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Nanoporous hard carbon membranes for medical applications

机译:用于医疗用途的纳米多孔硬碳膜

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Current blood glucose sensors have proven to be inadequate for long term in vivo applications; membrane biofouling and inflammation play significant roles in sensor instability. An ideal biosensor membrane material must prevent protein adsorption and promote integration of the sensor with the surrounding tissue. Furthermore, biosensor membranes must be sufficiently thin and porous in order to allow the sensor to rapidly respond to fluctuations in analyte concentration. In this study, the use of diamondlike carbon-coated anodized aluminum oxide as a potential biosensor membrane is discussed. Diamondlike carbon films and diamondlike carbon-coated anodized aluminum oxide nanoporous membranes were examined using scanning electron microscopy, atomic force microscopy, X-ray photoelectron spectroscopy, Raman spectroscopy, and platelet rich plasma testing. The diamondlike carbon-coated anodized aluminum oxide membranes remained free from protein adsorption during in vitro platelet rich plasma testing. We anticipate that this novel membrane could find use in immunoisolation devices, pacemakers, kidney dialysis membranes, microdialysis systems, and other devices facing biocompatibility issues that limit in vivo function.
机译:事实证明,当前的血糖传感器不足以用于长期的体内应用。膜生物结垢和炎症在传感器不稳定中起重要作用。理想的生物传感器膜材料必须防止蛋白质吸附,并促进传感器与周围组织的整合。此外,生物传感器膜必须足够薄且多孔,以允许传感器快速响应分析物浓度的波动。在这项研究中,讨论了使用类金刚石碳涂层阳极氧化铝作为潜在的生物传感器膜。使用扫描电子显微镜,原子力显微镜,X射线光电子能谱,拉曼光谱和富血小板血浆测试对类金刚石碳膜和类金刚石碳包覆的阳极氧化铝纳米多孔膜进行了检查。在富含血小板的体外血浆测试过程中,类金刚石碳涂层的阳极氧化铝膜保持无蛋白质吸附。我们预期这种新型膜可用于免疫隔离装置,起搏器,肾脏透析膜,微透析系统和其他面临限制体内功能的生物相容性问题的装置。

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