ReviewInternational journal of molecular sciences2026
The Impact of Hyperphosphatemia on Mineral and Bone Metabolism: Implications for Bone and Vascular Health.
Review in International journal of molecular sciences, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 4 papers.
What it found
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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.
The trial behind it
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
4 citing papers in PubMed.
- Bone health in myelodysplastic neoplasms: results from the prospective longitudinal BoHemE study.Leukemia · 2026Article
- The Hidden Burden of Water-Binding Additives in Meat Products: Biochemical, Clinical, and Psychosocial Implications.Molecular nutrition & food research · 2026Review
- Calcidiol Status and Metabolic Syndrome in 40-60-Year-Old Women: Association with Metabolic Components.Nutrients · 2026Article
- Dietary inadequacies and their association with pain severity and disc degeneration in patients surgically treated for degenerative lumbosacral spine disorders.Frontiers in nutrition · 2026Article
Corrections and comments
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Authors and funding
10 authors.
Funding
Abstract
Phosphorus is an essential mineral involved in bone mineralization, energy metabolism, and cellular signaling, whose serum concentration is tightly regulated by an endocrine network including fibroblast growth factor 23 (FGF23), parathyroid hormone (PTH), vitamin D and Klotho. Disruption of this balance, particularly in chronic kidney disease (CKD), leads to hyperphosphatemia, which is strongly associated with bone fragility, vascular calcification, and increased mortality. In CKD, impaired phosphorus homeostasis triggers endocrine dysregulation characterized by elevated PTH and FGF23 levels, Klotho deficiency, and altered vitamin D metabolism, resulting in major skeletal and vascular consequences. Experimental and clinical evidence indicates that phosphorus overload contributes directly to skeletal deterioration and early vascular remodeling, even prior to clinically detectable renal impairment. Moreover, high dietary phosphorus intake under conditions of normal renal function reproduces several molecular and structural alterations typically observed in CKD, supporting a pathogenic role for chronic phosphorus excess. The dietary source of phosphorus has gained increasing relevance, as inorganic phosphate additives exhibit high intestinal bioavailability and impose a greater systemic phosphorus burden. Current management strategies rely on dietary restriction, phosphate binders, modulation of intestinal phosphorus transport and optimization of mineral-regulating hormones, although evidence for improved clinical outcomes remains limited. A deeper understanding of the molecular mechanisms linking phosphorus overload to bone and vascular pathology may facilitate the development of more effective preventive and therapeutic strategies.
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Registered trials
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