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Recent advances in conductive hydrogels: classifications, properties, and applications
Hydrogel-based conductive materials for smart wearable devices have attracted increasing
attention due to their excellent flexibility, versatility, and outstanding biocompatibility. This …
attention due to their excellent flexibility, versatility, and outstanding biocompatibility. This …
Physical dynamic double-network hydrogels as dressings to facilitate tissue repair
Double-network hydrogels can be tuned to have high mechanical strength, stability,
elasticity and bioresponsive properties, which can be combined to create self-healing …
elasticity and bioresponsive properties, which can be combined to create self-healing …
[HTML][HTML] Antibacterial conductive self-healing hydrogel wound dressing with dual dynamic bonds promotes infected wound healing
In clinical applications, there is a lack of wound dressings that combine efficient resistance to
drug-resistant bacteria with good self-healing properties. In this study, a series of adhesive …
drug-resistant bacteria with good self-healing properties. In this study, a series of adhesive …
[HTML][HTML] Recent progress of antibacterial hydrogels in wound dressings
Hydrogels are essential biomaterials due to their favorable biocompatibility, mechanical
properties similar to human soft tissue extracellular matrix, and tissue repair properties. In …
properties similar to human soft tissue extracellular matrix, and tissue repair properties. In …
Self-healing injectable hydrogels for tissue regeneration
Biomaterials with the ability to self-heal and recover their structural integrity offer many
advantages for applications in biomedicine. The past decade has witnessed the rapid …
advantages for applications in biomedicine. The past decade has witnessed the rapid …
Multiple hydrogen bonding driven supramolecular architectures and their biomedical applications
Y Liu, L Wang, L Zhao, Y Zhang, ZT Li… - Chemical Society …, 2024 - pubs.rsc.org
Supramolecular chemistry combines the strength of molecular assembly via various
molecular interactions. Hydrogen bonding facilitated self-assembly with the advantages of …
molecular interactions. Hydrogen bonding facilitated self-assembly with the advantages of …
Injectable antiswelling and high-strength bioactive hydrogels with a wet adhesion and rapid gelling process to promote sutureless wound closure and scar-free repair …
X Zhao, J Luo, Y Huang, L Mu, J Chen, Z Liang, Z Yin… - ACS …, 2023 - ACS Publications
Develo** injectable antiswelling and high-strength bioactive hydrogels with wet tissue
adhesiveness and a rapid gelling process to meet the requirements for rapid hemostasis …
adhesiveness and a rapid gelling process to meet the requirements for rapid hemostasis …
Promoting the healing of infected diabetic wound by an anti-bacterial and nano-enzyme-containing hydrogel with inflammation-suppressing, ROS-scavenging, oxygen …
C Tu, H Lu, T Zhou, W Zhang, L Deng, W Cao, Z Yang… - Biomaterials, 2022 - Elsevier
The diabetic wound is easily to develop into a chronic wound because of the extremely
serious and complex inflammatory microenvironment including biofilm formation, over …
serious and complex inflammatory microenvironment including biofilm formation, over …
Self‐healing hydrogel bioelectronics
Z Li, J Lu, T Ji, Y Xue, L Zhao, K Zhao, B Jia… - Advanced …, 2024 - Wiley Online Library
Hydrogels have emerged as powerful building blocks to develop various soft bioelectronics
because of their tissue‐like mechanical properties, superior bio‐compatibility, the ability to …
because of their tissue‐like mechanical properties, superior bio‐compatibility, the ability to …
[HTML][HTML] Wound microenvironment self-adaptive hydrogel with efficient angiogenesis for promoting diabetic wound healing
Z Shao, T Yin, J Jiang, Y He, T **ang, S Zhou - Bioactive materials, 2023 - Elsevier
Neovascularization is critical to improve the diabetic microenvironment, deliver abundant
nutrients to the wound and promote wound closure. However, the excess of oxidative stress …
nutrients to the wound and promote wound closure. However, the excess of oxidative stress …