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Assessment of Acute Wound Healing using the Dorsal Subcutaneous Polyvinyl Alcohol Sponge Implantation and Excisional Tail Skin Wound Models.
Published on: March 25, 2020
Nod2 deficiency impairs inflammatory and epithelial aspects of the cutaneous wound-healing response
Laura Campbell1, Helen Williams, Rachel A Crompton
1Healing Foundation Centre, University of Manchester, UK.
Abstract:
Infection is a significant causative factor in human chronic wounds that fail to heal. Complex innate host response mechanisms have evolved whereby potentially harmful pathogens are recognized by multiple host pattern recognition receptors (PRRs), yet understanding of PRR function, or dysfunction, in the context of chronic wounds remains limited. NOD2, a cytoplasmic PRR, has been strongly implicated in chronic inflammation of the gut, where loss-of-function mutations have been linked to Crohn's disease; however, cutaneous Nod2 function remains poorly characterized. Here we demonstrate an important role for Nod2 in murine skin wound healing. Cutaneous Nod2 is induced in key wound cell types in response to injury. In the absence of Nod2, mice display a substantial delay in acute wound repair associated with epithelial and inflammatory changes. Specifically, Nod2-null mice display altered epidermal migration and proliferation, an initial delay in neutrophil recruitment associated with decreased expression of the chemokine receptor CXCR2, and reduced numbers of alternatively activated macrophages (Ym1(+) cells). Somewhat surprisingly, these Nod2-null phenotypes were associated with little or no expression change in other PRRs, even though compensatory mechanisms have been shown to exist. In this study we show that healing in TLR2-null mice was essentially normal. These findings reveal a novel intrinsic role for Nod2 in cutaneous wound repair in addition to its role in recognizing invading pathogens.
Insights
NOD2 (nucleotide-binding oligomerization domain-containing protein 2) plays a crucial role in skin wound healing. Its absence delays repair by affecting epithelial cells and inflammatory responses.
Area of Science:
- Immunology
- Wound Healing
- Dermatology
Background:
- Infection significantly impairs chronic wound healing.
- Pattern recognition receptors (PRRs) are vital for pathogen recognition, but their role in chronic wounds is not fully understood.
- NOD2, a cytoplasmic PRR, is linked to gut inflammation but its function in skin is unclear.
Purpose of the Study:
- To investigate the role of NOD2 in murine skin wound healing.
- To characterize the function and impact of NOD2 in cutaneous repair processes.
Main Methods:
- Induction of cutaneous NOD2 in response to skin injury.
- Analysis of wound healing in NOD2-deficient (NOD2-null) mice.
- Assessment of epithelial and inflammatory changes, including cell migration, proliferation, neutrophil recruitment (CXCR2 expression), and macrophage activation (Ym1+ cells).
Main Results:
- NOD2 is induced in key wound-healing cells.
- NOD2-null mice exhibited significantly delayed wound repair.
- Delayed healing was associated with impaired epidermal migration/proliferation, reduced neutrophil recruitment (decreased CXCR2), and fewer alternatively activated macrophages.
- No significant changes in other PRR expression (e.g., TLR2) were observed in NOD2-null mice.
Conclusions:
- NOD2 has a novel, intrinsic role in cutaneous wound repair.
- NOD2 function is critical for normal skin healing, independent of its role in pathogen recognition.
- NOD2 deficiency impacts key cellular processes involved in acute wound repair.
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