» Articles » PMID: 36995275

Erythroferrone Exacerbates Iron Overload and Ineffective Extramedullary Erythropoiesis in a Mouse Model of β-thalassemia

Overview
Journal Blood Adv
Specialty Hematology
Date 2023 Mar 30
PMID 36995275
Authors
Affiliations
Soon will be listed here.
Abstract

β-thalassemia is characterized by chronic hepcidin suppression and iron overload, even in patients who have not undergone transfusion. The HbbTh3/+ (Th3/+) mouse model of nontransfusion-dependent β-thalassemia (NTDBT) partially recapitulates the human phenotype but lacks chronic hepcidin suppression, progressive iron accumulation into adulthood, or the interindividual variation of the rate of iron loading observed in patients. Erythroferrone (ERFE) is an erythroid regulator that suppresses hepcidin during increased erythropoiesis. ERFE concentrations in the sera of patients with NTDBT correlate negatively with hepcidin levels but vary over a broad range, possibly explaining the variability of iron overload in patients. To analyze the effect of high ERFE concentrations on hepcidin and iron overload in NTDBT, we crossed Th3/+ mice with erythroid ERFE-overexpressing transgenic mice. Th3/ERFE-transgenic mice suffered high perinatal mortality, but embryos at E18.5 showed similar viability, appearance, and anemia effects as Th3/+ mice. Compared with Th3/+ littermates, adult Th3/ERFE mice had similarly severe anemia but manifested greater suppression of serum hepcidin and increased iron accumulation in the liver, kidney, and spleen. The Th3/ERFE mice had much higher concentrations of serum ERFE than either parental strain, a finding attributable to both a higher number of erythroblasts and higher production of ERFE by each erythroblast.Th3/+ and Th3/ERFE mice had similar red blood cell count and shortened erythrocyte lifespan, but Th3/ERFE mice had an increased number of erythroid precursors in their larger spleens, indicative of aggravated ineffective extramedullary erythropoiesis. Thus, high ERFE concentrations increase the severity of nontransfusional iron overload and ineffective erythropoiesis in thalassemic mice but do not substantially affect anemia or hemolysis.

Citing Articles

Integrated metabolomic and microbiome analysis identifies Cupriavidus metallidurans as a potential therapeutic target for β-thalassemia.

Guo X, Lin S, Zhang X, Li M, Wang Z, Peng Y Ann Hematol. 2024; 103(12):5169-5179.

PMID: 39349606 DOI: 10.1007/s00277-024-06016-z.


In vivo silencing of intestinal DMT1 mitigates iron loading in β-thalassemia intermedia (Hbbth3/+) mice.

Yu Y, Woloshun R, Lee J, Ebea-Ugwuanyi P, Shine J, Zhu S Blood Adv. 2024; 8(22):5753-5765.

PMID: 39250719 PMC: 11599986. DOI: 10.1182/bloodadvances.2024013333.


Genes Selectively Expressed in Rat Organs.

Li D, Wan X, Yun Y, Li Y, Duan W Curr Genomics. 2024; 25(4):261-297.

PMID: 39156728 PMC: 11327808. DOI: 10.2174/0113892029273121240401060228.


Mitoxantrone ameliorates ineffective erythropoiesis in a β-thalassemia intermedia mouse model.

Zhang H, Liu R, Fang Z, Nie L, Ma Y, Sun F Blood Adv. 2024; 8(15):4017-4024.

PMID: 38861356 PMC: 11339037. DOI: 10.1182/bloodadvances.2024012679.

References
1.
Kearney S, Nemeth E, Neufeld E, Thapa D, Ganz T, Weinstein D . Urinary hepcidin in congenital chronic anemias. Pediatr Blood Cancer. 2005; 48(1):57-63. DOI: 10.1002/pbc.20616. View

2.
Jones E, Pasricha S, Allen A, Evans P, Fisher C, Wray K . Hepcidin is suppressed by erythropoiesis in hemoglobin E β-thalassemia and β-thalassemia trait. Blood. 2014; 125(5):873-80. PMC: 4321326. DOI: 10.1182/blood-2014-10-606491. View

3.
Wang C, Xu Y, Traeger L, Dogan D, Xiao X, Steinbicker A . Erythroferrone lowers hepcidin by sequestering BMP2/6 heterodimer from binding to the BMP type I receptor ALK3. Blood. 2019; 135(6):453-456. PMC: 7005366. DOI: 10.1182/blood.2019002620. View

4.
Sangkhae V, Yu V, Coffey R, OBrien K, Ganz T, Nemeth E . Erythroferrone contributes to iron mobilization for embryo erythropoiesis in iron-deficient mouse pregnancies. Am J Hematol. 2022; 97(10):1348-1358. PMC: 9462668. DOI: 10.1002/ajh.26680. View

5.
Adamsky K, Weizer O, Amariglio N, Breda L, Harmelin A, Rivella S . Decreased hepcidin mRNA expression in thalassemic mice. Br J Haematol. 2003; 124(1):123-4. DOI: 10.1046/j.1365-2141.2003.04734.x. View