Potential of Heparan Sulphate Mimetics Integrated Into Collagen Scaffolds for Enhanced Skin Wound Healing.

Optimal healing of full‐thickness skin wounds remains a clinical challenge. While current skin substitutes aid burn wound management, there is still a need to effectively minimize scarring. Therefore, we developed type I collagen scaffolds with covalently bound ReGeneraTing Agent (RGTA) OTR4120 (OTR...

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Publicado en:Wound Repair & Regeneration Vol. 33; no. 5; pp. 1 - 14
Autores principales: Avila‐Martinez, Nancy, Krymchenko, Roman, Gansevoort, Merel, Pfirrmann, Maren, Aparicio, Sofia, Choppin, Agnes, Chiappini, Franck, Barritault, Denis, Verdoes, Martijn, van Kuppevelt, Toin H., Boekema, Bouke K. H. L., Daamen, Willeke F.
Formato: pictorial research tables/charts Journal Article
Publicado: Wiley-Blackwell Sep/Oct2025
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Sep/Oct2025
      vid: 33
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      pub: Wiley-Blackwell
      place: Malden, Massachusetts
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        10.1111/wrr.70096
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        atl: Potential of Heparan Sulphate Mimetics Integrated Into Collagen Scaffolds for Enhanced Skin Wound Healing.
      aug:
        au:
          Avila‐Martinez, Nancy
          Krymchenko, Roman
          Gansevoort, Merel
          Pfirrmann, Maren
          Aparicio, Sofia
          Choppin, Agnes
          Chiappini, Franck
          Barritault, Denis
          Verdoes, Martijn
          van Kuppevelt, Toin H.
          Boekema, Bouke K. H. L.
          Daamen, Willeke F.
        affil: Radboud university medical center, Research Institute for Medical Innovation, Department of Medical BioSciences, Nijmegen, the Netherlands
      sug:
        subj:
          Glycosaminoglycans
          Collagen
          Tissue Scaffolds
          Wound Healing
          Skin Care
          Macrophages Metabolism
          Models, Biological
          Animal Studies
          Rats
          In Vivo Studies
          Human
          In Vitro Studies
          Wound Care
          Histocytochemistry
          Blotting, Western
          Fluorescent Antibody Technique
          Microscopy, Electron, Scanning
          Monocytes Metabolism
          Flow Cytometry
          Biological Markers Blood
          Enzyme-Linked Immunosorbent Assay
          Gene Expression
          Cytokines Analysis
          Interleukins Analysis
          Wound Measurement
          Descriptive Statistics
          One-Way Analysis of Variance
          Two-Way Analysis of Variance
          Post Hoc Analysis
          Data Analysis Software
          Funding Source
      ab: Optimal healing of full‐thickness skin wounds remains a clinical challenge. While current skin substitutes aid burn wound management, there is still a need to effectively minimize scarring. Therefore, we developed type I collagen scaffolds with covalently bound ReGeneraTing Agent (RGTA) OTR4120 (OTR), a synthetic heparan sulphate analogue resistant to glycanase degradation (Col I + OTR). To further stimulate skin regeneration, collagen scaffolds with and without OTR4120 were subsequently loaded with sonic hedgehog (SHH), a key effector molecule in embryogenesis. The presence of OTR4120 and SHH in scaffolds was biochemically and histologically confirmed after crosslinking and sterilization. SHH was found deeper into collagen scaffolds in the presence of OTR4120. Addition of SHH to scaffolds showed lower expression of M1‐like cell surface markers, while Col I + OTR significantly enhanced IL‐10 production. The potential of OTR4120 in wound healing was further evaluated in vivo using a rat full‐thickness wound model over 28 days. By day 14, macroscopic images revealed that OTR‐treated wounds better maintained the original wound shape. Histological analysis showed increased blood vessel formation, fewer scaffold remnants and more contiguous sebaceous glands in the granulation tissue with Col I + OTR scaffolds. This study demonstrates that OTR4120 could be a promising addition to acellular skin substitutes for improving acute wound healing.
      pubtype: Academic Journal
      doctype:
        pictorial
        research
        tables/charts
        Journal Article
      ougenre: Article
    language: English
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