Current and novel polymeric biomaterials for neural tissue engineering

R Boni, A Ali, A Shavandi, AN Clarkson - Journal of biomedical science, 2018 - Springer
The nervous system is a crucial component of the body and damages to this system, either
by of injury or disease, can result in serious or potentially lethal consequences. Restoring …

Organic Bioelectronics for In Vitro Systems

C Pitsalidis, AM Pappa, AJ Boys, Y Fu… - Chemical …, 2021 - ACS Publications
Bioelectronics have made strides in improving clinical diagnostics and precision medicine.
The potential of bioelectronics for bidirectional interfacing with biology through continuous …

Organic bioelectronics: bridging the signaling gap between biology and technology

DT Simon, EO Gabrielsson, K Tybrandt… - Chemical …, 2016 - ACS Publications
The electronics surrounding us in our daily lives rely almost exclusively on electrons as the
dominant charge carrier. In stark contrast, biological systems rarely use electrons but rather …

A review of organic and inorganic biomaterials for neural interfaces

P Fattahi, G Yang, G Kim, MR Abidian - Advanced materials, 2014 - Wiley Online Library
Recent advances in nanotechnology have generated wide interest in applying
nanomaterials for neural prostheses. An ideal neural interface should create seamless …

Scalable production of ultrafine polyaniline fibres for tactile organic electrochemical transistors

B Fang, J Yan, D Chang, J Piao, KM Ma, Q Gu… - Nature …, 2022 - nature.com
The development of continuous conducting polymer fibres is essential for applications
ranging from advanced fibrous devices to frontier fabric electronics. The use of continuous …

Progress towards biocompatible intracortical microelectrodes for neural interfacing applications

M Jorfi, JL Skousen, C Weder… - Journal of neural …, 2014 - iopscience.iop.org
To ensure long-term consistent neural recordings, next-generation intracortical
microelectrodes are being developed with an increased emphasis on reducing the neuro …

Combining PEDOT: PSS polymer coating with metallic 3D nanowires electrodes to achieve high electrochemical performances for neuronal interfacing applications

I Muguet, A Maziz, F Mathieu, L Mazenq… - Advanced …, 2023 - Wiley Online Library
This study presents a novel approach to improve the performance of microelectrode arrays
(MEAs) used for electrophysiological studies of neuronal networks. The integration of 3D …

High‐performance graphene‐fiber‐based neural recording microelectrodes

K Wang, CL Frewin, D Esrafilzadeh, C Yu… - Advanced …, 2019 - Wiley Online Library
Fabrication of flexible and free‐standing graphene‐fiber‐(GF‐) based microelectrode arrays
with a thin platinum coating, acting as a current collector, results in a structure with low …

Progress in the field of conducting polymers for tissue engineering applications

AD Bendrea, L Cianga, I Cianga - Journal of biomaterials …, 2011 - journals.sagepub.com
This review focuses on one of the most exciting applications area of conjugated conducting
polymers, which is tissue engineering. Strategies used for the biocompatibility improvement …

Long-term stable adhesion for conducting polymers in biomedical applications: IrOx and nanostructured platinum solve the chronic challenge

C Boehler, F Oberueber, S Schlabach… - … applied materials & …, 2017 - ACS Publications
Conducting polymers (CPs) have frequently been described as outstanding coating
materials for neural microelectrodes, providing significantly reduced impedance or higher …