石墨烯
甲基丙烯酰胺
材料科学
纳米技术
生物传感器
适体
共聚物
生物电子学
肌钙蛋白I
ISFET
场效应晶体管
晶体管
聚合物
电气工程
心理学
工程类
复合材料
电压
精神科
生物
心肌梗塞
遗传学
丙烯酰胺
作者
Rupali Bagale,Manova Santhosh Yesupatham,Abdellah Hambli,Subhankar Sahu,Christophe Ritzenthaler,Mandana Amiri,Sandro Spagnolo,Anna Kálosi,Francesco Basini,H. Happy,Rabah Boukherroub,Wolfgang Knoll,Tibor Hianik,E. Majková,Peter Šiffalovič,Roberto Corradini,David Montaigne,Eloïse Woitrain,Adriana Annušová,Sabine Szunerits
出处
期刊:ACS Sensors
[American Chemical Society]
日期:2025-08-25
被引量:1
标识
DOI:10.1021/acssensors.5c02191
摘要
Field-effect transistors (FETs) are an integrated part of various electronic products and play an irreplaceable role in modern-day bioelectronics and biosensors. The electronic performance of FET-based sensors is intrinsically correlated with the choice of the sensing layer, with graphene being one of the most widely employed active semiconductor materials through which charge carriers (i.e., electrons or holes) propagate upon bioreceptor–analyte interactions. One of the challenges remaining before widespread practical applications of graphene-based FET (gFET) is linked to its direct operation in blood, as the complex protein environment matrix causes significant issues. Here, we propose a sensitive and rapid detection of cardiac troponin I (cTnI) in unprocessed blood samples by integrating pyrene-tagged antifouling copolymer thin films onto the graphene channel. By leveraging the unique properties of the zwitterionic copolymer composed of N-(2-hydroxypropyl) methacrylamide (HPMAA) and carboxy betaine methacrylamide (CBMAA) in the form of a pyrene-tagged poly[HPMAA-co-CBMAA], we demonstrate excellent signal stability in whole blood, along with the potential for sensitive cTnI sensing in high ionic strength media (1× PBS) upon immobilization of DNA aptamers onto the copolymer network. With a limit of detection of 0.6 ± 0.1 pg mL–1 and a limit of quantification of 1.8 ± 0.3 pg mL–1, the sensor operates well within the clinically relevant cTnI range, demonstrating a significant step forward for cardiovascular biomarker monitoring in physiologically relevant conditions.
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