ArticleJournal of cosmetic dermatology2025
Regenerative Potential of Various Plant-Derived Exosome Injections in Laser-Induced Skin Wound Healing in a Rabbit Model.
Article in Journal of cosmetic dermatology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 6 papers.
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Who cites it
6 citing papers in PubMed.
- Topical hyaluronic acid serum, oral vitamin C, and their combined regimen modulate collagen-related repair indices in a sutured primary-intention rat incisional wound model.Journal of molecular histology · 2026Article
- A dual track predictive model for assessing crow's feet aging across different clinical severity grades.Scientific reports · 2026Article
- Plant Exosome Injection with or without Low Level Laser Therapy Promotes Skin Wound Healing: An Experimental Study.Plastic and reconstructive surgery. Global open · 2026Article
- Therapeutic Potential of Isoniazid in Inflammatory Skin Diseases: A Review.Clinical, cosmetic and investigational dermatology · 2026Review
- Comparative Effects of Injectable Biostimulatory Agents (Calcium Hydroxyapatite, New Cellular Treatment Factor, VAMP, and Human Exosomes) and Their Combination on Skin Regeneration.Aesthetic surgery journal. Open forum · 2026Article
- Regenerative Potential of Various Plant-Derived Exosome Injections in Laser-Induced Skin Wound Healing in a Rabbit Model.Journal of cosmetic dermatology · 2025Article
Corrections and comments
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Authors and funding
9 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
backgroundThermal injuries caused by laser incisions in soft tissue can delay wound healing by triggering inflammation and tissue damage. Plant-derived exosomes have recently gained attention as innovative biological agents with promising regenerative capabilities for soft tissue repair.
objectiveThis study investigates the effectiveness of injecting three commercial plant-based exosome products: Exoline, Glow, and Elysee in enhancing the healing process of laser-induced skin wounds in a rabbit model.
methodsOne hundred and twenty adult male New Zealand rabbits were randomized into four groups (n = 30 each): untreated control, Exoline, Glow, and Elysee. Full-thickness 1 × 1 cm laser wounds were created on the ventral aspect of the right ear. Exosome-treated groups received 0.1 mL injections into the wound bed and margins immediately after injury. Animals were sacrificed at baseline (Day 0) to confirm comparable wound conditions across groups, and subsequently at Day 7 and Day 14. Wound healing was assessed grossly and histologically using hematoxylin and eosin, Masson's trichrome (for collagen fiber deposition), and CD31 immunohistochemistry (for angiogenesis). Quantitative scoring was performed by blinded observers.
resultsClinically, all wounds achieved apparent closure by Day 14; however, histological assessment revealed persistent differences in tissue organization and angiogenesis between groups. At Day 7, Glow induced the highest collagen deposition, followed by Elysee and Exoline, whereas Exoline elicited the strongest angiogenic response, followed by Elysee and Glow. By Day 14, Glow maintained the lead in collagen maturation, followed by Exoline and Elysee, while Exoline remained most effective for angiogenesis, followed by Elysee and Glow. All exosome-treated groups significantly outperformed controls (p < 0.05).
conclusionPlant-derived exosomes enhance cutaneous wound repair with formulation-specific benefits. Glow optimized early and late collagen deposition, Exoline promoted angiogenesis, and Elysee contributed to intermediate angiogenic effects. These findings support the potential for tailored exosome-based therapies in regenerative dermatology. These preliminary results in a rabbit model warrant further investigation in long-term studies and human clinical applications.
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