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用于无标记检测前列腺特异性抗原的定制生物功能化生物传感器。

Tailored Biofunctionalized Biosensor for the Label-Free Sensing of Prostate-Specific Antigen.

作者信息

Mishra Sachin, Kim Eun-Seong, Sharma Parshant Kumar, Wang Zhi-Ji, Yang Sung-Hyun, Kaushik Ajeet Kumar, Wang Cong, Li Yang, Kim Nam-Young

机构信息

NDAC Centre, Kwangwoon University, Nowon-gu, Seoul 01897, South Korea.

Department of Electronic Engineering, Kwangwoon University, Nowon-gu, Seoul 01897, South Korea.

出版信息

ACS Appl Bio Mater. 2020 Nov 16;3(11):7821-7830. doi: 10.1021/acsabm.0c01002. Epub 2020 Oct 30.

Abstract

The increase in the demand and popularity of smart biosensors has brought a novel and innovative concept to develop a diverse range of semen mutual biomarker (i.e., prostate-specific antigen, PSA)-based biodevices for our daily life applications. Using a versatile strategy, here we have developed a next-generation miniaturized capacitive biomarker-based sensor, which facilitates a direct, rapid quantitation and ultrafast detection of prostate-specific antigen (PSA) selectively. To fabricate an affordable PSA biosensor, an interdigitated capacitor (IDC) was functionalized and to detect PSA at concentrations varying from 0.1 to 10 μL/mL, with a response time of 3 s. Moreover, the PSA biosensor showed a high level of selectivity due to the successful probing of the capacitive response-generated biomolecular interactions using external stimuli at the bioelectrode. The resulting IDC-based PSA biosensors are capable of excellent reproducibility and reusability, which are required for real-time biosensing of any targeted biomolecules where low-concentration detection is a key for point-of-care, on-site sensing applications. We anticipate that this research could open exciting opportunities for PSA detection at a low concentration level.

摘要

智能生物传感器需求的增加和受欢迎程度带来了一个新颖且创新的概念,即开发一系列基于多种精液共同生物标志物(即前列腺特异性抗原,PSA)的生物设备用于我们的日常生活应用。通过一种通用策略,我们在此开发了一种基于电容式生物标志物的下一代微型传感器,它能够直接、快速地定量并选择性地超快速检测前列腺特异性抗原(PSA)。为制造一种经济实惠的PSA生物传感器,对叉指式电容器(IDC)进行了功能化处理,以检测浓度在0.1至10 μL/mL之间的PSA,响应时间为3秒。此外,由于在生物电极上利用外部刺激成功探测到电容响应产生的生物分子相互作用,该PSA生物传感器表现出高度的选择性。由此产生的基于IDC的PSA生物传感器具有出色的可重复性和可重用性,这对于任何目标生物分子的实时生物传感都是必需的,其中低浓度检测是即时护理、现场传感应用的关键。我们预计这项研究可为低浓度水平的PSA检测带来令人兴奋的机会。

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