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Piezo-resistive method for tuberculosis detection using microcantilever biosensor

机译:微悬臂梁生物传感器检测结核的压阻法

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摘要

Microcantilever device is utilized in several biosensors for detection of bio-molecule of interest. Biosensors task is to identify presence of targeted molecule and supply result into a measurable signal. Comparing with conventional biological equipments, micro scale biosensors are very fast, reliable and price effective. Microelectro-mechanical systems (MEMS)anoelectromechanical systems are used for designing of such biosensors, which might be utilized in several biological applications. Sensing mechanism of biosensor is varied with the application. This paper is focused on detection of bio-molecule using microcantilever beam. Biosensor has shown here uses piezo-resistive method for detection of targeted bio-molecule. This Bio-MEMS device is designed and simulated using coventorware software. This biosensor wants to identify a presence of T.B. in a very suspected patient. For detection of primary stage of tuberculosis (ESAT-6), specific antibodies need to immobilize on top of microcantilever. Once patient sample (consist of ESAT-6) is placed on functionalized cantilever surface, biochemical reaction happen between tuberculosis antigens ESAT-6 and antibodies. Adsorption of antigens will increase mass working on cantilever and results in bending of microcantilever. This deflection shows the presence of tuberculosis within the patient sample.
机译:微悬臂梁装置用于几种生物传感器中,以检测目标生物分子。生物传感器的任务是识别目标分子的存在并将结果提供给可测量的信号。与传统的生物设备相比,微型生物传感器非常快速,可靠且价格合理。微机电系统(MEMS)/纳米机电系统用于设计这样的生物传感器,其可以在几种生物应用中使用。生物传感器的传感机制随应用而变化。本文着重于利用微悬臂梁检测生物分子。生物传感器在这里显示了使用压阻法检测目标生物分子的方法。使用Coventorware软件设计和仿真此Bio-MEMS设备。该生物传感器希望识别T.B.在一个非常怀疑的病人中。为了检测结核的初级阶段(ESAT-6),需要将特异性抗体固定在微悬臂梁的顶部。一旦将患者样品(由ESAT-6组成)放置在功能化的悬臂表面上,结核抗原ESAT-6和抗体之间就会发生生化反应。抗原的吸附将增加作用于悬臂的质量,并导致微悬臂弯曲。这种偏转表明患者样品中存在结核病。

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