An update on graphene oxide: applications and toxicity

S Yadav, AP Singh Raman, H Meena, AG Goswami… - ACS …, 2022 - ACS Publications
Graphene oxide (GO) has attracted much attention in the past few years because of its
interesting and promising electrical, thermal, mechanical, and structural properties. These …

Graphene-based materials for tissue engineering

SR Shin, YC Li, HL Jang, P Khoshakhlagh… - Advanced drug delivery …, 2016 - Elsevier
Graphene and its chemical derivatives have been a pivotal new class of nanomaterials and
a model system for quantum behavior. The material's excellent electrical conductivity …

High‐performance poly (vinylidene difluoride)/dopamine core/shell piezoelectric nanofiber and its application for biomedical sensors

T Li, M Qu, C Carlos, L Gu, F Jin, T Yuan… - Advanced …, 2021 - Wiley Online Library
Fabrication of soft piezoelectric nanomaterials is essential for the development of wearable
and implantable biomedical devices. However, a big challenge in this soft functional …

Functional graphene nanomaterials based architectures: biointeractions, fabrications, and emerging biological applications

C Cheng, S Li, A Thomas, NA Kotov, R Haag - Chemical reviews, 2017 - ACS Publications
Functional graphene nanomaterials (FGNs) are fast emerging materials with extremely
unique physical and chemical properties and physiological ability to interfere and/or interact …

Electrically conductive materials: Opportunities and challenges in tissue engineering

A Saberi, F Jabbari, P Zarrintaj, MR Saeb, M Mozafari - Biomolecules, 2019 - mdpi.com
Tissue engineering endeavors to regenerate tissues and organs through appropriate
cellular and molecular interactions at biological interfaces. To this aim, bio-mimicking …

A fully biodegradable and self-electrified device for neuroregenerative medicine

L Wang, C Lu, S Yang, P Sun, Y Wang, Y Guan… - Science …, 2020 - science.org
Peripheral nerve regeneration remains one of the greatest challenges in regenerative
medicine. Deprivation of sensory and/or motor functions often occurs with severe injuries …

Physiologically self‐regulated, fully implantable, battery‐free system for peripheral nerve restoration

F Jin, T Li, T Yuan, L Du, C Lai, Q Wu… - Advanced …, 2021 - Wiley Online Library
The long‐segment peripheral nerve injury (PNI) represents a global medical challenge,
leading to incomplete nerve tissue recovery and unsatisfactory functional reconstruction …

Multifunctional double‐layer composite hydrogel conduit based on chitosan for peripheral nerve repairing

P Deng, F Chen, H Zhang, Y Chen… - Advanced Healthcare …, 2022 - Wiley Online Library
Peripheral nerve regeneration and functional recovery is a major challenge in clinical
practice. Nerve conduit is an effective treatment for peripheral nerve repair, but the …

3D electrospun synthetic extracellular matrix for tissue regeneration

Y Su, MS Toftdal, A Le Friec, M Dong, X Han… - Small …, 2021 - Wiley Online Library
Electrospinning is considered the most versatile micro‐/nanofiber fabrication technology.
The electrospun fibers hold high surface area, desired mechanical properties, controlled …

Looking into the future: toward advanced 3D biomaterials for stem‐Cell‐based regenerative medicine

Z Liu, M Tang, J Zhao, R Chai, J Kang - Advanced Materials, 2018 - Wiley Online Library
Stem‐cell‐based therapies have the potential to provide novel solutions for the treatment of
a variety of diseases, but the main obstacles to such therapies lie in the uncontrolled …