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Simultaneous Identification of Amorphous Calcium Phosphate and S.epidermidis Bacteria by Photoacoustic Spectroscopy

机译:光声光谱法同时鉴定无定形磷酸钙和S.Pidermidis细菌

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The incorporation of biomaterials in human tissue requires methods to study the interface of the implant with the biological setting. We set out to study whether Photoacoustic spectroscopy with a higher level of sensitivity from the cantilever detector could simultaneously detect amorphous calcium phosphate and the bacteria. The calcium phosphate was synthesized, pressed into tablets, and then immersed in a solution containing S.epidermidis bacteria. Spectra were recorded after 1, 2, 3, 4 and 5 days. Deconvolution of the spectra at different time periods was able to separate bands belonging to the bacteria and carbonate bands arising from the calcium phosphate. This allowed the simultaneous identification of the biomaterial and bacteria. It was found that the PAS spectra could not identify the bacterial adhesion process due to the low concentration, but the amide peaks at 3 days inferred colonization of bacteria. This was confirmed by SEM that shoed an increase in the bacteria concentration. This is the first step in showing the simultaneous detection of calcium phosphate and bacteria by Photoacoustic spectroscopy, a method that required more research to show changes on the surface of the implant.
机译:在人体组织中的生物材料的引入需要的方法来研究的植入物的界面与所述生物设置。我们着手研究光声光谱与灵敏度的从悬臂检测器更高的水平是否可以同时检测无定形磷酸钙和细菌。磷酸钙合成,压制成片,然后浸入含有表皮葡萄球菌细菌的溶液。谱后1,2,3,4和5天后记录。在不同时间段的光谱的去卷积是能够分离属于细菌和从磷酸钙引起的碳酸盐频带的频带。这使生物材料和细菌的同时识别。结果发现,该光谱PAS无法识别细菌粘附过程中由于浓度低,但在3天酰胺峰推断细菌的定殖。这是通过SEM是脚穿中的细菌浓度增加的证实。这是示出了由光声光谱学,所需更多的研究以显示所述植入物的表面上的变化的方法磷酸钙和细菌的同时检测的第一步。

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