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The interplay of skin architecture and cellular dynamics in . . . As wounds become a growing global concern, mainly due to the aging population and the rise in chronic diseases, our study's findings are crucial for developing more effective and tailored wound management strategies
Chitooligosaccharides promote diabetic wound healing by . . . Chitooligosaccharides (COS), intermediate products of chitosan degradation, have shown efficacy in promoting tissue repair, yet their role in diabetic wound healing remains underexplored
Emerging treatment strategies in wound care - PMC The results of recent clinical trials suggest that the use of modern dressings and skin substitutes is the easiest, most accessible, and most cost‐effective way to treat chronic wounds with advances in materials science such as graphene as 3D scaffold and biomolecules hold significant promise
Cellular and molecular mechanisms of skin wound healing In this Review, we discuss the current understanding of the different phases of wound healing, from clot formation through re-epithelialization, angiogenesis and subsequent scar deposition
Insights into the mechanisms of diabetic wounds . . . The naturally isolated compounds have been found to promote wound healing by stimulating the migration of cells, re-epithelialization, angiogenesis, increase growth factors, reduced inflammation, collagen deposition, and new tissue formation
Recent technological advances in the management of chronic . . . Chronic wounds fail to repair themselves within the expected period of 30 days Technologies have been developed to address challenges encountered during wound care with the aim of alleviating pain, promoting healing, or controlling wound infections