Conductive biomaterials for muscle tissue engineering

R Dong, PX Ma, B Guo - Biomaterials, 2020‏ - Elsevier
Muscle tissues are soft tissues that are of great importance in force generation, body
movements, postural support and internal organ function. Muscle tissue injuries would not …

Conducting polymers in the fields of energy, environmental remediation, and chemical–chiral sensors

JG Ibanez, ME Rincón, S Gutierrez-Granados… - Chemical …, 2018‏ - ACS Publications
Conducting polymers (CPs), thanks to their unique properties, structures made on-demand,
new composite mixtures, and possibility of deposit on a surface by chemical, physical, or …

Electroactive polymers for tissue regeneration: Developments and perspectives

C Ning, Z Zhou, G Tan, Y Zhu, C Mao - Progress in polymer science, 2018‏ - Elsevier
Human body motion can generate a biological electric field and a current, creating a voltage
gradient of− 10 to− 90 mV across cell membranes. In turn, this gradient triggers cells to …

Restoring cardiac functions after myocardial infarction–ischemia/reperfusion via an exosome anchoring conductive hydrogel

Y Zou, L Li, Y Li, S Chen, X **e, X **… - … applied materials & …, 2021‏ - ACS Publications
Both myocardial infarction (MI) and the follow-up reperfusion will lead to an inevitable injury
to myocardial tissues, such as cardiac dysfunctions, fibrosis, and reduction of intercellular …

In Vivo Organic Bioelectronics for Neuromodulation

M Berggren, ED Głowacki, DT Simon… - Chemical …, 2022‏ - ACS Publications
The nervous system poses a grand challenge for integration with modern electronics and
the subsequent advances in neurobiology, neuroprosthetics, and therapy which would …

Conjugated polymers for assessing and controlling biological functions

E Zeglio, AL Rutz, TE Winkler, GG Malliaras… - Advanced …, 2019‏ - Wiley Online Library
The field of organic bioelectronics is advancing rapidly in the development of materials and
devices to precisely monitor and control biological signals. Electronics and biology can …

Smart drug delivery systems: from fundamentals to the clinic

C Alvarez-Lorenzo, A Concheiro - Chemical communications, 2014‏ - pubs.rsc.org
Forty years after the first reports on stimuli-responsive phase transitions in synthetic
hydrogels, the first medicines based on responsive components are approaching the …

Incorporation of conductive materials into hydrogels for tissue engineering applications

JH Min, M Patel, WG Koh - Polymers, 2018‏ - mdpi.com
In the field of tissue engineering, conductive hydrogels have been the most effective
biomaterials to mimic the biological and electrical properties of tissues in the human body …

Rational design of electrically conductive biomaterials toward excitable tissues regeneration

G Zhao, H Zhou, G **, B **, S Geng, Z Luo… - Progress in polymer …, 2022‏ - Elsevier
Cells in vivo are situated in a complicated microenvironment composed of diverse
biochemical and biophysical cues. To regulate biological functions of cells, tissues and …

Biocompatibility of polyaniline

P Humpolicek, V Kasparkova, P Saha, J Stejskal - Synthetic metals, 2012‏ - Elsevier
Both the non-conducting polyaniline, emeraldine base, and its conducting form, polyaniline
hydrochloride, were tested for their biocompatibility in terms of skin irritation, sensitization …