Electroconductive natural polymer-based hydrogels

Z Shi, X Gao, MW Ullah, S Li, Q Wang, G Yang - Biomaterials, 2016 - Elsevier
Hydrogels prepared from natural polymers have received immense considerations over the
past decade due to their safe nature, biocompatibility, hydrophilic properties, and …

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 …

Biomimetic conducting polymer-based tissue scaffolds

JG Hardy, JY Lee, CE Schmidt - Current opinion in biotechnology, 2013 - Elsevier
Highlights•Electrical stimulation is used in a number of FDA approved devices.•There are no
FDA approved CP-based tissue scaffolds.•CP-based tissue scaffolds with biomimetic …

[HTML][HTML] Functionalization strategies of PEDOT and PEDOT: PSS films for organic bioelectronics applications

GE Fenoy, O Azzaroni, W Knoll, WA Marmisollé - Chemosensors, 2021 - mdpi.com
Organic bioelectronics involves the connection of organic semiconductors with living
organisms, organs, tissues, cells, membranes, proteins, and even small molecules. In recent …

[图书][B] Conducting polymers, fundamentals and applications

P Chandrasekhar - 2018 - Springer
This book is a revised edition of a book by the same author, Conducting Polymers,
Fundamentals and Applications: A Practical Approach, published in 1999 and well received …

Bionanotube/poly (3, 4-ethylenedioxythiophene) nanohybrid as an electrode for the neural interface and dopamine sensor

S Reddy, Q Xiao, H Liu, C Li, S Chen… - … applied materials & …, 2019 - ACS Publications
Poly (3, 4-ethylene dioxythiophene)(PEDOT) is a promising conductive material widely used
for interfacing with tissues in biomedical fields because of its unique properties. However …

Fabrication and characterization of conductive poly (3, 4-ethylenedioxythiophene) doped with hyaluronic acid/poly (l-lactic acid) composite film for biomedical …

S Wang, S Guan, J Wang, H Liu, T Liu, X Ma… - Journal of bioscience and …, 2017 - Elsevier
Poly 3, 4-ethylenedioxythiophene (PEDOT), a polythiophene derivative, has been proved to
be modified by chemical process as biocompatible conductive polymer for biomedical …

Bio-PEDOT: modulating carboxyl moieties in poly (3, 4-ethylenedioxythiophene) for enzyme-coupled bioelectronic interfaces

K Promsuwan, L Meng, P Suklim… - … applied materials & …, 2020 - ACS Publications
Modulation of chemical functional groups on conducting polymers (CPs) provides an
effective way to tailor the physicochemical properties and electrochemical performance of …

Electrical stimulation of human mesenchymal stem cells on conductive nanofibers enhances their differentiation toward osteogenic outcomes

JG Hardy, MK Villancio‐Wolter… - Macromolecular …, 2015 - Wiley Online Library
Tissue scaffolds allowing the behavior of the cells that reside within them to be controlled
are of particular interest for tissue engineering. Herein, the preparation of conductive fiber …

PEDOT: TOS with PEG: a biofunctional surface with improved electronic characteristics

LH Jimison, A Hama, X Strakosas, V Armel… - Journal of Materials …, 2012 - pubs.rsc.org
Devices based on conducting polymers offer great promise for interfacing with cells. Here,
we use vapour phase polymerisation to create a biofunctional composite material of the …