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Design, fabrication, and characterization of polymeric BioMEMS for the detection of Feline Immunodeficiency Virus (FIV)

机译:用于检测猫免疫缺陷病毒(FIV)的聚合物BioMEMS的设计,制造和表征

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This project comprises the development of a novel polymeric BioMEMS device capable of rapidly detecting FIV in a minimally invasive manner. FIV severely inhibits the infected feline from mounting an immune response, and causes susceptibility to other types of diseases. Vaccines against FIV do exist, but have some strong limitations to their effectiveness; so early detection is the best method to combat the spread of the disease. Current testing methods look for antibodies to the FIV protein p24 in feline blood using established Enzyme Linked ImmunoSorbent Assay (ELISA) protocols. The focus of this research is to design and construct a device that can detect antibodies to p24 in a salivary sample by non-intrusive electrochemical means. The device is constructed upon a silicon substrate with gold microelectrodes coated with polypyrrole (Ppy), an electrically conducting and biocompatible polymer. In the current phase of the research, the Ppy deposition process has been optimized with regards to film thickness, uniformity and conductivity. Microfluidic channels have been fabricated using SU-8, an epoxy based polymer that enables the test sample and other solutions to pass freely through the device. The Ppy will be coated with anti-FIV p24 antibodies that can capture FIV p24 antigens present in a salivary sample. Future research will involve the analysis of Ppy/antibody interaction and its effect on functionality. The capture of such antigens will interfere with a reduction-oxidation (redox) reaction in a subsequently added ionic solution. This interference will change the characteristic resistance of the solution yielding a qualitative test for the presence of the viral antigens in the sample and hence determining the occurrence of infection.
机译:该项目包括新型聚合物BioMEMS器件的开发,该器件能够以微创方式快速检测FIV。 FIV严重抑制了感染的猫的免疫反应,并导致对其他类型疾病的易感性。确实存在针对FIV的疫苗,但其有效性受到一些强烈限制;因此,尽早发现是抵抗疾病传播的最佳方法。当前的测试方法使用已建立的酶联免疫吸附测定(ELISA)方案在猫血中寻找针对FIV蛋白p24的抗体。这项研究的重点是设计和构建一种可以通过非侵入式电化学手段检测唾液样品中针对p24的抗体的设备。该设备构建在具有金微电极的硅基板上,该金微电极涂有聚吡咯(Ppy)(一种导电且生物相容的聚合物)。在目前的研究阶段,Ppy沉积工艺已在膜厚度,均匀性和导电性方面进行了优化。微流体通道是使用SU-8制造的,SU-8是一种基于环氧的聚合物,能够使测试样品和其他溶液自由通过设备。 Ppy将涂有抗FIV p24抗体,可以捕获唾液样品中存在的FIV p24抗原。未来的研究将涉及对Ppy /抗体相互作用及其对功能的影响的分析。这种抗原的捕获将干扰随后添加的离子溶液中的还原-氧化(redox)反应。这种干扰将改变溶液的特征抗性,从而对样品中病毒抗原的存在进行定性测试,从而确定感染的发生。

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