Javascript must be enabled to continue!
C-FGF23 peptide alleviates hypoferremia during acute inflammation
View through CrossRef
Hypoferremia results as an acute phase response to infection and inflammation aiming to reduce iron availability to pathogens. Activation of toll-like receptors (TLRs), the key sensors of the innate immune system, induces hypoferremia mainly through the rise of the iron hormone hepcidin. Conversely, stimulation of erythropoiesis suppresses hepcidin expression via induction of the erythropoietin-responsive hormone erythroferrone. Iron deficiency stimulates transcription of the osteocyte-secreted protein FGF23. Here we hypothesized that induction of FGF23 in response to TLR4 activation is a potent contributor to hypoferremia and, thus, impairment of its activity may alleviate hypoferremia induced by lipopolysaccharide (LPS), a TLR 4 agonist. We used the C-terminal tail of FGF23 to impair endogenous full-length FGF23 signaling in wild-type mice, and investigated its impact on hypoferremia. Our data show that FGF23 is induced as early as pro-inflammatory cytokines in response to LPS, followed by upregulation of hepcidin and downregulation of erythropoietin (Epo) expression in addition to decreased serum iron and transferrin saturation. Further, LPS-induced hepatic and circulating hepcidin were significantly reduced by FGF23 signaling disruption. Accordingly, iron sequestration in liver and spleen caused by TLR4 activation was completely abrogated by FGF23 signaling inhibition, resulting in alleviation of serum iron and transferrin saturation deficit. Taken together, our studies highlight for the first time that inhibition of FGF23 signaling alleviates LPS-induced acute hypoferremia.
Ferrata Storti Foundation (Haematologica)
Title: C-FGF23 peptide alleviates hypoferremia during acute inflammation
Description:
Hypoferremia results as an acute phase response to infection and inflammation aiming to reduce iron availability to pathogens.
Activation of toll-like receptors (TLRs), the key sensors of the innate immune system, induces hypoferremia mainly through the rise of the iron hormone hepcidin.
Conversely, stimulation of erythropoiesis suppresses hepcidin expression via induction of the erythropoietin-responsive hormone erythroferrone.
Iron deficiency stimulates transcription of the osteocyte-secreted protein FGF23.
Here we hypothesized that induction of FGF23 in response to TLR4 activation is a potent contributor to hypoferremia and, thus, impairment of its activity may alleviate hypoferremia induced by lipopolysaccharide (LPS), a TLR 4 agonist.
We used the C-terminal tail of FGF23 to impair endogenous full-length FGF23 signaling in wild-type mice, and investigated its impact on hypoferremia.
Our data show that FGF23 is induced as early as pro-inflammatory cytokines in response to LPS, followed by upregulation of hepcidin and downregulation of erythropoietin (Epo) expression in addition to decreased serum iron and transferrin saturation.
Further, LPS-induced hepatic and circulating hepcidin were significantly reduced by FGF23 signaling disruption.
Accordingly, iron sequestration in liver and spleen caused by TLR4 activation was completely abrogated by FGF23 signaling inhibition, resulting in alleviation of serum iron and transferrin saturation deficit.
Taken together, our studies highlight for the first time that inhibition of FGF23 signaling alleviates LPS-induced acute hypoferremia.
Related Results
Fibroblast growth factor 23: associations with antiretroviral therapy in patients co‐infected with HIV and hepatitis C
Fibroblast growth factor 23: associations with antiretroviral therapy in patients co‐infected with HIV and hepatitis C
ObjectivesFibroblast growth factor 23 (FGF23) has been associated with cardiovascular mortality. We estimate associations between the level of plasma FGF23 and exposure to abacavir...
Bone Formation Regulates Circulating Concentrations of Fibroblast Growth Factor 23
Bone Formation Regulates Circulating Concentrations of Fibroblast Growth Factor 23
We examined the role of bone remodeling in the regulation of circulating concentrations of FGF23 using mouse models manifesting differing degrees of coupled and uncoupled bone turn...
Diagnostic accuracy of fibroblast growth factor 23 for predicting acute kidney injury in patients with acute decompensated heart failure
Diagnostic accuracy of fibroblast growth factor 23 for predicting acute kidney injury in patients with acute decompensated heart failure
AbstractBackgroundElevated plasma levels of fibroblast growth factor 23 (FGF23) have emerged as a predictor for the development of acute kidney injury (AKI) in patients undergoing ...
Lipocalin 2 stimulates bone fibroblast growth factor 23 production in chronic kidney disease
Lipocalin 2 stimulates bone fibroblast growth factor 23 production in chronic kidney disease
AbstractBone-produced fibroblast growth factor 23 (FGF23) increases in response to inflammation and iron deficiency and contributes to cardiovascular mortality in chronic kidney di...
FGF23 and Vitamin D Metabolism
FGF23 and Vitamin D Metabolism
ABSTRACT
Apart from its phosphaturic action, the bone‐derived hormone fibroblast growth factor‐23 (FGF23) is also an essential regulator of v...
#2806 Primary hyperparathyroidism induces erythropoietin resistance through FGF23
#2806 Primary hyperparathyroidism induces erythropoietin resistance through FGF23
Abstract
Background and Aims
Primary hyperparathyroidism (PHPT) often causes hypercalcemia and complications requiring pa...
Fibroblast Growth factor 23 for prediction of outcome in community- acquired acute kidney injury: a prospective observational study
Fibroblast Growth factor 23 for prediction of outcome in community- acquired acute kidney injury: a prospective observational study
Abstract
Background
Serum Fibroblast Growth factor 23 (FGF23) level has been found to be elevated in AKI through multiple previous studies. Moreover, higher FGF23 level wa...
Roles of osteocytes in phosphate metabolism
Roles of osteocytes in phosphate metabolism
Osteocytes are dendritic cells in the mineralized bone matrix that descend from osteoblasts. They play critical roles in controlling bone mass through the production of sclerostin,...

