Rapid custom prototyping of soft poroelastic biosensor for simultaneous epicardial recording and imaging

Author:

Kim Bongjoong,Soepriatna Arvin H.ORCID,Park WoohyunORCID,Moon Haesoo,Cox AbigailORCID,Zhao Jianchao,Gupta Nevin S.,Park Chi Hoon,Kim Kyunghun,Jeon Yale,Jang HanminORCID,Kim Dong RipORCID,Lee HyowonORCID,Lee Kwan-SooORCID,Goergen Craig J.ORCID,Lee Chi HwanORCID

Abstract

AbstractThe growing need for the implementation of stretchable biosensors in the body has driven rapid prototyping schemes through the direct ink writing of multidimensional functional architectures. Recent approaches employ biocompatible inks that are dispensable through an automated nozzle injection system. However, their application in medical practices remains challenged in reliable recording due to their viscoelastic nature that yields mechanical and electrical hysteresis under periodic large strains. Herein, we report sponge-like poroelastic silicone composites adaptable for high-precision direct writing of custom-designed stretchable biosensors, which are soft and insensitive to strains. Their unique structural properties yield a robust coupling to living tissues, enabling high-fidelity recording of spatiotemporal electrophysiological activity and real-time ultrasound imaging for visual feedback. In vivo evaluations of custom-fit biosensors in a murine acute myocardial infarction model demonstrate a potential clinical utility in the simultaneous intraoperative recording and imaging on the epicardium, which may guide definitive surgical treatments.

Funder

National Research Foundation of Korea

National Science Foundation

Korea Institute for Advancement of Technology

U.S. Department of Energy

United States Department of Defense | United States Air Force | AFMC | Air Force Office of Scientific Research

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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