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Lignin Composites with Sustained Oxygenation and Reactive Oxygen Species-Scavenging Improve Neovascularization and Healing of Diabetic Wounds

Benjamin W. Padon, Oluyinka O. Olutoye II, Walker D. Short, Aditya A. Kaul, Lane D. Yutzy, Fayiz Faruk, Olivia S. Jung, Phillip Kogan, Ling Yu, Hui Li, Jangwook P. Jung, Swathi Balaji
doi: https://doi.org/10.1101/2022.06.18.496670
Benjamin W. Padon
1Division of Pediatric Surgery, Department of Surgery, Texas Children’s Hospital and Baylor College of Medicine, Houston, TX
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Oluyinka O. Olutoye II
1Division of Pediatric Surgery, Department of Surgery, Texas Children’s Hospital and Baylor College of Medicine, Houston, TX
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Walker D. Short
1Division of Pediatric Surgery, Department of Surgery, Texas Children’s Hospital and Baylor College of Medicine, Houston, TX
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Aditya A. Kaul
1Division of Pediatric Surgery, Department of Surgery, Texas Children’s Hospital and Baylor College of Medicine, Houston, TX
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Lane D. Yutzy
2Department of Biological Engineeri, Baton Rouge, LA
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Fayiz Faruk
1Division of Pediatric Surgery, Department of Surgery, Texas Children’s Hospital and Baylor College of Medicine, Houston, TX
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Olivia S. Jung
2Department of Biological Engineeri, Baton Rouge, LA
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Phillip Kogan
1Division of Pediatric Surgery, Department of Surgery, Texas Children’s Hospital and Baylor College of Medicine, Houston, TX
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Ling Yu
1Division of Pediatric Surgery, Department of Surgery, Texas Children’s Hospital and Baylor College of Medicine, Houston, TX
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Hui Li
1Division of Pediatric Surgery, Department of Surgery, Texas Children’s Hospital and Baylor College of Medicine, Houston, TX
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Jangwook P. Jung
2Department of Biological Engineeri, Baton Rouge, LA
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Swathi Balaji
1Division of Pediatric Surgery, Department of Surgery, Texas Children’s Hospital and Baylor College of Medicine, Houston, TX
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  • For correspondence: balaji@bcm.edu
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ABSTRACT

Although delayed wound healing is an important clinical complication in diabetic patients, few targeted treatments are available, and it remains challenging to promote diabetic wound healing. Impaired neovascularization is one of the prime characteristics of the diabetic phenotype of delayed wound healing. Additionally, increased levels of reactive oxygen species (ROS) and chronic low-grade inflammation and hypoxia are associated with diabetes, which disrupt mechanisms of wound healing. We developed lignin composites with multiple wound healing-promotive functions, including pro-angiogenesis, sustained oxygenation from calcium peroxide-based nanoparticles and ROS–scavenging with thiolated lignosulfonate that captures the elevated ROS in diabetic wounds. The sustained release of oxygen and ROS-scavenging lignin composites promoted endothelial cell branching and their reorganization into characteristic network formation in vitro, and promoted vascular endothelial growth factor (VEGF) expression and capillary lumen formation in full thickness skin wounds in a diabetic murine model of delayed wound healing (db/db), with decreased HIF-1α expression. These effects significantly increased the granulation tissue deposition and tissue repair. Our findings demonstrate that lignin composites promote diabetic wound healing without use of other drugs and show the potential of functionalized lignosulfonate for wound healing applications requiring balanced antioxidation and controlled oxygen release.

Competing Interest Statement

The authors have declared no competing interest.

  • ABBREVIATIONS

    ROS
    Reactive Oxygen Species
    db/db
    B6.BKS(D)-Leprdb/J
    HIF-1α
    Hypoxia-inducible factor 1-alpha
    ECM
    Extracellular matrix
    O2
    Oxygen
    IL-1Beta
    Interleukin-1β
    3D
    Three dimensional
    TLS
    Thiolated lignosulfonate
    SLS
    Sodium lignosulfonate
    CPO
    Calcium peroxide
    CPOc
    Calcium peroxide control
    H2O2
    Hydrogen peroxide
    MPA
    3-mercaptopropionic acid
    PLGA
    Poly(lactic-co-glycolic) acid
    PDL
    Polydispersity index
    GelMA
    Gelatin methacrylate
    PBS
    Phosphate buffered saline
    LAP
    lithium phenyl2,4,6-trimethylbenzoylphosphinate
    UV
    Ultraviolet
    FBS
    Fetal Bovine Serum
    VEGF
    Vascular endothelial growth factor
    RNAse
    Ribonuclease
    RNA
    Ribonucleic acid
    ELISA
    Enzyme-linked immunosorbent assay
    PECAM
    Platelet endothelial cell adhesion molecule
    ABC-DAB
    3,3′-Diaminobenzidine
    WES
    automated capillary-based immunoassay system
    ANOVA
    Analysis of variance
    H&E
    Hematoxylin and eosin
    MVEC
    Murine microvascular endothelial cells
    PDGF
    Platelet-derived growth factor
    HPF
    High power field
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    Posted June 20, 2022.
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    Lignin Composites with Sustained Oxygenation and Reactive Oxygen Species-Scavenging Improve Neovascularization and Healing of Diabetic Wounds
    Benjamin W. Padon, Oluyinka O. Olutoye II, Walker D. Short, Aditya A. Kaul, Lane D. Yutzy, Fayiz Faruk, Olivia S. Jung, Phillip Kogan, Ling Yu, Hui Li, Jangwook P. Jung, Swathi Balaji
    bioRxiv 2022.06.18.496670; doi: https://doi.org/10.1101/2022.06.18.496670
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    Lignin Composites with Sustained Oxygenation and Reactive Oxygen Species-Scavenging Improve Neovascularization and Healing of Diabetic Wounds
    Benjamin W. Padon, Oluyinka O. Olutoye II, Walker D. Short, Aditya A. Kaul, Lane D. Yutzy, Fayiz Faruk, Olivia S. Jung, Phillip Kogan, Ling Yu, Hui Li, Jangwook P. Jung, Swathi Balaji
    bioRxiv 2022.06.18.496670; doi: https://doi.org/10.1101/2022.06.18.496670

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