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Updated: Jan 24, 2026

In Vivo Imaging of Reactive Oxygen Species in a Murine Wound Model
Published on: November 17, 2018
Impaired skin barrier function caused by reactive oxygen species in mice with colonic tumours
Satoshi Yokoyama1, Keiichi Hiramoto2, Yurika Yamate2
1Division of Clinical Drug Informatics, School of Pharmacy, Kindai University , Osaka , Japan.
Abstract:
Purpose: We have previously reported that skin barrier function is disrupted in mice with colonic tumours induced by azoxymethane (AOM) and dextran sodium sulphate (DSS). We postulated that the impaired skin barrier function was associated with reactive oxygen species derived from gp91phox. In this study, we investigated the mechanisms underlying the impaired skin barrier function using gp91phox-/- mice. Materials and methods: We induced colonic tumorigenesis in C57BL/6j mice by AOM + DSS administration and evaluated the influence of reactive oxygen species on skin barrier function by using the hydroxyl radical scavenger N-acetyl-l-cysteine (NAC) or gp91phox-/- mice. Damage to the colon and skin following treatment with AOM + DSS was monitored using protein analysis methods and by detection of inflammatory mediators in the plasma. Results: NAC could not prevent the increase in transepidermal water loss (TEWL) and decrease in skin hydration level caused by AOM + DSS in gp91phox+/+ mice. However, gp91phox-/- mice showed no change in TEWL and skin hydration level. The dermal expression levels of nucleotide-binding domain, leucine-rich containing family, pyrin-domain containing 3 (NLRP3), and caspase-1 were reduced in gp91phox-/- mice. Moreover, the plasma concentrations of interleukin-18 and thymic stromal lymphopoietin (TSLP) were lower in gp91phox-/- mice than those in gp91phox+/+ mice. Inhibition of hydrogen peroxide production from superoxide anions in the gp91phox-/- status prevented the increased TEWL and decreased skin hydration level noted with degradation of NLRP3 and caspase-1. Conclusions: Superoxide anions may play an important role in the onset of the impaired skin barrier function in mice with colonic tumours.
Insights
Mice with colon tumors showed impaired skin barrier function linked to superoxide anions. Genetic removal of gp91phox prevented skin barrier disruption, suggesting a key role for these reactive oxygen species.
Area of Science:
- Biomedical Science
- Dermatology
- Gastroenterology
Background:
- Previous research indicated disrupted skin barrier function in mice with azoxymethane (AOM) and dextran sodium sulfate (DSS) induced colonic tumors.
- A hypothesis suggested impaired skin barrier function was associated with reactive oxygen species (ROS) derived from gp91phox.
Purpose of the Study:
- To investigate the mechanisms underlying impaired skin barrier function in the context of colonic tumorigenesis.
- To evaluate the specific role of gp91phox-derived reactive oxygen species in skin barrier dysfunction.
Main Methods:
- Colonic tumorigenesis was induced in C57BL/6j mice using AOM + DSS.
- The influence of ROS on skin barrier function was assessed using gp91phox-/- mice and the hydroxyl radical scavenger N-acetyl-l-cysteine (NAC).
- Skin and colon damage, along with plasma inflammatory mediators, were monitored.
Main Results:
- gp91phox-/- mice exhibited no changes in transepidermal water loss (TEWL) or skin hydration levels, unlike gp91phox+/+ mice treated with AOM+DSS.
- Dermal expression of NLRP3 and caspase-1, and plasma levels of IL-18 and TSLP, were reduced in gp91phox-/- mice.
- Inhibition of hydrogen peroxide production in gp91phox-/- mice prevented increased TEWL and decreased skin hydration, correlating with NLRP3 and caspase-1 degradation.
Conclusions:
- Superoxide anions, potentially originating from gp91phox, play a significant role in the development of impaired skin barrier function in mice with colonic tumors.
- The findings highlight a link between colonic tumorigenesis, ROS production, and skin barrier integrity, involving the NLRP3 inflammasome pathway.
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