Biomimetic Antibacterial Gelatin Hydrogels with Multifunctional Properties for Biomedical Applications
Биомиметические антибактериальные желатиновые гидрогели с многофункциональными свойствами для биомедицинских применений
2023-11-17
SCID: 54.1/yhqd55r4
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antibacterial gelatin hydrogelsdopamine-triggered in situ synthesisself-healing hydrogelswearable monitoring sensorszwitterionic monomer
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Abstract (AI)
High Resolution Image Download MS PowerPoint Slide A facile novel approach of introducing dopamine and [2-(methacryloyloxy) ethyl] dimethyl-(3-sulfopropyl) ammonium hydroxide via dopamine-triggered in situ synthesis into gelatin hydrogels in the presence of ZnSO 4 is presented in this study. Remarkably, the resulting hydrogels showed 99.99 and 100% antibacterial efficiency against Gram-positive and Gram-negative bacteria, respectively, making them the highest performing surfaces in their class. Furthermore, the hydrogels showed adhesive properties, self-healing ability, antifreeze properties, electrical conductivity, fatigue resistance, and mechanical stability from −100 to 80 °C. The added multifunctional performance overcomes several disadvantages of gelatin-based hydrogels such as poor mechanical properties and limited thermostability. Overall, the newly developed hydrogels show significant potential for numerous biomedical applications, such as wearable monitoring sensors and antibacterial coatings.
Key Findings
1
A dopamine-triggered in situ synthesis incorporated dopamine and a sulfobetaine methacrylate monomer into gelatin hydrogels in the presence of ZnSO₄.
2
The hydrogels combined adhesion, self-healing, antifreeze behavior, electrical conductivity, fatigue resistance, and mechanical stability from −100 to 80 °C.
3
The hydrogels show potential for biomedical uses including wearable monitoring sensors and antibacterial coatings.
4
The resulting hydrogels achieved 99.99% antibacterial efficiency against Gram-positive bacteria and 100% against Gram-negative bacteria.
5
These multifunctional properties address gelatin hydrogels’ poor mechanical performance and limited thermostability.
Research Object
Biomimetic gelatin hydrogels incorporating dopamine, sulfobetaine methacrylate, and ZnSO4
Research Subject
Multifunctional performance, including antibacterial activity, adhesion, self-healing, antifreeze behavior, electrical conductivity, fatigue resistance, and mechanical and thermal stability
Publication Details
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2023-11-17
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