Conductive polymers: opportunities and challenges in biomedical applications
Research pertaining to conductive polymers has gained significant traction in recent years,
and their applications range from optoelectronics to material science. For all intents and …
and their applications range from optoelectronics to material science. For all intents and …
Functional and biomimetic materials for engineering of the three-dimensional cell microenvironment
The cell microenvironment has emerged as a key determinant of cell behavior and function
in development, physiology, and pathophysiology. The extracellular matrix (ECM) within the …
in development, physiology, and pathophysiology. The extracellular matrix (ECM) within the …
Conductive biomaterials for muscle tissue engineering
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 …
movements, postural support and internal organ function. Muscle tissue injuries would not …
Hydrogel scaffolds for differentiation of adipose-derived stem cells
Q Huang, Y Zou, MC Arno, S Chen, T Wang… - Chemical Society …, 2017 - pubs.rsc.org
Natural extracellular matrices (ECMs) have been widely used as a support for the adhesion,
migration, differentiation, and proliferation of adipose-derived stem cells (ADSCs). However …
migration, differentiation, and proliferation of adipose-derived stem cells (ADSCs). However …
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 …
to myocardial tissues, such as cardiac dysfunctions, fibrosis, and reduction of intercellular …
Electroconductive biomaterials for cardiac tissue engineering
Myocardial infarction (MI) is still the leading cause of mortality worldwide. The success of cell-
based therapies and tissue engineering strategies for treatment of injured myocardium have …
based therapies and tissue engineering strategies for treatment of injured myocardium have …
Gold nanorod-incorporated gelatin-based conductive hydrogels for engineering cardiac tissue constructs
The development of advanced biomaterials is a crucial step to enhance the efficacy of tissue
engineering strategies for treatment of myocardial infarction. Specific characteristics of …
engineering strategies for treatment of myocardial infarction. Specific characteristics of …
Composites of polymer hydrogels and nanoparticulate systems for biomedical and pharmaceutical applications
F Zhao, D Yao, R Guo, L Deng, A Dong, J Zhang - Nanomaterials, 2015 - mdpi.com
Due to their unique structures and properties, three-dimensional hydrogels and
nanostructured particles have been widely studied and shown a very high potential for …
nanostructured particles have been widely studied and shown a very high potential for …
Hydrogels with electrically conductive nanomaterials for biomedical applications
G Kougkolos, M Golzio, L Laudebat… - Journal of Materials …, 2023 - pubs.rsc.org
Hydrogels, soft 3D materials of cross-linked hydrophilic polymer chains with a high water
content, have found numerous applications in biomedicine because of their similarity to …
content, have found numerous applications in biomedicine because of their similarity to …
Electrically conductive materials: Opportunities and challenges in tissue engineering
Tissue engineering endeavors to regenerate tissues and organs through appropriate
cellular and molecular interactions at biological interfaces. To this aim, bio-mimicking …
cellular and molecular interactions at biological interfaces. To this aim, bio-mimicking …