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Label-free detection of angiogenesis biomarkers using Bloch surface waves on one dimensional photonic crystals

机译:在一维光子晶体上使用Bloch表面波对血管生成生物标记物进行无标记检测

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We describe the design and fabrication of biochips based on one dimensional photonic crystals supporting Bloch surface waves for label-free optical biosensing. The planar stacks of the biochips are composed of silica, tantala and titania that were deposited using plasma ion assisted evaporation under high vacuum conditions. The biochip surfaces were functionalized by silanization and appropriate fluidic cells were designed to operate in an automated platform. An angularly resolved optical sensing apparatus was assembled to carry out the sensing studies. The angular operation is obtained by a focused laser beam at a fixed wavelength and detection of the angular reflectance spectrum by means of an array detector. Practical application of the sensor was demonstrated by detecting a specific glycoprotein, Angiopoietin 2, that is involved in angiogenesis and inflammation processes. The protocol used for the label-free detection of Angiopoietin 2 is described and the results of an exemplary assay are given, confirming that an efficient detection can be achieved.
机译:我们描述了基于一维光子晶体的生物芯片的设计和制造,该光子晶体支持Bloch表面波用于无标签的光学生物传感。生物芯片的平面叠层由二氧化硅,坦塔拉和二氧化钛组成,它们是在高真空条件下使用等离子体离子辅助蒸发沉积的。生物芯片表面通过硅烷化功能化,并设计了合适的流体池以在自动化平台中运行。组装了角度分辨光学传感设备以进行传感研究。通过在固定波长处聚焦激光束并通过阵列检测器检测角反射光谱来获得角操作。通过检测与血管生成和炎症过程有关的特定糖蛋白血管生成素2证明了该传感器的实际应用。描述了用于血管生成素2的无标记检测的方案,并给出了示例性测定的结果,证实可以实现有效的检测。

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