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Assessing the Dynamic Biofilm Removal of Sulfonated Phenolics using CP-OCT

机译:评估CP-OCT的动态生物膜除去磺化酚醛酸

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Examining the physical mechanisms related to biofilm removal of sulfonated phenolics (SP) is difficult using conventional microscopy techniques. A custom flow cell system integrated with a real time cross polarization optical coherence tomography system investigated the dynamic speed of biofilm removal when oral multi-species biofilms are exposed to SP under sheer stress. The Near infrared 1310-nm CP-OCT system non-destructively imaged fluid immersed oral biofilms at nearly 30 frames/s. This dynamic imaging was able to determine the cohesive and adhesion related disruption of SP on oral biofilms adhering to tooth like surfaces. For multi-species biofilms that are initially grown without the presence of sucrose, the disruption of biofilms on saliva coated hydroxyapatite (HA) is dominated as a adhesive failure at the HA-biofilm interface. For multi-species biofilms that are grown in the presence of sucrose, the disruption is dominated by cohesive disruption followed by adhesive failure. This novel CP-OCT flow cell assay has the potential to examine rapid interactions between anti-biofilm agents and tooth like surfaces.
机译:使用常规显微镜技术检查与生物膜除去磺化酚醛化(SP)的有关的物理机制是难以的。与实时交叉偏振光光学相干断层扫描系统集成的自定义流动单元系统研究了在纯胁迫下的口服多物质生物膜时去除生物膜去除的动态速度。近红外线1310-NM CP-OCT系统未破坏性成像液体浸入近30帧/秒的口腔生物膜。这种动态成像能够确定粘附在牙齿的牙齿上的口腔生物膜上的粘性和粘附相关中断。对于最初在没有蔗糖的情况下初始生长的多种生物膜,唾液涂覆的羟基磷灰石(HA)上的生物膜破坏在HA-Biofilm界面处占据粘合剂衰竭。对于在蔗糖存在下生长的多种生物膜,破坏是由粘性破坏的粘性破坏占主导地位。该新型CP-OCT流动细胞测定具有潜力检查抗生物膜试剂和齿状表面之间的快速相互作用。

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