5 citations
,
April 2024 in “BMJ Open” This scoping review revealed that methods for measuring traumatic scar thickness using ultrasound are inconsistently reported and mainly remain in early research phases, highlighting a need for standardizing these methods to bridge the gap to routine clinical practice.
8 citations
,
May 2021 in “Applied Materials Today” This study found that Cur-Fe-mesoporous silica nanoparticles synergistically inhibited scar formation and promoted hair follicle regeneration in skin burn wound healing by releasing bioactive components like SiO32−, Fe3+, and Fe-Cur chelates.
4 citations
,
March 2022 in “Cureus” This study found that applying minced residual skin grafts to donor sites significantly reduced healing time and improved scar quality compared to untreated sites.
In this study, the researchers developed a biomimetic multilayer composite scaffold combining a decellularized amniotic membrane, fibroblast-laden collagen gel, and epidermal stem cells, which healed full-thickness skin wounds more quickly and effectively by regenerating hair follicles without scarring compared to Moropicin ointment.
This study found that sericin dressing containing collagen hydrolysate significantly reduced wound healing time and improved scar quality compared to commercial dressing in split-thickness skin graft donor sites.