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Citations to this article

Ironing out mechanisms of iron homeostasis and disorders of iron deficiency
Navid Koleini, … , Justin Geier, Hossein Ardehali
Navid Koleini, … , Justin Geier, Hossein Ardehali
Published June 1, 2021
Citation Information: J Clin Invest. 2021;131(11):e148671. https://doi.org/10.1172/JCI148671.
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Review Article has an altmetric score of 14

Ironing out mechanisms of iron homeostasis and disorders of iron deficiency

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Abstract

Iron plays an important role in mammalian physiological processes. It is a critical component for the function of many proteins, including enzymes that require heme and iron-sulfur clusters. However, excess iron is also detrimental because of its ability to catalyze the formation of reactive oxygen species. As a result, cellular and systemic iron levels are tightly regulated to prevent oxidative damage. Iron deficiency can lead to a number of pathological conditions, the most prominent being anemia. Iron deficiency should be corrected to improve adult patients’ symptoms and to facilitate normal growth during fetal development and childhood. However, inappropriate use of intravenous iron in chronic conditions, such as cancer and heart failure, in the absence of clear iron deficiency can lead to unwanted side effects. Thus, this form of therapy should be reserved for certain patients who cannot tolerate oral iron and need rapid iron replenishment. Here, we will review cellular and systemic iron homeostasis and will discuss complications of iron deficiency.

Authors

Navid Koleini, Jason S. Shapiro, Justin Geier, Hossein Ardehali

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Total citations by year

Year: 2025 2024 2023 2022 2021 Total
Citations: 4 16 15 10 2 47
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal. Not all publishers participate in CrossRef, so this information is not comprehensive. Additionally, data may not reflect the most current citations to this article, and the data may differ from citation information available from other sources (for example, Google Scholar, Web of Science, and Scopus).

Citations to this article in year 2022 (10)

Title and authors Publication Year
IRE-dependent Regulation of Intestinal Dmt1 Prevails During Chronic Dietary Iron Deficiency but is Dispensable in Conditions of Acute Erythropoietic Stress
M Qatato, M Bonadonna, G Palais, A Ertl, G Schmidt, M Polycarpou-Schwarz, Z Karim, B Galy
HemaSphere 2022
Aging is associated with increased brain iron through cortex-derived hepcidin expression
T Sato, J Shapiro, H Chang, R Miller, H Ardehali
eLife 2022
The molecular and metabolic landscape of iron and ferroptosis in cardiovascular disease
Fang X, Ardehali H, Min J, Wang F
Nature reviews. Cardiology 2022
The Influence of Intensive Nutritional Education on the Iron Status in Infants
Woźniak D, Podgórski T, Krzyżanowska-Jankowska P, Dobrzyńska M, Wichłacz-Trojanowska N, Przysławski J, Drzymała-Czyż S
Nutrients 2022
Efficacy and Mechanism of Roxadustat plus Oral Iron in the Treatment of Elderly Chronic Kidney Disease with Anemia
Liu B, Shi T, Tian S, Luo X, Yang C, Wen J
Evidence-based complementary and alternative medicine : eCAM 2022
Intrathecal liproxstatin-1 delivery inhibits ferroptosis and attenuates mechanical and thermal hypersensitivities in rats with complete Freund’s adjuvant-induced inflammatory pain
Deng YF, Xiang P, Du JY, Liang JF, Li X
Neural Regeneration Research 2022
Molecular Mechanisms of Iron and Heme Metabolism
Dutt S, Hamza I, Bartnikas TB
Annual Review of Nutrition 2022
Association Between Serum Ferritin Concentration and Risk of Adverse Maternal and Fetal Pregnancy Outcomes: A Retrospective Cohort Study
Yang L, Wu L, Liu Y, Chen H, Wei Y, Sun R, Shen S, Zhan B, Yang J, Deng G
Diabetes, Metabolic Syndrome and Obesity: Targets and Therapy 2022
How I treat anemia with red blood cell transfusion and iron
Carson JL, Brittenham GM
Blood 2022
Focus on Cellular Iron Metabolism in Aortic Disease
Naito Y, Ishihara M
2022

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