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首页> 外文期刊>Journal of Biophotonics >Development of highly reliable SERS-active photonic crystal fiber probe and its application in the detection of ovarian cancer biomarker in cyst fluid
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Development of highly reliable SERS-active photonic crystal fiber probe and its application in the detection of ovarian cancer biomarker in cyst fluid

机译:高可靠的SERS-活性光子晶体纤维探针的研制及其在囊液中卵巢癌生物标志物检测的应用

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摘要

Conventionally Surface-enhanced Raman spectroscopy (SERS) is realized by adsorbing analytes onto nano-roughened planar substrate coated with noble metals (silver or gold) or their colloidal nanoparticles (NPs). Nanoscale irregularities in such substrates/NPs could lead to SERS sensors with poor reproducibility and repeatability. Herein, we demonstrate a suspended core photonic crystal fiber (PCF) based SERS sensor with extremely high reproducibility and repeatability in measurement with a relative SD of only 1.5% and 4.6%, respectively, which makes it more reliable than any existing SERS sensor platforms. In addition, our platform could improve the detection sensitivity owing to the increased interaction area between the guided light and the analyte, which is incorporated into the holes that runs along the length of the PCF. Numerical calculation established the significance of the interplay between light coupling efficiency and evanescent field distribution, which could eventually determine the sensitivity and reliability of the developed SERS active-PCF sensor. As a proof of concept, using this sensor, we demonstrated the detection of haptoglobin, a biomarker for ovarian cancer, contained within the ovarian cyst fluid, which facilitated in differentiating the stages of cancer. We envision that with necessary refinements, this platform could potentially be translated as a next-generation highly sensitive SERS-active opto-fluidic biopsy needle for the detection of biomarkers in body fluids.
机译:通过将分析物吸附到涂覆有贵金属(银或金)或其胶体纳米颗粒(NPS)的纳米粗糙的平面基底上来实现常规表面增强的拉曼光谱(SERS)。这种基材/ NPS中的纳米级不规则可能导致SERS传感器具有差的可重复性和可重复性。这里,我们展示了基于悬浮的芯光子晶体纤维(PCF)的SERS传感器,其具有极高的再现性和可重复性,其相对SD分别仅为1.5%和4.6%,这使得它比任何现有的SERS传感器平台更可靠。此外,由于引导光和分析物之间的相互作用区域增加,我们的平台可以提高检测灵敏度,这掺入沿着PCF的长度运行的孔中。数值计算建立了光耦合效率和渐逝场分布之间的相互作用的意义,这可能最终确定开发的SERS Active-PCF传感器的灵敏度和可靠性。作为概念证据,使用该传感器,我们证明了卵巢癌的生物标志物的检测,卵巢囊肿中含有卵巢囊肿,促进了癌症的阶段。我们设想,通过必要的改进,该平台可能被翻译为下一代高度敏感的SERS-主动光流体活组织检查,用于检测体液中的生物标志物。

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