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Natural biomarocmolecule-based antimicrobial hydrogel for rapid wound healing: A review

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DOI: 10.1016/j.ijbiomac.2023.125454

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Hydrogels; Antibacterial agents; Tissue healing; Controlled release; Bacterial cell walls

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Antibacterial hydrogels are designed to inhibit bacterial growth and prevent infections. They contain antibacterial agents that can disrupt bacterial cells or inhibit enzyme activity. Silver nanoparticles, chitosan, and quaternary ammonium compounds are commonly used antibacterial agents. These hydrogels have various applications, including wound dressings, catheters, and implants, and they can help prevent infections, reduce inflammation, and promote tissue healing. The future of hydrogel wound dressings is promising, with continued innovation and advancements expected.
Antibacterial hydrogels are a type of hydrogel that is designed to inhibit the growth of bacteria and prevent infections. These hydrogels typically contain antibacterial agents that are either integrated into the polymer network or coated onto the surface of the hydrogel. The antibacterial agents in these hydrogels can work through a variety of mechanisms, such as disrupting bacterial cell walls or inhibiting bacterial enzyme activity. Some examples of antibacterial agents that are commonly used in hydrogels include silver nanoparticles, chitosan, and quaternary ammonium compounds. Antibacterial hydrogels have a wide range of applications, including wound dressings, catheters, and medical implants. They can help to prevent infections, reduce inflammation, and promote tissue healing. In addition, they can be designed with specific properties to suit different applications, such as high mechanical strength or controlled release of antibacterial agents over time. Hydrogel wound dressings have come a long way in recent years, and the future looks very promising for these innovative wound care products. Overall, the future of hydrogel wound dressings is very promising, and we can expect to see continued innovation and advancement in this field in the years to come.

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