Diabetic Skin Wounds

Diabetic skin wounds are chronic breaks in the skin that heal poorly in people with diabetes, often because persistent metabolic dysfunction disrupts normal tissue repair and increases the risk of infection and tissue loss. Hyperglycemia and impaired blood flow sustain inflammation, increase oxidative stress, and limit angiogenesis, while defective keratinocyte migration, fibroblast activity, extracellular matrix deposition, and re-epithelialization delay closure. Developmental biology provides a framework for comparing these disrupted repair programs with the coordinated signaling, cell behaviors, and tissue remodeling that shape developing skin. Such comparisons support wound-healing models and regenerative approaches aimed at restoring vascular growth, epithelial repair, and balanced inflammation.

Diabetic Skin Wounds - 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.

Generation of a Three-dimensional Full Thickness Skin Equivalent and Automated Wounding

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Cited by 53 •

2015

The goal of this protocol is to build up a three-dimensional full thickness skin equivalent, which resembles natural skin. With a specifically constructed automated wounding device, precise and reproducible wounds can be generated under maintenance of sterility.

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.

Come to the Light Side: In Vivo Monitoring of Pseudomonas aeruginosa Biofilm Infections in Chronic Wounds in a Diabetic Hairless Murine Model

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Cited by 8 •

2017

Here we describe a novel diabetic murine model utilizing hairless mice for real-time, non-invasive, monitoring of biofilm wound infections of bioluminescent Pseudomonas aeruginosa. This method can be adapted to evaluate infection of other bacterial species and genetically modified microorganisms, including multi-species biofilms, and test the efficacy of antibiofilm strategies.

Generating an Excisional Skin Wound in a Mouse Model via Punch Biopsy

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2025

This video demonstrates a punch biopsy procedure to create a precise wound in a mouse model. The excision exposes the subcutaneous layer of the skin, providing a suitable site for studying immune responses to localized pathogen infection.

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