Publications by authors named "M Demczuk"

Article Synopsis
  • Exposure to nitrogen mustard, a type of chemotherapy, causes skin damage and inflammation due to the recruitment of immune cells that worsen the injury and hinder healing.
  • Administering poly(lactic-co-glycolic acid) immune-modifying nanoparticles (PLGA-IMPs) right after exposure can reduce harmful immune cell accumulation in the skin and improve healing outcomes.
  • PLGA-IMPs promote the presence of regulatory T cells that help control inflammation by producing key anti-inflammatory cytokines, suggesting a potential treatment strategy for severe skin injuries.
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In acute skin injury, healing is impaired by the excessive release of reactive oxygen species (ROS). Melanin, an efficient scavenger of radical species in the skin, performs a key role in ROS scavenging in response to UV radiation and is upregulated in response to toxic insult. In a chemical injury model in mice, we demonstrate that the topical application of synthetic melanin particles (SMPs) significantly decreases edema, reduces eschar detachment time, and increases the rate of wound area reduction compared to vehicle controls.

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BACKGROUNDAdverse drug reactions are unpredictable immunologic events presenting frequent challenges to clinical management. Systemically administered cholecalciferol (vitamin D3) has immunomodulatory properties. In this randomized, double-blinded, placebo-controlled interventional trial of healthy human adults, we investigated the clinical and molecular immunomodulatory effects of a single high dose of oral vitamin D3 on an experimentally induced chemical rash.

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Injury of the skin from exposure to toxic chemicals leads to the release of inflammatory mediators and the recruitment of immune cells. Nitrogen mustard (NM) and other alkylating agents cause severe cutaneous damage for which there are limited treatment options. Here, we show that combined treatment of vitamin D3 (VD3) and spironolactone (SP), a mineralocorticoid receptor antagonist, significantly improves the resolution of inflammation and accelerates wound healing after NM exposure.

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