Related Experiment Video
Updated: Nov 23, 2025

5/6 Nephrectomy Using Sharp Bipolectomy Via Midline Laparotomy in Rats
Published on: April 4, 2025
Iron and Chronic Kidney Disease: Still a Challenge
Ewa Wojtaszek1, Tomasz Glogowski1, Jolanta Malyszko1
1Department of Nephrology, Dialysis and Internal Diseases, The Medical University of Warsaw, Warsaw, Poland.
Insights
Anemia in chronic kidney disease (CKD) stems from iron and erythropoietin deficiency. New insights into iron homeostasis offer promise for novel diagnostic and therapeutic tools for managing iron disorders in CKD patients.
Area of Science:
- Nephrology
- Hematology
- Biochemistry
Background:
- Anemia is a common complication of chronic kidney disease (CKD), primarily caused by iron and erythropoietin deficiency.
- Recent advancements have improved understanding of iron balance, trafficking, and its interplay with oxygen and erythropoiesis.
- This enhanced knowledge is crucial for managing iron disorders in CKD.
Purpose of the Study:
- To review the current understanding of iron homeostasis in CKD.
- To highlight the roles of the hepcidin-ferroportin axis, fibroblast growth factor 23 (FGF23), and erythroferrone (ERFE).
- To discuss the limited research on ERFE and specific renal replacement therapies in CKD.
Main Methods:
- Literature review focusing on iron metabolism, anemia in CKD, and related regulatory pathways.
- Analysis of existing studies on hepcidin, FGF23, and ERFE in the context of kidney disease.
- Examination of research on different renal replacement therapy modalities and their impact on iron status.
Main Results:
- The hepcidin-ferroportin axis is central to iron regulation.
- A bidirectional relationship exists between FGF23, iron status, anemia, and inflammation.
- ERFE's role in CKD iron homeostasis requires further characterization, with limited and conflicting data available.
Conclusions:
- Understanding iron metabolism in CKD is evolving, with new therapeutic targets emerging.
- Further research is needed on ERFE and iron management in less common renal replacement therapies like peritoneal dialysis.
- Novel therapies targeting iron pathways show promise but require more clinical validation.
Abstract:
Anemia is a clinical feature of chronic kidney disease (CKD). Most common causes are iron and erythropoietin deficiency. The last two decades have yielded significant advances in understanding iron balance's physiology, including iron trafficking and the crosstalk between iron, oxygen, and erythropoiesis. This knowledge sheds new light on the regulation and disturbance of iron homeostasis in CKD and holds the promise for developing new diagnostic and therapeutic tools to improve the management of iron disorders. Hepcidin-ferroportin axis has a central role in regulating body iron balance and coordinating communication between tissues and cells that acquire, store, and utilize iron. Recent research has revealed a bidirectional relationship between fibroblast growth factor 23 (FGF23) and iron status, anemia, and inflammation, as well as the role of erythroferrone (ERFE) in iron homeostasis. However, ERFE concentrations and actions are not well-characterized in CKD patients. Studies on ERFE in CKD are limited with slightly conflicting results. Despite general interest in iron metabolism in kidney diseases, studies on the less prevalent renal replacement therapy mode, such as peritoneal dialysis or hemodiafiltration, are scarce. Slightly more was published on hemodialysis. There are several novel options on the horizon; however, clinical data are limited. One should be aware of the potential risks and benefits of the novel, sophisticated therapies. An inhibition of hepcidin on the different pathways might be also a viable adjunctive therapeutic option in other clinical situations.
More Related Videos
Related Concept Videos
Chronic Kidney Disease I: Introduction
Chronic Kidney Disease III: Interprofessional Care
Chronic Kidney Disease II: Clinical Manifestations
Chronic Kidney Disease IV: Nursing Management
Acute Kidney Injury IV: Diagnostic Studies and Prevention
Acute Kidney Injury V: Interprofessional Care

