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Hepcidin: another culprit for complications in patients with chronic kidney disease?
Insights
High hepcidin levels in chronic kidney disease (CKD) patients can cause iron complications and may accelerate atherosclerosis. Hepcidin also influences bacterial infections and response to anemia treatments.
Area of Science:
- Endocrinology
- Nephrology
- Iron Metabolism
Background:
- Hepcidin is a key regulator of iron metabolism.
- Elevated serum hepcidin in chronic kidney disease (CKD) patients leads to iron sequestration and complications.
- Serum hepcidin correlates closely with serum ferritin in healthy individuals and CKD patients.
Discussion:
- Hepcidin regulates intestinal iron absorption and ferroportin (FPN) expression, impacting intracellular iron availability.
- Reduced FPN expression due to high hepcidin may promote bacterial growth.
- Impaired hepcidin expression is linked to attenuated atherosclerosis in hyperferritinemia patients, suggesting hepcidin accelerates atherosclerosis by trapping iron in arterial wall cells.
Key Insights:
- High hepcidin levels are associated with favorable response to erythropoiesis-stimulating agents (ESAs).
- Hepcidin's role in iron metabolism extends to CKD complications beyond ESA hyporesponsiveness, including bacterial infections and atherosclerosis.
- Hepcidin may accelerate atherosclerosis by hindering iron efflux from macrophages and other arterial cells.
Outlook:
- Further research into hepcidin's multifaceted role in CKD pathogenesis is warranted.
- Targeting hepcidin could offer novel therapeutic strategies for managing iron-related complications in CKD.
- Understanding hepcidin's impact on atherosclerosis and infection risk may lead to improved patient outcomes.
Abstract:
Hepcidin has been established as a central regulator of iron metabolism. In most patients with chronic kidney disease (CKD), serum hepcidin levels are relatively high, favoring iron sequestration in several cell types and organs and thereby leading to iron-related complications. In the absence of overt inflammation, serum hepcidin has been found to be most closely associated with serum ferritin in healthy subjects and in CKD patients. Intestinal iron absorption is tightly regulated by both iron stores and hepcidin. The expression of the mammalian iron exporter, ferroportin (FPN), limits the growth of intracellular bacteria by depleting cytosolic iron. An upregulation of hepcidin could diminish FPN and favor bacterial growth. Of note, in patients with hyperferritinemia impaired hepcidin expression caused by a mutation in the hemochromatosis gene associates with an attenuation of atherosclerosis. Thus, hepcidin might accelerate atherosclerosis by preventing iron exit from macrophages or other cells in the arterial wall. High hepcidin levels have also been found to be linked to good erythropoiesis-stimulating agents (ESAs) response, in conjunction with the strong hepcidin-ferritin correlation. Finally, hepcidin may also play a significant role by itself in the pathogenesis of CKD complications associated with disturbed iron metabolism, i.e. unrelated to ESA hyporesponsiveness, such as bacterial infections and atherosclerosis.
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