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Updated: May 6, 2026

Protocol to Create Chronic Wounds in Diabetic Mice
Published on: September 25, 2019
Sustained inflammasome activity in macrophages impairs wound healing in type 2 diabetic humans and mice
Rita E Mirza1, Milie M Fang, Eileen M Weinheimer-Haus
1Department of Kinesiology and Nutrition, University of Illinois at Chicago, Chicago, IL.
Abstract:
The hypothesis of this study was that sustained activity of the Nod-like receptor protein (NLRP)-3 inflammasome in wounds of diabetic humans and mice contributes to the persistent inflammatory response and impaired healing characteristic of these wounds. Macrophages (Mp) isolated from wounds on diabetic humans and db/db mice exhibited sustained inflammasome activity associated with low level of expression of endogenous inflammasome inhibitors. Soluble factors in the biochemical milieu of these wounds are sufficient to activate the inflammasome, as wound-conditioned medium activates caspase-1 and induces release of interleukin (IL)-1β and IL-18 in cultured Mp via a reactive oxygen species-mediated pathway. Importantly, inhibiting inflammasome activity in wounds of db/db mice using topical application of pharmacological inhibitors improved healing of these wounds, induced a switch from proinflammatory to healing-associated Mp phenotypes, and increased levels of prohealing growth factors. Furthermore, data generated from bone marrow-transfer experiments from NLRP-3 or caspase-1 knockout to db/db mice indicated that blocking inflammasome activity in bone marrow cells is sufficient to improve healing. Our findings indicate that sustained inflammasome activity in wound Mp contributes to impaired early healing responses of diabetic wounds and that the inflammasome may represent a new therapeutic target for improving healing in diabetic individuals.
Insights
Sustained NLRP-3 inflammasome activity in diabetic wounds causes persistent inflammation and poor healing. Inhibiting this inflammasome pathway in macrophages significantly improves wound healing in diabetic models.
Area of Science:
- Immunology
- Wound Healing
- Diabetic Complications
Background:
- Diabetic wounds exhibit persistent inflammation and impaired healing.
- The Nod-like receptor protein (NLRP)-3 inflammasome is implicated in inflammatory responses.
Purpose of the Study:
- To investigate the role of sustained NLRP-3 inflammasome activity in diabetic wound healing.
- To explore the therapeutic potential of targeting the NLRP-3 inflammasome pathway.
Main Methods:
- Assessed inflammasome activity in macrophages from diabetic human and mouse wounds.
- Utilized wound-conditioned medium to activate inflammasomes in cultured macrophages.
- Administered topical NLRP-3 inflammasome inhibitors and conducted bone marrow-transfer experiments in diabetic mice.
Main Results:
- Macrophages from diabetic wounds showed sustained inflammasome activation.
- Topical inhibition of inflammasome activity improved wound healing and shifted macrophage phenotype.
- Blocking inflammasome activity in bone marrow cells was sufficient to enhance healing.
Conclusions:
- Sustained NLRP-3 inflammasome activity in wound macrophages contributes to impaired healing in diabetes.
- Targeting the NLRP-3 inflammasome presents a potential therapeutic strategy for diabetic wound management.
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