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Preliminary Study of a Low-Cost Point-of-Care Testing System Using Screen-Printed Biosensors for Early Biomarkers Detection Related to Alzheimer Disease

机译:使用丝网印刷生物传感器的低成本护理点测试系统的初步研究,用于与阿尔茨海默氏病相关的早期生物标记物的检测

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Among neurodegenerative diseases, Alzheimer Disease (AD) represents one of the most widespread pathologies, for which an early diagnosis is still missing. A peculiar expression of an altered conformational isoform of p53 protein was reported to be a potential biomarker able to distinguish AD subjects from healthy population, quantifiable using a blood-based enzyme-linked immunosorbent assay (ELISA). In order to overcome ELISA limitations, related to reliability and to improve sensitivity, this study aimed to realize a low cost highly sensitive portable point-of-care (PoC) testing system based on screen printed electrochemical sensors (SPES). The development of the platform specifically included both the design of the sensing probe and of the electronic circuit devoted to the conditioning and acquisition of the transduced electric signal. Preliminary testing of the circuit were performed recording changes in the conductivity of NaCl solution and quantifying electrodes coating with antibodies using Electrochemical Impedance Spectroscopy (EIS) principle. Results obtained with saline solution, showed the ability of the circuit to give the best response corresponding to low changes in NaCl concentration (sensitivity 0.2 mA/(mg/ml)), suggesting a good sensitivity of the platform. Findings obtained from EIS showed the ability of the circuit to discriminate between different concentrations of antibodies coatings (sensitivity 80 uA/ug). Preliminary calibration of the sensor using interleukin IL-8 showed an increase in the maximum peak of current proportional to the increase of protein concentration, achieving a sensitivity of 35 µAg and reporting also a good value of reproducibility, really promising in the perspective of lower values of proteins concentrations.
机译:在神经退行性疾病中,阿尔茨海默病(AD)代表最广泛的病理之一,至今仍缺乏早期诊断。据报道,p53蛋白构象同工异型的表达是一种潜在的生物标志物,能够将AD受试者与健康人群区分开,可以使用基于血液的酶联免疫吸附测定(ELISA)进行定量。为了克服与可靠性相关的ELISA局限性并提高灵敏度,本研究旨在实现一种基于丝网印刷电化学传感器(SPES)的低成本高灵敏度便携式即时护理(PoC)测试系统。该平台的开发特别包括传感探头的设计和专门用于调节和获取所转换的电信号的电子电路的设计。进行电路的初步测试,以记录NaCl溶液的电导率变化,并使用电化学阻抗谱(EIS)原理量化涂有抗体的电极。用盐溶液获得的结果表明,该电路具有响应于NaCl浓度低变化(灵敏度为0.2 mA /(mg / ml))的最佳响应的能力,这表明该平台具有良好的灵敏度。从EIS获得的结果表明,该电路能够区分不同浓度的抗体涂层(灵敏度为80 uA / ug)。使用白介素IL-8对传感器进行的初步校准显示,最大电流峰值的增加与蛋白质浓度的增加成正比,达到35 µA / ng的灵敏度,并且还报告了良好的重现性,从较低的蛋白质浓度值。

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