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A Protocol for Constructing a Rat Wound Model of Type 1 Diabetes
Published on: February 17, 2023
Mechanisms and Interventions of Diabetic Wound Healing
Juan Feng1, Sien Lai1, Dongsheng Tang1
1Guangdong Provincial Engineering and Technology Research Center for Gene Editing, School of Medicine, Foshan University, Foshan, 528000, China.
Abstract:
Diabetic wounds constitute a significant global health challenge, affecting millions of individuals worldwide and imposing a substantial burden on healthcare systems. This review explores the complex pathophysiology of diabetic wound healing and discusses innovative interventions aimed at addressing this critical clinical problem. The impaired healing process in diabetic wounds is characterized by a multitude of interrelated factors, including cellular dysfunction, altered inflammatory responses, oxidative stress, the formation of advanced glycation end-products, and neurovascular abnormalities. Fibroblasts, keratinocytes, and endothelial cells demonstrate diminished proliferation and migration capabilities, while immune cells exhibit dysregulated responses, which contribute to a persistent inflammatory state. Complications associated with diabetes, such as neuropathy and vascular insufficiency, further exacerbate the wound healing process. Recent advancements in wound care strategies have opened new avenues for enhancing diabetic wound healing. These advancements encompass the development of advanced dressings and biomaterials, growth factor therapies, cell-based interventions, and gene therapy approaches. The integration of diverse treatment modalities, coupled with the management of systemic metabolic abnormalities, offers significant promise for improving outcomes in diabetic wound care. Future research should focus on optimizing combination therapies, developing personalized treatment algorithms, and conducting large-scale clinical trials to establish the most effective and safest interventions for diabetic wound healing.
Insights
Diabetic wound healing is impaired by cellular dysfunction and diabetes complications. Innovative therapies like advanced dressings and cell-based treatments show promise for improving patient outcomes.
Area of Science:
- Wound Healing Research
- Diabetology
- Regenerative Medicine
Background:
- Diabetic wounds represent a major global health issue with significant healthcare costs.
- Impaired healing is linked to cellular dysfunction, inflammation, oxidative stress, and diabetes complications like neuropathy and vascular insufficiency.
- Key cells involved in healing, such as fibroblasts and keratinocytes, show reduced function in diabetic patients.
Purpose of the Study:
- To review the complex pathophysiology of diabetic wound healing.
- To discuss innovative interventions for improving diabetic wound healing.
- To highlight future research directions for enhanced diabetic wound care.
Main Methods:
- Literature review of diabetic wound pathophysiology.
- Analysis of current and emerging wound care strategies.
- Synthesis of information on cellular and molecular mechanisms.
Main Results:
- Diabetic wound healing is multifactorial, involving cellular dysfunction, altered inflammation, oxidative stress, advanced glycation end-products, and neurovascular issues.
- Impaired cell proliferation and migration, alongside dysregulated immune responses, contribute to chronic inflammation.
- Diabetes-specific complications like neuropathy and vascular insufficiency worsen the healing process.
Conclusions:
- Advanced wound care strategies, including novel dressings, biomaterials, growth factors, cell therapies, and gene therapy, offer new hope.
- Combining diverse treatments with metabolic control is crucial for better outcomes.
- Future research should prioritize combination therapies, personalized medicine, and large clinical trials.
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