Diabetic Wound Research

Diabetic wound research investigates why wounds in people with diabetes heal slowly or fail to close, making it essential for preventing chronic ulcers, infection, and limb-threatening complications. Persistent hyperglycemia can impair blood-vessel function, reduce tissue oxygenation, disrupt immune responses, and prolong inflammation, while neuropathy may allow injuries to go unnoticed or worsen through repeated pressure. Researchers use clinical studies, cellular models, biomaterials, and animal models to examine wound repair and evaluate therapies that promote re-epithelialization, angiogenesis, infection control, and tissue regeneration. Findings support improved risk assessment, wound-care strategies, and development of targeted treatments for diabetic ulcers.

Diabetic Wound Research - Related Videos

Research

JoVE Journal - Immunology and Infection

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

0 Views •

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.

Protocol to Create Chronic Wounds in Diabetic Mice

0 Views •

Cited by 22 •

2019

There is an update associated with this article. Please click here to see the update. Chronic wounds are developed from acute wounds on a diabetic mouse model by inducing high levels of oxidative stress after a full-thickness cutaneous wound. The wound is treated with inhibitors for catalase and glutathione peroxidase, resulting in impaired healing and biofilm development by bacteria present in the skin microbiome.

Adenoviral Gene Therapy for Diabetic Keratopathy: Effects on Wound Healing and Stem Cell Marker Expression in Human Organ-cultured Corneas and Limbal Epithelial Cells

0 Views •

Cited by 27 •

2016

An example of adenoviral gene therapy in the human diabetic organ-cultured corneas is presented towards the normalization of delayed wound healing and markedly reduced epithelial stem cell marker expression in these corneas. It also describes the optimization of this process in stem cell-enriched limbal epithelial cultures.

A Simplified Technique for Producing an Ischemic Wound Model

0 Views •

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.

Demonstration of the Rat Ischemic Skin Wound Model

0 Views •

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.

View All Results

FAQs

Related Topics