4.7 Article

Zinc Homeostasis in Diabetes Mellitus and Vascular Complications

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BIOMEDICINES
卷 10, 期 1, 页码 -

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MDPI
DOI: 10.3390/biomedicines10010139

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oxidative stress; ROS; zinc homeostasis; zinc transporters

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Oxidative stress is a major factor in the development of diabetes and its complications, and zinc plays a significant role in protecting against this stress. Zinc dysregulation is associated with diabetes and may contribute to vascular changes caused by the disease. Zinc supplementation has been shown to be beneficial in preventing and mitigating oxidative stress and its consequences.
Oxidative stress represents an impaired metabolic system that promotes damage to cells and tissues. This is the predominant factor that leads to the development and progression of diabetes and diabetic complications. Research has indicated that zinc plays a consequential mechanistic role in the protection against oxidative stress as zinc is required for the proper functioning of the antioxidant system, the suppression of inflammatory mediators, and the modulation of zinc transporters. Recently, the mechanisms surrounding ZnT8, ZIP7, and metallothionein have shown to be of particular pathogenic importance and are considered as potential therapeutic targets in disease management. The literature has shown that zinc dysregulation is associated with diabetes and may be considered as a leading contributor to the deleterious vascular alterations exhibited by the disease. Although further investigation is required, studies have indicated the favorable use of zinc supplementation in the protection against and prevention of oxidative stress and its consequences over the course of the condition. This review aims to provide a comprehensive account of zinc homeostasis, the oxidative mechanisms governed by zinc status, current therapeutic targets, and the impact of zinc supplementation in the prevention of disease onset and in mitigating vascular complications.

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