A Fiber Sensor for Long‐Term Monitoring of Extracellular Potassium Ion Fluctuations in Chronic Neuropsychiatric Diseases

Author:

Wang Jiajia1,Wang Liyuan1,Yang Yiqing1,Li HongJian2,Huang Xinlin1,Liu Ziwei1,Yu Sihui1,Tang Chengqiang1,Chen Jiawei1,Shi Xiang1,Li Wenjun1,Chen Peining1,Tong Qi3,Yu Hongbo2,Sun Xuemei1ORCID,Peng Huisheng1ORCID

Affiliation:

1. State Key Laboratory of Molecular Engineering of Polymers Department of Macromolecular Science Institute of Fiber Materials and Devices and Laboratory of Advanced Materials Fudan University Shanghai 200438 China

2. Vision Research Laboratory School of Life Sciences State Key Laboratory of Medical Neurobiology Collaborative Innovation Center for Brain Science Fudan University Shanghai 200438 China

3. Department of Aeronautics and Astronautics Fudan University Shanghai 200433 China

Abstract

AbstractThe extracellular potassium ion concentration in the brain exerts a significant influence on cellular excitability and intercellular communication. Perturbations in the extracellular potassium ion level are closely correlated with various chronic neuropsychiatric disorders including depression. However, a critical gap persists in performing real‐time and long‐term monitoring of extracellular potassium ions, which is necessary for comprehensive profiling of chronic neuropsychiatric diseases. Here, a fiber potassium ion sensor (FKS) that consists of a soft conductive fiber with a rough surface and a hydrophobic‐treated transduction layer interfaced with a potassium ion‐selective membrane is found to solve this problem. The FKS demonstrates stable interfaces between its distinct functional layers in an aqueous environment, conferring an exceptional stability of 6 months in vivo, in stark contrast to previous reports with working durations from hours to days. Upon implantation into the mouse brain, the FKS enables effective monitoring of extracellular potassium ion dynamics under diverse physiological states including anesthesia, forced swimming, and tail suspension. Using this FKS, tracking of extracellular potassium ion fluctuations that align with behaviors associated with the progression of depression over months is achieved, demonstrating its usability in studying chronic neuropsychiatric disorders from a new biochemical perspective.

Funder

Science and Technology Commission of Shanghai Municipality

National Natural Science Foundation of China

Ministry of Science and Technology of the People's Republic of China

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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