AI Article Synopsis

  • Chronic kidney disease often leads to severe anemia and iron deficiency due to factors like low erythropoietin production, iron deficiency, and inflammation, which is typically treated with synthetic erythropoietin injections.
  • High levels of fibroblast growth factor 23 (FGF23) in kidney disease have been linked to reduced red blood cell production and exacerbated anemia.
  • Inhibiting FGF23 signaling not only stimulates red blood cell production and alleviates anemia but also reduces inflammation and increases iron levels, presenting a potential new treatment approach for improving patient outcomes in chronic kidney disease.

Article Abstract

Severe anemia and iron deficiency are common complications in chronic kidney disease. The cause of renal anemia is multifactorial and includes decreased erythropoietin (Epo) production, iron deficiency, and inflammation, and it is currently treated with injections of synthetic Epo. However, the use of recombinant Epo has several adverse effects. We previously reported that high fibroblast growth factor 23 (FGF23) levels in mice are associated with decreased red blood cell production, whereas genetic inactivation of Fgf23 results in expansion of the erythroid lineage. The present study is the first to show that high FGF23 levels in a mouse model of renal failure contribute to renal anemia, and inhibiting FGF23 signaling stimulates erythropoiesis and abolishes anemia and iron deficiency. Moreover, we show that inhibition of FGF23 signaling significantly decreases erythroid cell apoptosis and influences the commitment of hematopoietic stem cells toward the erythroid linage. Furthermore, we show that blocking FGF23 signaling attenuates inflammation, resulting in increased serum iron and ferritin levels. Our data clearly demonstrate that elevated FGF23 is a causative factor in the development of renal anemia and iron deficiency, and importantly, blocking FGF23 signaling represents a novel approach to stimulate erythropoiesis and possibly improve survival for millions of chronic kidney disease patients worldwide.-Agoro, R., Montagna, A., Goetz, R., Aligbe, O., Singh, G., Coe, L. M., Mohammadi, M., Rivella, S., Sitara, D. Inhibition of fibroblast growth factor 23 (FGF23) signaling rescues renal anemia.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5998980PMC
http://dx.doi.org/10.1096/fj.201700667RDOI Listing

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