Soft Bioelectronics for Neuroengineering: New Horizons in the Treatment of Brain Tumor and Epilepsy

Author:

Yoo Seungwon12,Kim Minjeong12,Choi Changsoon3,Kim Dae‐Hyeong124ORCID,Cha Gi Doo5

Affiliation:

1. Center for Nanoparticle Research Institute for Basic Science (IBS) Seoul 08826 Republic of Korea

2. School of Chemical and Biological Engineering Institute of Chemical Processes Seoul National University Seoul 08826 Republic of Korea

3. Center for Opto‐Electronic Materials and Devices Post‐silicon Semiconductor Institute Korea Institute of Science and Technology (KIST) Seoul 02792 Republic of Korea

4. Department of Materials Science and Engineering Seoul National University Seoul 08826 Republic of Korea

5. Department of Systems Biotechnology Chung‐Ang University Anseong‐si Gyeonggi‐do 17546 Republic of Korea

Abstract

AbstractSoft bioelectronic technologies for neuroengineering have shown remarkable progress, which include novel soft material technologies and device design strategies. Such technological advances that are initiated from fundamental brain science are applied to clinical neuroscience and provided meaningful promises for significant improvement in the diagnosis efficiency and therapeutic efficacy of various brain diseases recently. System‐level integration strategies in consideration of specific disease circumstances can enhance treatment effects further. Here, recent advances in soft implantable bioelectronics for neuroengineering, focusing on materials and device designs optimized for the treatment of intracranial disease environments, are reviewed. Various types of soft bioelectronics for neuroengineering are categorized and exemplified first, and then details for the sensing and stimulating device components are explained. Next, application examples of soft implantable bioelectronics to clinical neuroscience, particularly focusing on the treatment of brain tumor and epilepsy are reviewed. Finally, an ideal system of soft intracranial bioelectronics such as closed‐loop‐type fully‐integrated systems is presented, and the remaining challenges for their clinical translation are discussed.

Funder

Institute for Basic Science

Publisher

Wiley

Subject

Pharmaceutical Science,Biomedical Engineering,Biomaterials

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