , C. Neut , M. Descamps , H.F. Hildebrand
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引用次数: 67

摘要

为了防止手术后感染的增加,生物陶瓷可以装载抗菌剂,这些抗菌剂会根据其化学特性释放出来。制备了一种具有特定孔隙率的新型羟基磷灰石(HA)作为骨生物活性抗生素(ATB)载体材料。采用紫外分光光度法和抑菌试验考察不同抗菌素对ATB的吸附和微生物学效果。通过暴露于不同的释放溶剂和不同的病原菌:金黄色葡萄球菌、表皮葡萄球菌和大肠杆菌,研究了浸渍时间、浸渍浓度、浸渍条件等因素对ATB加载效果的影响。这清楚地表明,即使在简单的非真空浸渍条件下,在不太长的浸渍间隔内,也可以在多孔HA上加载ATB。结果还表明,对于万古霉素、环丙沙星和庆大霉素,三种ATB在微孔HA上的吸附量都大大高于致密HA。即使在模拟生理条件下,试验HA的微孔隙也显著延长了抗生素的释放时间。此外,通过中试初步证明,冷等离子体技术等其他功能化方法可以进一步显著提高粗微孔透明质酸的抗菌效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antibacterial activation of hydroxyapatite (HA) with controlled porosity by different antibiotics

In order to prevent the increasing frequency of per-operative infections, bioceramics can be loaded with anti-bacterial agents, which will release with respect to their chemical characteristics. A novel hydroxyapatite (HA) was elaborated with specific internal porosities for using as a bone-bioactive antibiotic (ATB) carrier material. UV spectrophotometry and bacteria inhibition tests were performed for testing the ATB adsorption and the microbiological effectiveness after loading with different antibiotics. The impregnation time, ATB impregnating concentration, impregnation condition and other factors, which might influence the ATB loading effect, were studied by exposure to different releasing solvents and different pathogenic bacteria: Staphylococcus aureus, Staphylococcus epidermidis and Escherichia coli. It clearly showed that the facility of ATB loading on this porous HA is even possible just under simple non-vacuum impregnation conditions in a not-so-long impregnating interval. The results also showed that, for all three types of ATB (vancomycin, ciprofloxacin and gentamicin), adsorbed amount on the micro-porous HA were hugely higher than that on dense HA. The micro-porosity of test HA had also significantly prolonged the release time of antibiotics even under mimic physiological conditions. Furthermore, it also has primarily proved by a pilot test that the antibacterial efficiency of crude micro-porous HA could be further significantly improved by other methods of functionalization such as cold plasma technique.

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