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November 30, 2010Journal of the American Society of Nephrology342 citationsOpen Access

Inhibition of Prolyl Hydroxylases Increases Erythropoietin Production in ESRD

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WBWanja M. BernhardtMWMichael S. WiesenerPSP. Scigalla

Key Points

  • Evaluate whether prolyl-hydroxylase inhibition can stimulate endogenous erythropoietin production in healthy individuals and patients with end-stage renal disease.
  • Conducted a phase 1 study administering the oral prolyl-hydroxylase inhibitor FG-2216 to stabilize hypoxia-inducible factor independent of oxygen availability.
  • Enrolled 18 participants: 12 hemodialysis patients (6 with native kidneys and 6 anephric) alongside 6 healthy volunteers.
  • FG-2216 increased plasma erythropoietin levels 30.8-fold in hemodialysis patients with kidneys.
  • Plasma erythropoietin levels increased 14.5-fold in anephric hemodialysis patients and 12.7-fold in healthy volunteers.

Abstract

The reasons for inadequate production of erythropoietin (EPO) in patients with ESRD are poorly understood. A better understanding of EPO regulation, namely oxygen-dependent hydroxylation of the hypoxia-inducible transcription factor (HIF), may enable targeted pharmacological intervention. Here, we tested the ability of fibrotic kidneys and extrarenal tissues to produce EPO. In this phase 1 study, we used an orally active prolyl-hydroxylase inhibitor, FG-2216, to stabilize HIF independent of oxygen availability in 12 hemodialysis (HD) patients, six of whom were anephric, and in six healthy volunteers. FG-2216 increased plasma EPO levels 30.8-fold in HD patients with kidneys, 14.5-fold in anephric HD patients, and 12.7-fold in healthy volunteers. These data demonstrate that pharmacologic manipulation of the HIF system can stimulate endogenous EPO production. Furthermore, the data indicate that deranged oxygen sensing—not a loss of EPO production capacity—causes renal anemia.

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Cite This Study

Bernhardt et al. (2010) studied this question.

synapsesocial.com/papers/69d90dbad16a9fca2364f4aehttps://doi.org/10.1681/asn.2010010116
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