纳米技术
计算机科学
数码产品
人机交互
材料科学
工程类
电气工程
作者
Dimitris Boufidis,Raghav Garg,Eugenia Angelopoulos,D. Kacy Cullen,Flavia Vitale
标识
DOI:10.1038/s41467-025-57016-0
摘要
Neural interface technologies are increasingly evolving towards bio-inspired approaches to enhance integration and long-term functionality. Recent strategies merge soft materials with tissue engineering to realize biologically-active and/or cell-containing living layers at the tissue-device interface that enable seamless biointegration and novel cell-mediated therapeutic opportunities. This review maps the field of bio-inspired electronics and discusses key recent developments in tissue-like and regenerative bioelectronics, from soft biomaterials and surface-functionalized bioactive coatings to cell-containing 'biohybrid' and 'all-living' interfaces. We define and contextualize key terminology in this emerging field and highlight how biological and living components can bridge the gap to clinical translation.
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