A Flexible Aptameric Graphene Field‐Effect Nanosensor Capable of Automatic Liquid Collection/Filtering for Cytokine Storm Biomarker Monitoring in Undiluted Sweat

Author:

Huang Cong123,Li Dongliang1,Liu Jialin1,Hou Siyu1,Yang Weisong1,Wang Hao1,Wang Junduo1,Wang Ziran4,Li Feiran13,Hao Zhuang5,Huang Suichu1,Zhao Xuezeng13,Hu PingAn23ORCID,Pan Yunlu13ORCID

Affiliation:

1. State Key Laboratory of Robotics and Systems School of Mechatronics Engineering Harbin Institute of Technology Harbin 150001 China

2. School of Materials Science and Engineering Harbin Institute of Technology Harbin 150001 China

3. Key Laboratory of Micro‐systems and Micro‐structures Manufacturing Ministry of Education Harbin Institute of Technology Harbin 150001 China

4. Key Laboratory of High‐Effciency and Clean Mechanical Manufacture of MOE School of Mechanical Engineering Shandong University Jinan 250061 China

5. School of Mechanical Engineering & Automation Beihang University Beijing 100191 China

Abstract

AbstractA wearable sensor capable of directly detecting cytokines in external secretions external to the human body is pivotal for gauging the intensity of the immune response and circumventing inflammatory storms, a significant clinical concern. The detection of low‐concentration cytokines is often hampered due to interference from impurities in secretions. Addressing this challenge, a wearable detection system is developed by integrating a Janus membrane with water auto‐collection/filtering capabilities, and aptamer‐modified graphene field‐effect transistor sensors, enabling the detection of low‐concentration cytokines in undiluted sweat samples. The Janus membrane can automatically filter external secretions and transport them to the sensor surface, effectively eliminating impurity interference and enhancing the sensor's detection capabilities. The device can sensitively detect cytokines (such as TNF‐α, a marker for inflammation and cancer) in undiluted sweat, with a detection range spanning 0.5 to 500 pM, and a detection limit reaching 0.31 pM. The ultra‐flexibility of the sensor is also verified, maintaining stable electrical properties even after enduring up to 50 extreme deformations. These findings indicate that the wearable detection system has the potential to realize low‐concentration cytokines monitoring in the sweat of inflammatory patients, to assist the healthcare system in controlling the body's immune status.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Natural Science Foundation of Heilongjiang Province

Natural Science Foundation of Chongqing Municipality

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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