接口
聚吡咯
材料科学
周围神经
纳米技术
生物医学工程
聚合物
聚合
复合材料
计算机科学
解剖
医学
计算机硬件
作者
Ryan P. Trueman,Owein Guillemot‐Legris,Henry T. Lancashire,Abijeet Singh Mehta,Joshua Tropp,Rachel E. Daso,Jonathan Rivnay,Alethea B. Tabor,James B. Phillips,Bob C. Schroeder
标识
DOI:10.1002/adem.202301488
摘要
Electrical stimulation has shown promise in clinical studies to treat nerve injuries. This work is aimed to create an aligned bioelectronic construct that can be used to bridge a nerve gap, directly interfacing with the damaged nerve tissue to provide growth support. The conductive three-dimensional bioelectronic scaffolds described herein are composite materials, comprised of conductive polypyrrole (PPy) nanoparticles embedded in an aligned collagen hydrogel. The bioelectronic constructs are seeded with dorsal root ganglion derived primary rat neurons and electrically stimulated in vitro. The PPy loaded constructs support a 1.7-fold increase in neurite length in comparison to control collagen constructs. Furthermore, upon electrical stimulation of the PPy-collagen construct, a 1.8-fold increase in neurite length is shown. This work illustrates the potential of bioelectronic constructs in neural tissue engineering and lays the groundwork for the development of novel bioelectronic materials for neural interfacing applications.
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