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Development of a surface plasmon resonance acetone sensor for noninvasive screening and monitoring of diabetes

机译:用于非侵入性筛选和监测糖尿病的表面等离子体共振丙酮传感器的开发

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Diabetes can cause many complications in the human body. The disease is commonly diagnoses invasively using blood glucose test. A good correlation between blood glucose and exhale breathe acetone has opened a way for non-invasive diagnosis through the detection of the breath acetone from the exhale breathe. However, the conventional means of detecting exhale breathe acetone (e.g. GC-MS) are bulky, require technical knowhow, do not offer real time measurement and found only at advanced institutions that can afford the equipment. This work is aimed at developing a real time, sensitive and selective optical based Surface Plasmon Resonance (SPR) breath acetone biosensor for non-invasive monitoring and screening of diabetes. The motivation of this work arises from the promising advantages of optical based biosensors over other biosensors. Additionally, a novel doped polyaniline (PANI) conducting polymer would be the SPR metallic layer while Chitosan would be the selective sensing layer. Mathematical modeling and SPR simulation has been conducted. The result has shown that the replacement of conventional gold or silver SPR layer with doped Polyaniline (PANI) SPR layer provides better promising sensitivity at mid infrared wavelength range. Therefore, additional inclusion of chitosan layer on the proposed SPR based biosensor would give rise to a sensitive and selective breathe acetone biosensor for easy monitoring and screening of diabetes.
机译:糖尿病会导致人体中的许多并发症。这种疾病通常使用血糖测试侵入性诊断。血糖和呼气呼吸丙酮之间的良好相关性通过检测来自呼气呼吸的呼吸丙酮来开辟了一种非侵入性诊断的方式。然而,常规检测呼气呼吸丙酮(例如GC-MS)的手段庞大,需要技术知识,不提供实时测量,仅在能够提供设备的先进机构中找到。这项工作旨在开发实时,敏感和选择性的光学表面等离子体共振(SPR)呼吸丙酮生物传感器,用于非侵入性监测和筛选糖尿病。这项工作的动机是从其他生物传感器上的光学生物传感器的有前途优势。另外,一种新型掺杂的聚苯胺(PANI)导电聚合物是SPR金属层,而壳聚糖将是选择性感测层。已经进行了数学建模和SPR模拟。结果表明,用掺杂的聚苯胺(PANI)SPR层更换常规金或银SPR层,在中红外波长范围内提供更好的有希望的灵敏度。因此,壳聚糖层对所提出的SPR基生物传感器的额外包含将引起敏感和选择性呼吸丙酮生物传感器,以便于监测和筛选糖尿病。

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