Fibroblast Growth Factor 23: Mineral Metabolism and Beyond
Insights
Fibroblast growth factor (FGF) 23 plays a key role in chronic kidney disease (CKD) mineral and bone disorder (CKD-MBD) and cardiovascular disease (CVD) progression. Understanding FGF23
Area of Science:
- Nephrology
- Cardiology
- Endocrinology
Background:
- Chronic kidney disease (CKD) patients face high cardiovascular mortality, poorly explained by traditional factors.
- CKD mineral and bone disorder (CKD-MBD) is increasingly recognized as a driver of cardiovascular disease (CVD) in CKD.
- CKD-MBD involves complex pathways affecting mineral metabolism, vascular health, and systemic inflammation.
Purpose of the Study:
- To review the role of fibroblast growth factor (FGF) 23 in CKD pathophysiology.
- To explore FGF23's impact on cardiovascular disease (CVD) and CKD progression.
- To highlight FGF23's significance beyond mineral metabolism in CKD complications.
Main Methods:
- Review of current experimental and clinical evidence on FGF23.
- Analysis of FGF23's role in CKD physiology and pathology.
- Focus on FGF23's association with cardiovascular complications in CKD.
Main Results:
- Fibroblast growth factor (FGF) 23 has a pivotal role in CKD and associated CVD.
- FGF23's influence extends beyond mineral metabolism, impacting CKD progression.
- Evidence suggests FGF23 is a significant factor in cardiovascular complications.
Conclusions:
- A deeper understanding of FGF23 is crucial for managing CKD-MBD and CVD.
- Targeting FGF23 pathways may offer new therapeutic strategies for CKD patients.
- FGF23 is a key mediator in the systemic complications of CKD.
Abstract:
Patients affected by chronic kidney disease (CKD) exhibit a high risk of cardiovascular mortality that is poorly explained by traditional risk factors. There is a growing awareness about the role of derangement of mineral metabolism that is currently accepted as a trigger and sustainer of cardiovascular disease (CVD) in CKD patients. The synthetic definition of CKD mineral and bone disorder (CKD-MBD) split the concept that the indexes of mineral metabolism extend their effects beyond the bone until the vascular wall and metabolic milieu of CKD patients through complex pathways. A better understanding of the biomarkers and mechanisms of left ventricular hypertrophy, CVD, inflammation, and chronic renal damage may help with the diagnosis and treatment of the systemic impairment that occurs secondary to CKD-MBD, thus slowing the progression of renal and CVD and improving patient survival. Recent insights into fibroblast growth factor (FGF) 23 have led to marked advancement in interpreting data on CVD and CKD progression ascribing to FGF23 a pivotal role in these pathologies independent of its co-receptor klotho and well beyond mineral metabolism. This review article will discuss the current experimental and clinical evidence regarding the role of FGF23 in physiology and pathophysiology of CKD and its associated complications with an emphasis on CVD.
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