Lipase-sensitive fusidic acid polymeric nanoparticles based hydrogel for on-demand delivery against MRSA-infected burn wounds
Author:
Publisher
Elsevier BV
Subject
Pharmaceutical Science
Reference61 articles.
1. Silver sulfadiazine nanoethogel for burn healing: characterization and investigation of its in vivo effects;Razavi;Nanomedicine,2018
2. Innate immune system response to burn damage—focus on cytokine alteration;Sierawska;Int. J. Mol. Sci.,2022
3. Development and evaluation of silver sulfadiazine loaded microsponge based gel for partial thickness (second degree) burn wounds;Kumar;Eur. J. Pharmaceut. Sci.,2017
4. Bacteria-responsive intelligent wound dressing: simultaneous in situ detection and inhibition of bacterial infection for accelerated wound healing;Zhou;Biomaterials,2018
5. Burns in the third world: an unmet need;Stokes;Annals of burns and fire disasters,2017
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