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晶体管最优信号转导实现阿尔茨海默病酶的快速、定量治疗筛选。

Rapid, quantitative therapeutic screening for Alzheimer's enzymes enabled by optimal signal transduction with transistors.

机构信息

Alternative Computing Group, Nanoscale Device Characterization Division, National Institute of Standards and Technology, Gaithersburg, MD 20899, USA.

出版信息

Analyst. 2020 Apr 21;145(8):2925-2936. doi: 10.1039/c9an01804b. Epub 2020 Mar 11.

DOI:10.1039/c9an01804b
PMID:32159165
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7443690/
Abstract

We show that commercially sourced n-channel silicon field-effect transistors (nFETs) operating above their threshold voltage with closed loop feedback to maintain a constant channel current allow a pH readout resolution of (7.2 ± 0.3) × 10 at a bandwidth of 10 Hz, or ≈3-fold better than the open loop operation commonly employed by integrated ion-sensitive field-effect transistors (ISFETs). We leveraged the improved nFET performance to measure the change in solution pH arising from the activity of a pathological form of the kinase Cdk5, an enzyme implicated in Alzheimer's disease, and showed quantitative agreement with previous measurements. The improved pH resolution was realized while the devices were operated in a remote sensing configuration with the pH sensing element off-chip and connected electrically to the FET gate terminal. We compared these results with those measured by using a custom-built dual-gate 2D field-effect transistor (dg2DFET) fabricated with 2D semi-conducting MoS channels and a signal amplification of 8. Under identical solution conditions the nFET performance approached the dg2DFETs pH resolution of (3.9 ± 0.7) × 10. Finally, using the nFETs, we demonstrated the effectiveness of a custom polypeptide, p5, as a therapeutic agent in restoring the function of Cdk5. We expect that the straight-forward modifications to commercially sourced nFETs demonstrated here will lower the barrier to widespread adoption of these remote-gate devices and enable sensitive bioanalytical measurements for high throughput screening in drug discovery and precision medicine applications.

摘要

我们表明,在闭环反馈下,商业来源的 n 通道硅场效应晶体管(nFET)在高于其阈值电压的情况下运行,以保持恒定的沟道电流,可以实现 pH 值的读出分辨率为(7.2±0.3)×10,带宽为 10 Hz,比集成离子敏感场效应晶体管(ISFET)通常采用的开环操作要好约 3 倍。我们利用 nFET 的改进性能来测量由于激酶 Cdk5 的病理形式的活性引起的溶液 pH 值的变化,Cdk5 是阿尔茨海默病中涉及的一种酶,并与以前的测量结果表现出定量一致性。在远程传感配置中操作器件时实现了改进的 pH 分辨率,其中 pH 传感元件位于片外,并通过电气连接到 FET 栅极端子。我们将这些结果与使用定制的双栅 2D 场效应晶体管(dg2DFET)进行的测量结果进行了比较,该晶体管由 2D 半导体 MoS 沟道制成,信号放大倍数为 8。在相同的溶液条件下,nFET 的性能接近 dg2DFET 的 pH 分辨率(3.9±0.7)×10。最后,使用 nFET,我们证明了定制多肽 p5 作为治疗剂在恢复 Cdk5 功能方面的有效性。我们预计,这里展示的对商业来源的 nFET 进行的简单修改将降低这些远程门控器件广泛采用的障碍,并能够在药物发现和精准医学应用中的高通量筛选中进行敏感的生物分析测量。

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Appl Phys Lett. 2019;115(7). doi: 10.1063/1.5100154.
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Nano Lett. 2019 Sep 11;19(9):6658-6664. doi: 10.1021/acs.nanolett.9b02939. Epub 2019 Aug 22.
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Nanoscale. 2019 Sep 7;11(33):15622-15632. doi: 10.1039/c9nr03171e. Epub 2019 Aug 13.
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Reproducible Performance Improvements to Monolayer MoS Transistors through Exposed Material Forming Gas Annealing.通过暴露材料形成气体退火实现单层MoS晶体管可重复的性能提升。
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CDK5: A Unique CDK and Its Multiple Roles in the Nervous System.CDK5:一种独特的 CDK 及其在神经系统中的多种作用。
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