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首页> 外文期刊>Journal of Medical Engineering >Detection of Myoglobin with an Open-Cavity-Based Label-Free Photonic Crystal Biosensor
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Detection of Myoglobin with an Open-Cavity-Based Label-Free Photonic Crystal Biosensor

机译:基于基于腔的无标记光子晶体生物传感器检测肌红蛋白。

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The label-free detection of one of the cardiac biomarkers, myoglobin, using a photonic-crystal-based biosensor in a total-internal-reflection configuration (PC-TIR) is presented in this paper. The PC-TIR sensor possesses a unique open optical microcavity that allows for several key advantages in biomolecular assays. In contrast to a conventional closed microcavity, the open configuration allows easy functionalization of the sensing surface for rapid biomolecular binding assays. Moreover, the properties of PC structures make it easy to be designed and engineered for operating at any optical wavelength. Through fine design of the photonic crystal structure, biochemical modification of the sensor surface, and integration with a microfluidic system, we have demonstrated that the detection sensitivity of the sensor for myoglobin has reached the clinically significant concentration range, enabling potential usage of this biosensor for diagnosis of acute myocardial infarction. The real-time response of the sensor to the myoglobin binding may potentially provide point-of-care monitoring of patients and treatment effects.
机译:本文介绍了使用基于光子晶体的生物传感器以全内反射配置(PC-TIR)对心脏生物标记物之一肌红蛋白进行无标记检测。 PC-TIR传感器具有独特的开放式光学微腔,在生物分子测定中具有多个关键优势。与常规的封闭微腔相比,开放式配置可轻松实现传感表面的功能化,以快速进行生物分子结合测定。此外,PC结构的特性使其易于设计和制造以在任何光波长下工作。通过对光子晶体结构的精细设计,传感器表面的生化修饰以及与微流体系统的集成,我们证明了传感器对肌红蛋白的检测灵敏度已达到临床上显着的浓度范围,从而使得该生物传感器可用于诊断急性心肌梗死。传感器对肌红蛋白结合的实时响应可能会潜在地为患者提供即时护理监测和治疗效果。

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