纳米技术
生物传感器
单层
材料科学
多路复用
模块化设计
晶体管
计算机科学
生物信息学
工程类
电气工程
生物
电压
操作系统
作者
Rui Qing,Mantian Xue,Jiayuan Zhao,Lidong Wu,Andreas Breitwieser,Eva Smorodina,Thomas Schubert,Giovanni Azzellino,David Jin,Jing Kong,Tomás Palacios,Uwe B. Sleytr,Shuguang Zhang
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2023-07-21
卷期号:9 (29)
被引量:1
标识
DOI:10.1126/sciadv.adf1402
摘要
Affinity-based biosensing can enable point-of-care diagnostics and continuous health monitoring, which commonly follows bottom-up approaches and is inherently constrained by bioprobes' intrinsic properties, batch-to-batch consistency, and stability in biofluids. We present a biomimetic top-down platform to circumvent such difficulties by combining a "dual-monolayer" biorecognition construct with graphene-based field-effect-transistor arrays. The construct adopts redesigned water-soluble membrane receptors as specific sensing units, positioned by two-dimensional crystalline S-layer proteins as dense antifouling linkers guiding their orientations. Hundreds of transistors provide statistical significance from transduced signals. System feasibility was demonstrated with rSbpA-ZZ/CXCR4QTY-Fc combination. Nature-like specific interactions were achieved toward CXCL12 ligand and HIV coat glycoprotein in physiologically relevant concentrations, without notable sensitivity loss in 100% human serum. The construct is regeneratable by acidic buffer, allowing device reuse and functional tuning. The modular and generalizable architecture behaves similarly to natural systems but gives electrical outputs, which enables fabrication of multiplex sensors with tailored receptor panels for designated diagnostic purposes.
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