ReviewNutrients2025
Hyperphosphatemia in Kidney Failure: Pathophysiology, Challenges, and Critical Role of Phosphorus Management.
Review in Nutrients, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 17 papers.
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Trials whose registry record cites this paper, or whose number appears in the abstract. A trial that started after this paper was published is citing it as background, not reporting it.
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Who cites it
17 citing papers in PubMed.
- Trial
- Machine learning-assisted colorimetric serum phosphate detection based on sweet potato-derived carbon dots.Mikrochimica acta · 2026Article
- Risk factors associated with treatment failure in peritoneal dialysis-associated peritonitis.Experimental and therapeutic medicine · 2026Article
- Phosphate: An Anion Controlling Metabolic Functions.Nutrients · 2026Review
- Molecular epidemiology ofMicrobiology spectrum · 2026Article
- The Hidden Burden of Water-Binding Additives in Meat Products: Biochemical, Clinical, and Psychosocial Implications.Molecular nutrition & food research · 2026Review
- Association Between Serum Parathyroid Hormone Levels and Femoral Bone Mineral Density in Patients with Chronic Kidney Disease Stage 3.Journal of clinical medicine · 2026Article
- Role of soluble alpha-klotho as a novel biomarker for characterizing children with autism spectrum disorder in Kurdistan, Iraq.World journal of clinical pediatrics · 2026Article
- Real-World Evidence for Sevelamer vs Calcium-Containing Phosphate Binders in Long-Term Effectiveness and Safety Among Patients with Non-Dialysis CKD: The REVEAL Study.Advances in therapy · 2026Article
- Analysis of Phosphate Transporters in Peritoneal Cells and Tissues and Their Transport Kinetics In Vitro.International journal of molecular sciences · 2026Article
- Clinical and Biochemical Correlates of Parathyroid Gland Burden in Patients Undergoing Parathyroidectomy for Secondary Hyperparathyroidism: A Retrospective Observational Study.Journal of clinical medicine · 2026Article
- Dietary Transitions and the Rising Global Burden of Chronic Kidney Disease: Insights from Nutritional Epidemiology.Nutrients · 2026Review
- Band keratopathy and conjunctival calcification in end-stage kidney disease: epidemiology, pathophysiology and clinical management.Clinical kidney journal · 2026Review
- The Impact of Hyperphosphatemia on Mineral and Bone Metabolism: Implications for Bone and Vascular Health.International journal of molecular sciences · 2026Review
- Evaluating a Clinical Decision Support System for Optimizing Total Parenteral Nutrition in Adult Oncology Patients.Nutrients · 2026Article
- The interrelationship between calcium-phosphorus homeostasis and bone remodelling. Impact of dietary changes on bone in patients with primary hyperparathyroidism and chronic kidney disease.Frontiers in bioengineering and biotechnology · 2026Article
- Biochemical Associations with Depression, Anxiety, and Stress in Hemodialysis: The Role of Albumin, Calcium, and βBiomedicines · 2025Article
Corrections and comments
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Authors and funding
2 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Phosphorus is one of the most abundant minerals in the body and plays a critical role in numerous cellular and metabolic processes. Most of the phosphate is deposited in bones, 14% is present in soft tissues as various organic phosphates, and only 1% is found in extracellular space, mainly as inorganic phosphate. The plasma inorganic phosphate concentration is closely maintained between 2.5 and 4.5 mg/dL by intertwined interactions between fibroblast growth factor 23 (FGF-23), parathyroid hormone (PTH), and vitamin D, which tightly regulate the phosphate trafficking across the gastrointestinal tract, kidneys, and bones. Disruption of the strict hemostatic control of phosphate balance can lead to altered cellular and organ functions that are associated with high morbidity and mortality. In the past three decades, there has been a steady increase in the prevalence of kidney failure (KF) among populations. Individuals with KF have unacceptably high mortality, and well over half of deaths are related to cardiovascular disease. Abnormal phosphate metabolism is one of the major factors that is independently associated with vascular calcification and cardiovascular mortality in KF. In early stages of CKD, adaptive processes involving FGF-23, PTH, and vitamin D occur in response to dietary phosphate load to maintain plasma phosphate level in the normal range. However, as the CKD progresses, these adaptive events are unable to overcome phosphate retention from continued dietary phosphate intake and overt hyperphosphatemia ensues. As these hormonal imbalances and the associated adverse consequences are driven by the underlying hyperphosphatemic state in KF, it appears logical to strictly control serum phosphate. Conventional dialysis is inadequate in removing phosphate and most patients require dietary restrictions and pharmacologic interventions to manage hyperphosphatemia. However, diet control comes with many challenges with adherence and may place patients at risk for inadequate protein intake and malnutrition. Phosphate binders help to reduce phosphate levels but come with a sizable pill burden and high financial costs and are associated with poor adherence and psychosocial issues. Additionally, long-term use of binders may increase the risk of calcium, lanthanum, or iron overload or promote gastrointestinal side effects that exacerbate malnutrition and affect quality of life. Given the aforesaid challenges with phosphorus binders, novel therapies targeting small intestinal phosphate absorption pathways have been investigated. Recently, tenapanor, an agent that blocks paracellular absorption of phosphate via inhibition of enteric sodium-hydrogen exchanger-3 (NHE3) was approved for the treatment of hyperphosphatemia in KF. While various clinical tools are now available to manage hyperphosphatemia, there is a lack of convincing clinical data to demonstrate improvement in outcomes in KF with the lowering of phosphorus level. Conceivably, deleterious effects associated with hyperphosphatemia could be attributable to disruptions in phosphorus-sensing mechanisms and hormonal imbalance thereof. Further exploration of mechanisms that precisely control phosphorus sensing and regulation may facilitate development of strategies to diminish the deleterious effects of phosphorus load and improve overall outcomes in KF.
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