Objective: The effect of Urgotul on normal human dermal fibroblast proliferation was studied in vitro and compared with that of two other dressings: Mepitel and Tulle Gras.
Method: Proliferation was measured by the extent of thymidine incorporation into the replicating DNA of proliferative fibroblasts in contact with the complete dressing.Additional cell viability and metabolism were evaluated using MTT assay. Morphology and ultrastructure analysis were based on immunolabelling and confocal laser microscopy.
Results: Only Urgotul significantly stimulated thymidine incorporation, generally with a maximal proliferative effect at a contact time of 48 hours. This was confirmed by the observation of a greater number of dividing cells (mitotic cells) than in the control cultures. No cytotoxicity was observed following treatment with this dressing. Cells exhibited normal structural and ultrastructural features.
Conclusion: Fibroblasts play a key role in dermal wound repair. The ability of Urgotul to promote fibroblast proliferation could explain its efficiency in the healing process of acute and chronic wounds.
Declaration Of Interest: This study was supported by Urgo Laboratories.
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http://dx.doi.org/10.12968/jowc.2005.14.5.26775 | DOI Listing |
Burns Trauma
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Frazer Institute, Faculty of Medicine, The University of Queensland, Brisbane, QLD, 4102Australia.
Background: Rodent models have been widely used to investigate skin development, but do not account for significant differences in composition compared to human skin. On the other hand, two-dimensional and three-dimensional engineered skin models still lack the complex features of human skin such as appendages and pigmentation. Recently, hair follicle containing skin organoids (SKOs) with a stratified epidermis, and dermis layer have been generated as floating spheres from human-induced pluripotent stem cells (hiPSCs).
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Tissue Microenvironment (TME) Lab, Aragón Institute of Engineering Research (I3A), University of Zaragoza, Zaragoza, Spain.
In vitro skin aging models represent a valuable tool for the study of age-related pathologies and potential treatments. However, the currently available models do not adequately represent the complex microenvironment of the dermis since they generally focus on cutaneous cellular senescence, rather than the full range of factors that contribute to the aging process, such as structural and compositional alteration of the dermal extracellular matrix. The following protocol describes the extraction and characterization of human adult extracellular matrix scaffolds for use in in vitro aging models.
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MedStar Georgetown University Hospital; 3800 Reservoir Road NW; Washington, DC 20007; USA.
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Arch Dermatol Res
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Department of Dermatology, Yongin Severance Hospital, Yonsei University College of Medicine, Yongin, Republic of Korea.
Microfocused ultrasound (MFU) and (MRF) are non-invasive modalities widely used for skin rejuvenation and are often combined with injectables, including neuromodulators and soft tissue fillers. However, large-scale, long-term safety data on such combination therapies are lacking. To address this gap, we conducted a retrospective chart review at two private practice dermatology clinics in South Korea from June 2005 to December 2023.
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