5 citations
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April 2019 in “Ege Tıp Dergisi” This study found that applying Hypericum perforatum methanol extract-containing gel to experimental burns in rats reduced collagen discoloration and vascular damage while preserving hair follicles and epidermal thickness compared to treatment with silver sulfadiazine cream.
1 citations
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April 2025 in “International Journal of Biological Macromolecules” This study found that Forskolin-loaded carboxymethyl chitosan-silk nanofiber hydrogels promoted wound healing by accelerating wound closure, enhancing neovascularization, and supporting hair follicle regeneration, while also being non-toxic and encouraging the proliferation of certain cell types.
January 2013 in “Zhongguo bingli shengli zazhi” In this rat study, Coriaria sinica Maxim extract significantly improved burn wound healing by enhancing epithelial growth and promoting hair regrowth, possibly through early-stage protein and mRNA expression changes.
March 2026 in “Zenodo (CERN European Organization for Nuclear Research)” This study explores the development and evaluation of a polyherbal gel containing Amla, Bhringraj, Tea Tree Oil, and Jojoba Oil to treat folliculitis, aiming to provide a safer, more effective natural alternative to conventional treatments while utilizing the healing properties of these herbal ingredients.
March 2026 in “Science China Materials” SeV-Tp speeds up healing of drug-resistant infections by targeting wounds and killing bacteria with light activation.
November 2025 in “Clinical Cosmetic and Investigational Dermatology” This study found that a combination of five medicinal plants traditionally used in Chinese medicine significantly improved skin repair and delayed aging markers in laboratory models, suggesting synergistic anti-aging effects over individual ingredients.
February 2026 in “Advanced Healthcare Materials” This study proposes a metal-organic gel-encapsulated microneedle system with antibacterial, anti-inflammatory, and pro-angiogenic properties for treating infected wounds, demonstrating potential for precise and adaptive management by targeting various stages of wound healing.
5 citations
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July 2023 in “World Journal of Stem Cells” In a study using a rat model, researchers developed injectable hydrogels from antler reserve mesenchyme which enhanced regenerative healing of full-thickness cutaneous wounds by creating a fetal-like niche that increased stem cell presence and modulated gene expression related to wound healing.
February 2026 in “The Animal Biology” In this animal study, Hirudo verbana leech extract significantly improved hair follicle regeneration and accelerated wound healing in rats, demonstrating potential as a safe and effective agent for skin repair due to its bioactive compounds with regenerative and anti-inflammatory properties.
191 citations
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February 2002 in “Archives of Dermatology” This review discusses herbal therapies for dermatologic disorders, focusing on those with scientific evidence of efficacy and common interactions, but reports no new clinical results.
11 citations
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January 2013 in “Journal of the Saudi Society of Dermatology & Dermatologic Surgery” This study found that applying silymarin gel topically on rat wounds improved fibroblast proliferation, collagen formation, and wound closure more than a gel-base alone or no treatment.
8 citations
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February 2024 in “Burns”
March 2020 in “The Journal of animal and plant sciences/The JAPS” In this study, Aloe Vera gel was found to aid in wound healing and hair growth in Albino Rats by reducing cutaneous inflammation and lesion contraction.
4 citations
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October 2013 in “Botanics Targets and Therapy” In this animal study, a herbal preparation demonstrated moderate anti-inflammatory and immunomodulating properties, suggesting its potential usefulness for preventing and treating alopecia.
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.
January 2025 in “Scripta Medica” This review suggests that natural compounds, particularly hydrolates, may improve burn wound healing and counter antibiotic resistance through their anti-inflammatory, antioxidant, and antimicrobial properties, offering promising complementary interventions.
December 2019 in “International journal of engineering applied science and technology” This review discusses the traditional uses of Tridax procumbens for wound healing, antifungal, and antibacterial purposes, but reports no clinical findings.
January 2023 in “Veterinarni Medicina” This study found that Aloe vera gel significantly enhanced wound healing in rats compared to coconut oil and cold cream.
8 citations
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November 2023 in “Frontiers in Bioengineering and Biotechnology” This article reviews recent developments in microneedles combining metallic elements and herbal compounds for wound healing, highlighting their benefits such as enhanced therapeutic efficacy and reduced toxicity, and offering a reference for future advancements in this technology.
10 citations
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April 2023 in “Acta biomaterialia” This study reported that a newly developed bioadhesive and injectable hydrogel dressing, incorporating hyaluronate-gelatin and the antibiotic doxycycline, accelerated burn wound healing and skin regeneration in rats, highlighting its potential for clinical applications in burn injury therapy.
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.
January 2024 in “AIP conference proceedings” This review reports that medicinal plant-based hydrogel films may enhance diabetic wound healing by increasing growth factor expression involved in tissue repair and regeneration, suggesting their potential in future diabetic wound dressing development.
57 citations
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December 2012 in “Molecules” This study found that mahanimbicine and a crude extract of Murraya koenigii may enhance wound healing in rats by promoting faster wound contraction and higher collagen deposition.
January 2026 in “Journal of Burn Care & Research” This study found that a sericin-based hydrogel containing Psidium guajava L. extract significantly improved healing of full-thickness burn wounds in mice, with 89.66% wound closure by day 15 compared to 37.16% in controls, and exhibited beneficial effects on inflammation and oxidative stress markers.
20 citations
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September 2019 in “South African Journal of Botany” This study found that Teucrium polium L. subsp. geyrii Maire extract demonstrated a large safety margin in acute and subacute toxicity tests on mice and significantly enhanced wound healing in rats, especially with callus extract, by improving cell proliferation and wound contraction.
June 2025 in “Stem Cells and Cloning Advances and Applications” In this study, researchers demonstrated that their technology efficiently produces CFx-δ2 from stem cells and accelerates wound healing by enhancing fibroblast activity, reducing inflammation, and promoting blood vessel formation.
September 2025 in “OPAL (Open@LaTrobe) (La Trobe University)” In this study, researchers developed a multifunctional hydrogel (FVP@CCN) that demonstrated over 90% wound closure in 7 days in diabetic wound models, thanks to its antibacterial, antioxidant, anti-inflammatory, and angiogenesis-promoting properties.
12 citations
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June 2021 in “Stem Cell Investigation” This study concluded that topical aloe vera promoted faster and better healing of deep second-degree burns in rats compared to mesenchymal stem cells.
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.
31 citations
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March 2023 in “BioFactors” This study describes how incorporating curcumin-loaded nanoparticles into various nanoformulations can enhance its bioavailability and improve wound healing processes such as angiogenesis, collagen deposition, and cell proliferation.