January 2025 in “Regenerative Biomaterials” In this study, a new pH-responsive hydrogel composed of polyvinyl alcohol and boric acid was found to release salvianolic acid B effectively, reducing excessive scar formation and enhancing tissue regeneration during early-stage wound healing.
January 2025 in “Turkish Journal of Trauma and Emergency Surgery” This study found that administering Rosmarinus Officinalis extract peritoneally shortly after surgery may raise the risk of evisceration at the abdominal incision site.
January 2025 in “Acta Clinica Croatica” This pilot study found that using platelet rich fibrin in combination with dressings after revascularization surgery in patients with critical limb ischemia accelerated wound healing compared to dressings alone.
January 2025 in “Journal of Inorganic Materials” This review highlights how silicate-based bioceramics and bioglasses could enhance skin regeneration for wound healing by promoting angiogenesis, stimulating collagen deposition, and providing anti-infection benefits, while also examining their integration with emerging technologies and current applications.
December 2024 in “Microbial Biosystems” This review article focuses on the application of marine-derived collagen in wound healing, emphasizing its advantages such as safety, biodegradability, and cost-effectiveness, with scaffold-based treatments showing superior wound-healing acceleration compared to traditional dressings.
December 2024 in “Biomedicines” In this study, researchers developed methods to isolate and culture rat hair follicle stem cells, confirming their potential for skin regeneration by analyzing growth characteristics and bioactive secretions, contributing to regenerative medicine advancements.
November 2024 in “Journal of Investigative Dermatology” Scalp hair follicle cells help protect and heal skin in certain skin conditions.
November 2024 in “Journal of Investigative Dermatology” Reducing neutrophils or inhibiting NETs improves wound healing in sickle cell disease.
November 2024 in “Journal of Investigative Dermatology” Aptamers can improve wound healing and promote hair growth.
November 2024 in “Journal of Investigative Dermatology” Microfluidic models improve testing for aging, wound healing, and oral tissue, reducing animal testing.
This research evaluated the wound healing potential of NIMO-CH, a cellulose hydrogel with indigenous microorganisms, in ICR mice and found complete wound closure with hair growth by day 18-20, suggesting it could be a viable alternative for wound care.
August 2024 in “Life Science Alliance” This study found that topical application of TGF-β mimic promoted enhanced wound healing and tissue regeneration in mice, suggesting its potential as a therapeutic option for improving wound healing.
August 2024 in “Nature Communications” This study found that in female mice, softer, lightly crosslinked gelatin-based hydrogels promoted better wound healing with less scarring and inflammation compared to stiffer, heavily crosslinked hydrogels, affecting immune and stromal cell behavior.
July 2024 in “Journal of Investigative Dermatology” In this study of mouse models, researchers found that glutaminolysis is crucial for macrophages to switch from a pro-inflammatory to a pro-resolving state, aiding tissue repair by preventing prolonged inflammation and influencing gene expression.
June 2024 in “Research Square (Research Square)” This study demonstrated that in mice, the absence of Jagged-1 expression in skin-resident regulatory T cells significantly delays wound healing by reducing the accumulation of neutrophils, highlighting the role of Jagged-1 in coordinating immune cell recruitment during injury.
In this study using a mouse model, researchers utilized single-cell RNA sequencing to create a comprehensive cellular atlas of infected versus uninfected wounds, revealing that Enterococcus faecalis infections lead to immunosuppressive changes in skin cells and disrupt normal wound healing processes.
April 2024 in “Chemical engineering journal” In this study, a novel injectable hydrogel with antibacterial and hemostatic properties showed promise in promoting the healing of MRSA-infected skin wounds.
In an animal study, researchers observed that a Chromolaena odorata layered-nitrile rubber transdermal patch significantly improved wound contraction, protein, hexosamine, and uronic acid levels, and collagen deposition in healing excision wounds in rats compared to a control group with an empty patch.
March 2024 in “Frontiers in genetics” This review discusses the insights gained from single-cell RNA sequencing of fibroblasts in various cancers and wound healing, highlighting differences in gene expression and novel interactions.
This source provides an overview of quercetin's therapeutic capabilities in skin wound healing, highlighting its antioxidant and anti-inflammatory benefits but noting its poor solubility limits skin penetration; various delivery strategies have been explored to enhance its effectiveness.
February 2024 in “Advanced Functional Materials” This study reported that a newly developed hydrogel patch, designed to recruit regulatory T cells through ROS-triggered release of CCL22, improved wound healing and hair follicle regeneration in a diabetic mouse model by scavenging ROS, thereby protecting Tregs and suppressing Th17 cells.
February 2024 in “Frontiers in physiology” In this review, the authors explore strategies for inducing scarless skin regeneration by modulating dermal signaling or specific fibroblast subsets to promote the formation of new hair follicles in wounds, particularly focusing on mimicking neonatal skin's regenerative capabilities.
February 2024 in “Research Square (Research Square)” In this study, researchers found that exosomes derived from dermal papilla cells can enhance hair follicle regeneration during wound healing in nude mice by promoting fibroblast activation and stimulating the Wnt/β-catenin signaling pathway, suggesting their potential as a therapeutic strategy for regenerative skin healing.
February 2024 in “Asian Journal of Pharmaceutical and Clinical Research” This study found that human platelet lysate, prepared from expired platelet concentrate, maintained stable growth factor levels for up to six months and improved healing in second-degree burn wounds compared to standard silver sulfadiazine treatment at three weeks.
January 2024 in “International wound journal” This study used bibliometric analysis to examine 19,728 studies on stem cells in wound healing from 1999 to 2023, highlighting increasing publications, major contributing countries, influential institutions, and journals, and emphasizing future research on the mechanisms of stem cells in enhancing wound healing.
This study suggests that human hair keratin-based gradient hydrogels incorporating silver ions may serve as promising dermal templates for wound healing, demonstrating favorable mechanical properties, cell interaction, and antibacterial activity.
December 2023 in “bioRxiv (Cold Spring Harbor Laboratory)” This study observed that extracellular matrix scaffold membranes performed less effectively in wound healing for aged mice compared to younger ones, with senescent SPP1+ macrophages potentially hindering epidermal and fibroblast repair abilities.
November 2023 in “Burns and trauma” This review discusses how the skin microbiome impacts different types of cutaneous wounds, such as acute and chronic, and explores therapeutic strategies targeting the microbiome to enhance healing outcomes.
November 2023 in “Regenerative Biomaterials” This study developed a degradable and bioactive citrate-based polyurethane adhesive that achieves rapid and strong tissue adhesion, exhibiting improved bonding strength in wet environments, biocompatibility, biodegradability, and hemostatic properties, with potential to enhance wound healing by promoting angiogenesis.
November 2023 in “ACS Applied Polymer Materials” In this study, the researchers developed a new method using H2O2/TiO2/UV for extracting human hair keratins rapidly, yielding higher protein and enabling the production of keratin films with better hemostatic performance and varied wound-healing properties compared to films from traditionally extracted keratin.