Wound Model

Wound models are experimental systems that reproduce tissue injury to study how damaged barriers heal and respond to microbes, making them important for immunology and infection research. After injury, exposed tissue and danger signals activate innate immune pathways, while chemokines recruit neutrophils and macrophages; these cells help control contamination and coordinate inflammation, tissue repair, and re-epithelialization. Models may use cultured cells, engineered tissues, or living organisms to examine host-pathogen interactions under controlled conditions. They support evaluation of antimicrobial strategies, immune-modulating treatments, and healing outcomes, while helping researchers distinguish protective inflammation from responses that delay repair or promote chronic infection.

Wound Model - Related Videos

Research

JoVE Journal - Medicine

Demonstration of the Rat Ischemic Skin Wound Model

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Cited by 32 •

2015

The rat, due to its size, availability, and rather docile behavior, has been utilized as a research model for many years. The goal of this protocol is to utilize the rat as an ischemic skin wound healing model to provide valuable insight into the pathophysiology of chronic wounds.

Murine Model of Wound Healing

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Cited by 207 •

2013

A murine model of cutaneous wound healing that can be used to assess therapeutic compounds in physiological and pathophysiological settings.

Research

JoVE Journal - Immunology and Infection
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Swine Model of Biofilm Infection and Invisible Wounds

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Cited by 12 •

2023

Chronic wounds that are resistant to antibiotics are a major threat to the healthcare system. Biofilm infections are stubborn and hostile and can cause deficient functional wound closure. We report a clinically relevant swine model of biofilm-infected full-thickness chronic wounds. This model is powerful for mechanistic studies as well as for testing interventions.

A Mouse Fetal Skin Model of Scarless Wound Repair

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Cited by 24 •

2015

During mammalian development, early gestational skin wounds heal without a scar. Here we detail a reliable and reproducible model of fetal scarless wound healing in the cutaneous dorsum of E16.5 (scarless) and E18.5 (scarring) mouse embryos.

A Simplified Technique for Producing an Ischemic Wound Model

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Cited by 22 •

2012

We have developed a minimally invasive technique to create a rabbit ischemic ear wound model by dividing the central artery and nerve and the cranial neurovascular bundle. A subcutaneous tunnel then cuts all subcutaneous tissues. This procedure causes minimal skin disruption and can be safely used in diabetic animals.

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