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A highly sensitive plasma-based amyloid-β detection system through medium-changing and noise cancellation system for early diagnosis of the Alzheimer’s disease

机译:通过介质变化和噪声消除系统的高度灵敏的基于血浆的淀粉样β-淀粉检测系统可早期诊断阿尔茨海默氏病

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摘要

We developed an interdigitated microelectrode (IME) sensor system for blood-based Alzheimer’s disease (AD) diagnosis based on impedimetric detection of amyloid-β (Aβ) protein, which is a representative candidate biomarker for AD. The IME sensing device was fabricated using a surface micromachining process. For highly sensitive detection of several tens to hundreds of picogram/mL of Aβ in blood, medium change from plasma to PBS buffer was utilized with signal cancellation and amplification processing (SCAP) system. The system demonstrated approximately 100-folds higher sensitivity according to the concentrations. A robust antibody-immobilization process was used for stability during medium change. Selectivity of the reaction due to the affinity of Aβ to the antibody and the sensitivity according to the concentration of Aβ were also demonstrated. Considering these basic characteristics of the IME sensor system, the medium change was optimized in relation to the absolute value of impedance change and differentiated impedance changes for real plasma based Aβ detection. Finally, the detection of Aβ levels in transgenic and wild-type mouse plasma samples was accomplished with the designed sensor system and the medium-changing method. The results confirmed the potential of this system to discriminate between patients and healthy controls, which would enable blood-based AD diagnosis.
机译:我们开发了一种基于手指的淀粉样蛋白-β(Aβ)蛋白的阻抗检测技术的叉指微电极(IME)传感器系统,用于基于血液的阿尔茨海默氏病(AD)诊断,该蛋白是AD的代表性候选生物标志物。 IME传感设备是使用表面微加工工艺制造的。为了高度灵敏地检测血液中数十到数百皮克/毫升的Aβ,利用从血浆到PBS缓冲液的培养基变化以及信号消除和放大处理(SCAP)系统。该系统显示出根据浓度大约高出100倍的灵敏度。鲁棒的抗体固定过程用于培养基更换过程中的稳定性。还证明了由于Aβ对抗体的亲和力引起的反应的选择性和根据Aβ浓度的敏感性。考虑到IME传感器系统的这些基本特征,针对基于真实血浆的Aβ检测,相对于阻抗变化的绝对值和微分的阻抗变化,对介质变化进行了优化。最后,通过设计的传感器系统和培养基更换方法完成了转基因和野生型小鼠血浆样品中Aβ水平的检测。结果证实了该系统在区分患者和健康对照者方面的潜力,这将使基于血液的AD诊断成为可能。

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