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Published on: September 5, 2016
Iron overload, oxidative stress and vascular dysfunction: Evidences from clinical studies and animal models
Leonardo Dos Santos1, Sabrina Rodrigues Bertoli2, Renata Andrade Ávila3
1Department of Physiological Sciences, Federal University of Espirito Santo, Vitória, ES, Brazil.
Insights
Iron overload damages blood vessels, contributing to cardiovascular issues. This review highlights iron excess as a harmful factor in vascular health, proposing the term "iron overload vasculopathy" for better understanding and treatment.
Area of Science:
- Cardiovascular Science
- Hematology
- Pathophysiology
Background:
- Iron's redox capacity is vital, but overload causes tissue damage, particularly cardiovascular.
- Vascular impact of iron overload was neglected until recent studies linked it to oxidative stress and endothelial dysfunction.
- The
- iron hypothesis
- emerged, linking iron overload to vascular disease.
Purpose of the Study:
- To review current knowledge on iron overload's vascular effects.
- To highlight the detrimental role of excess iron in vascular homeostasis.
- To propose the term
- iron overload vasculopathy
- for this condition.
Main Methods:
- Review of epidemiological studies.
- Analysis of animal models.
- Inclusion of in vitro cellular system data.
Main Results:
- Iron excess plays a harmful role in vascular homeostasis.
- Evidence supports a significant impact of iron overload on vascular health.
- Pathophysiology of vascular dysfunction in iron overload has been revisited.
Conclusions:
- Iron overload is not benign to the vasculature; it causes significant dysfunction.
- The term
- iron overload vasculopathy
- is proposed to define this condition.
- Identified therapeutic targets warrant pre-clinical investigation for cardiovascular protection in iron overload syndromes.
Abstract:
Although iron is a metal involved in many vital processes due to its redox capacity, body iron overloads lead to tissue damage, including the cardiovascular system. While cardiomyopathy was the focus since the 1960s, the impact on the vasculature was comparatively neglected for about 40 years, when clinical studies correlating iron overload, oxidative stress, endothelial dysfunction, arterial stiffness and atherosclerosis reinforced an "iron hypothesis". Due to controversial results from some epidemiological studies investigating atherosclerotic events and iron levels, well-controlled trials and animal studies provided essential data about the influence of iron, per se, on the vasculature. As a result, the pathophysiology of vascular dysfunction in iron overload have been revisited. This review summarizes the knowledge obtained from epidemiological studies, animal models and "in vitro" cellular systems in recent decades, highlighting a more harmful than innocent role of iron excess for the vascular homeostasis, which supports our proposal to hereafter denominate "iron overload vasculopathy". Additionally, evidence-based potential therapeutic targets are pointed out to be tested in pre-clinical research that may be useful in cardiovascular protection for patients with iron overload syndromes.
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