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便携式、低成本、高灵敏度的腔增强吸收(CEA)检测。

Portable, low cost and sensitive cavity enhanced absorption (CEA) detection.

机构信息

Department of Clinical Biochemistry, James Cook University Hospital, Middlesbrough TS4 3BW, UK.

出版信息

Analyst. 2021 Jan 4;146(1):196-206. doi: 10.1039/d0an01852j.

DOI:10.1039/d0an01852j
PMID:33140076
Abstract

Absorption is a widely used technique for a range of different applications. It has lower sensitivity than many other techniques such as fluorescence which has 100 to 1000 times higher sensitivity than absorption. Optical cavity approaches have been developed where the light passes back and forth, within the sample, between two high reflectivity mirrors to increase the pathlength and sensitivity. These approaches have not yet, however, been widely used for analytical applications and for point-of-care diagnostics. Here we show a portable cavity enhanced absorption (CEA) spectrometer and a low cost point-of-care (POC) reader with CEA detection with mechanical elements fabricated using 3D printing. The CEA spectrometer can be used in both single pass and multi-pass cavity enhanced mode to provide measurements in the visible region that are very sensitive and over a wide dynamic range. The CEA mode was shown for Rhodamine B dye to increase the pathlength 57.8 fold over single pass measurements and an LOD of 7.1 × 10-11 M. The cost of the CEA POC reader was reduced by use of narrow band LEDs, photodiodes and removal of fibre optic coupling and with a 14 fold increase in the pathlength over conventional single pass microplate readers. The CEA POC reader was demonstrated for immunoassay of C-Reactive Protein (CRP), Procalcitonin (PCT) and Interleukin 6 (IL-6), towards a three biomarker panel to aid the diagnosis of sepsis. The CEA POC reader can be integrated with wireless connectivity for cloud based data sharing. We show here the potential for the wider use of optical cavity approaches where there is a need for sensitive absorption measurements and also for low cost point-of-care diagnostics.

摘要

吸收是一种广泛应用于各种不同应用的技术。它的灵敏度比荧光等许多其他技术低,荧光的灵敏度比吸收高 100 到 1000 倍。已经开发出光学腔方法,其中光在两个高反射率镜子之间来回通过样品,以增加光程和灵敏度。然而,这些方法尚未广泛应用于分析应用和即时护理诊断。在这里,我们展示了一种便携式腔增强吸收(CEA)光谱仪和一种具有 CEA 检测功能的低成本即时护理(POC)读取器,其机械元件使用 3D 打印制造。CEA 光谱仪可用于单通和多通腔增强模式,以在可见区域提供非常灵敏且具有宽动态范围的测量。对于 Rhodamine B 染料,CEA 模式将光程增加了 57.8 倍,LOD 为 7.1×10-11M。通过使用窄带 LED、光电二极管以及去除光纤耦合,并将传统单通微板读取器的光程增加 14 倍,降低了 CEA POC 读取器的成本。CEA POC 读取器用于 C-反应蛋白(CRP)、降钙素原(PCT)和白细胞介素 6(IL-6)的免疫测定,针对三标志物面板以辅助败血症的诊断。CEA POC 读取器可以与无线连接集成,用于基于云的数据共享。我们在这里展示了光学腔方法更广泛应用的潜力,这些方法需要灵敏的吸收测量,并且还需要低成本的即时护理诊断。

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