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Intrinsic antibacterial borosilicate glasses for bone tissue engineering applications

机译:用于骨组织工程应用的内在抗菌硼硅酸盐玻璃

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摘要

Three novel borosilicate bioactive glasses (BBGs) were prepared and used to investigate their bioactive and antibacterial properties. The BBGs were prepared by melt quenching using different glass modifiers, i.e. Mg2+, Ca2+ and Sr2+, and their amorphous nature was confirmed by X-ray diffraction. Scanning electron microscopy with energy dispersive X-ray spectroscopy allowed the visualization of apatite-like structures upon 7 days of immersion in simulated body fluid. BBG-Ca generated surface structures with a Ca/P ratio â 1.67, while the surface of the BBG-Sr was populated with structures with a Sr/P ratio â 1.7. Moreover, bacterial tests showed that the BBG-Mg and BBG-Sr glasses (at concentrations of 9, 18, 36 and 72 mg/mL) present antibacterial characteristics. In particular, BBG-Sr, at concentrations of 9 mg/mL, exhibited bacteriostatic activity against Pseudomonas aeruginosa, and at concentrations â ¥ 18 mg/mL it was able to eradicate this bacterium. These results evidence an antibacterial activity dependent on the BBGs composition, concentration and bacterial species. Cellular studies showed that the developed BBGs do not present statistically significant cytotoxic effect against Saos-2 cells after 3 days of culture showing better performance (in the cases of BBG-Ca and BBG-Sr) than commercial 45S5 Bioglass up to 7 days of culture. Overall, this study demonstrates that BBGs can be effectively designed to combine bioactivity and intrinsic antibacterial activity targeting bone tissue engineering applications.
机译:制备了三种新颖的硼硅酸盐生物活性玻璃(BBG),并用于研究其生物活性和抗菌性能。通过使用不同的玻璃改性剂(即Mg2 +,Ca2 +和Sr2 +)进行熔融淬火来制备BBG,并通过X射线衍射确认了其非晶态性质。扫描电子显微镜和能量色散X射线光谱仪可以将浸入模拟体液中7天后看到类似磷灰石的结构。 BBG-Ca生成的表面结构的Ca / P比≤1.67,而BBG-Sr的表面填充有Sr / P比率≤1.7的结构。此外,细菌测试表明,BBG-Mg和BBG-Sr玻璃杯(浓度分别为9、18、36和72 mg / mL)具有抗菌特性。特别是,BBG-Sr在9 mg / mL的浓度下表现出对铜绿假单胞菌的抑菌活性,在浓度≥18 mg / mL时,它能够根除此细菌。这些结果证明了抗菌活性取决于BBG的组成,浓度和细菌种类。细胞研究表明,培养的BBG在培养3天后对Saos-2细胞没有统计学上的显着细胞毒性作用,表现出比商用45S5生物玻璃在培养7天时更好的性能(对于BBG-Ca和BBG-Sr)。 。总体而言,这项研究表明,BBG可以有效地设计,以结合生物活性和固有的抗菌活性为目标的骨组织工程应用。

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