Hybrid Hydrogels of FKF-Peptide Assemblies and Gelatin for Sustained Antimicrobial Activity
Гибридные гидрогели из сборок FKF-пептида и желатина для пролонгированного антимикробного действия
2022-12-15
SCID: 54.1/qu9c8vv7
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FKF peptide assembliesantimicrobial peptide hydrogelsgelatin hybrid hydrogelssustained antimicrobial activitytissue regeneration scaffolds
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Abstract (AI)
The growing resistance of pathogenic bacteria to conventional antibiotics promotes the development of new antimicrobial agents, including peptides. Hydrogels composed of antimicrobial peptides (AMPs) may be applied as topical treatments for skin infection and wound regeneration. The unique antimicrobial and ultrashort-peptide FKF (Phe-Lys-Phe) was recently demonstrated to form bactericidal hydrogels. Here, we sought to improve the cyto-biocompatibility of FKF by combining FKF hydrogels with gelatin. Homogeneous hybrid hydrogels of FKF:gelatin were developed based on a series of self-assembly steps that involved mixing solutions of the two components with no covalent cross-linkers. The hydrogels were characterized for their structural features, dissolution, cyto-biocompatibility, and antibacterial properties. These hybrid hydrogels first release the antibacterial FKF assemblies, leaving the gelatinous fraction of the hydrogel to serve as a scaffold for tissue regeneration. Sponges of these hybrid hydrogels, obtained by lyophilization and rehydrated prior to application, exhibited enhanced antimicrobial activity compared to the hydrogels' formulations.
Key Findings
1
Combining FKF assemblies with gelatin was designed to improve the cyto-biocompatibility of bactericidal FKF hydrogels.
2
Homogeneous FKF–gelatin hybrid hydrogels were developed through sequential self-assembly without covalent cross-linkers.
3
Lyophilized and rehydrated hybrid-hydrogel sponges showed enhanced antimicrobial activity compared with the corresponding hydrogel formulations.
4
The hybrids initially release antibacterial FKF assemblies, while the remaining gelatin fraction functions as a tissue-regeneration scaffold.
Research Object
Hybrid hydrogels composed of FKF-peptide assemblies and gelatin for topical antimicrobial and tissue-regeneration applications
Research Subject
Structural features, dissolution behavior, cyto-biocompatibility, sustained FKF release, and antibacterial activity of the hybrid hydrogels and their lyophilized sponges
Publication Details
Publication Date
2022-12-15
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