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Azienda News:
- Hydrogels promote periodontal regeneration - PubMed
Hydrogels are favored in research for their exceptional absorption capacity, biodegradability, and tunable mechanical properties They have shown promise as barrier membranes, scaffolds, carriers for cell transplantation and drug delivery systems in periodontal regeneration therapy
- Hydrogels promote periodontal regeneration - Frontiers
To overcome these limitations, numerous biomaterials have been explored for periodontal tissue regeneration, with hydrogels being particularly noteworthy Hydrogels are favored in research for their exceptional absorption capacity, biodegradability, and tunable mechanical properties
- Smart injectable hydrogels for periodontal regeneration: Recent . . .
For their notable applications in periodontal regeneration, injectable hydrogels can be used to deliver growth factors, stem cells, or antimicrobial agents directly to periodontal defects, promoting tissue repair and regeneration while minimizing patient discomfort [27]
- Hydrogels in Periodontal and Craniofacial Regeneration: Current . . .
Hydrogel-based therapies have proven to be valuable tools to address the unique regeneration challenges of complex multi-domain periodontal and craniofacial tissues This review highlights and classi
- Hydrogel-Based Therapeutic Strategies for Periodontal Tissue . . .
Wang, Potential of an Aligned Porous Hydrogel Scaffold Combined with Periodontal Ligament Stem Cells or Gingival Mesenchymal Stem Cells to Promote Tissue Regeneration in Rat Periodontal Defects, ACS Biomater
- Hydrogels promote periodontal regeneration - PMC
To overcome these limitations, numerous biomaterials have been explored for periodontal tissue regeneration, with hydrogels being particularly noteworthy Hydrogels are favored in research for their exceptional absorption capacity, biodegradability, and tunable mechanical properties
- Periodontal ligament stem cells-loaded photocrosslinking . . . - Springer
In this study, the application of GelMA-PEGDA hybrid hydrogels with different matrix stiffnesses for periodontal bone regeneration was explored Results In this work, a GelMA‒PEGDA hybrid hydrogel ink was prepared, and the proportion of PEGDA significantly increased the matrix stiffness of the hybrid hydrogel, which had good biocompatibility
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