Iron-based phosphate binders: do they offer advantages over currently available phosphate binders?
Armando Luis Negri1, Pablo Antonio Ureña Torres2
1Instituto de Diagnostico e Investigaciones Metabólicas , Universidad del Salvador , Buenos Aires , Argentina.
Insights
New iron-based phosphate binders offer safe and effective options for managing hyperphosphatemia in chronic kidney disease (CKD) patients, potentially reducing mortality risks and costs associated with traditional binders.
Area of Science:
- Nephrology
- Pharmacology
- Cardiovascular Medicine
Background:
- Hyperphosphatemia in end-stage chronic kidney disease (CKD) is linked to increased cardiovascular risks.
- Current oral phosphate binders have limitations, including calcium balance issues or high costs.
- Iron-based phosphate binders represent a novel therapeutic class for managing serum phosphate levels.
Purpose of the Study:
- To evaluate the safety and efficacy of novel iron-based phosphate binders.
- To compare the characteristics and potential benefits of ferric citrate and sucroferric oxyhydroxide.
- To assess their suitability for different patient profiles within CKD management.
Main Methods:
- Clinical trials were conducted to test several iron-based phosphate binders.
- Ferric citrate (JTT-751) and sucroferric oxyhydroxide (PA21) advanced to clinical use.
- Comparative analysis of iron absorption, efficacy, and patient adherence was performed.
Main Results:
- Both ferric citrate and sucroferric oxyhydroxide effectively reduced serum phosphate levels.
- Ferric citrate showed partial iron absorption and potential reductions in erythropoiesis-stimulating agent (ESA) and IV iron use.
- Sucroferric oxyhydroxide demonstrated comparable efficacy to sevelamer carbonate with improved pill burden and adherence.
Conclusions:
- Iron-based phosphate binders offer effective alternatives for hyperphosphatemia in CKD.
- Ferric citrate may benefit patients needing iron supplementation, with cost-saving potential but requires monitoring for aluminum absorption.
- Sucroferric oxyhydroxide suits patients not requiring iron supplementation, offering convenience and adherence benefits.
Abstract:
Increased cardiovascular morbidity and mortality has been associated with the hyperphosphatemia seen in patients with end-stage chronic kidney disease (CKD). Oral phosphate binders are prescribed in these patients to prevent intestinal absorption of dietary phosphate and reduce serum phosphate. In prospective observational cohorts they have shown to decrease all-cause and cardiovascular mortality risk. Different problems have been associated with currently available phosphate binders as positive calcium balance and impaired outcomes with calcium-based phosphate binders or increased costs with non-calcium-based phosphate binders. Iron-based phosphate binders represent a new class of phosphate binders. Several iron-based phosphate binders have undergone testing in clinical trials. Ferric citrate (JTT-751) and sucroferric oxyhydroxide (PA21) are the two iron-based binders that have passed to the clinical field after being found safe and effective in decreasing serum phosphate. Iron from ferric citrate is partially absorbed compared to sucroferric oxyhydroxide. Ferric citrate usage could result in an important reduction in erythropoiesis-stimulating agent (ESA) and IV iron usage, resulting in significant cost savings. Sucroferric oxyhydroxide was effective in lowering serum phosphorus in dialysis patients with similar efficacy to sevelamer carbonate, but with lower pill burden, and better adherence. Ferric citrate may be more suited for the treatment of chronic hyperphosphatemia in CKD patients requiring iron supplements but its use may have been hampered by potential aluminum overload, as citrate facilitates its absorption; sucroferric oxyhydroxide may be more suited for hyperphosphatemic CKD patients not requiring iron supplementation, with low pill burden.
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