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Published on: May 31, 2016
Bone health and vascular calcification relationships in chronic kidney disease
1Department of Nephrology, University Clinical Center Skopje, Vodnjanska 17, Skopje, 1000, Macedonia. gspas@sonet.com.mk
Insights
Maintaining bone health is crucial for managing vascular calcification in chronic kidney disease (CKD). Proper management of calcium, phosphate, and parathyroid hormone (PTH) levels is key to preventing cardiovascular complications in CKD patients.
Area of Science:
- Nephrology
- Endocrinology
- Cardiovascular Medicine
Background:
- Abnormal bone metabolism in chronic kidney disease (CKD) is linked to vascular calcification (VC) through disordered calcium and phosphate regulation.
- Vascular calcification (VC) is more prevalent and progresses faster in CKD patients, significantly increasing cardiovascular disease (CVD) morbidity and mortality.
- Existing therapies for reducing parathyroid hormone (PTH) can inadvertently increase serum calcium and phosphate levels, potentially worsening VC.
Purpose of the Study:
- To emphasize the importance of bone health as a prerequisite for preventing and treating vascular calcification (VC) in chronic kidney disease (CKD).
- To discuss the role of mineral and bone metabolism in the increased cardiovascular disease (CVD) risk observed in CKD patients.
- To evaluate the effectiveness and cost-effectiveness of various therapeutic strategies for managing mineral and bone disorders and VC in CKD.
Main Methods:
- Review of therapeutic approaches for managing mineral and bone disorder in CKD, including calcium-based and calcium-free phosphate binders, vitamin D analogs, and calcimimetics.
- Analysis of the impact of different treatments on serum calcium, phosphate, parathyroid hormone (PTH) levels, and vascular calcification (VC).
- Discussion of treatment strategies for specific conditions like adynamic bone disease (ABD) and secondary hyperparathyroidism in CKD.
Main Results:
- Calcium-free phosphate binders and calcimimetics have shown promise in reducing calcium load and lowering PTH without increasing serum calcium and phosphate.
- Therapies must be carefully chosen to avoid adverse effects on calcium-phosphate product and PTH levels, which can exacerbate VC and bone disorders.
- Specific treatment adjustments, such as modifying calcium carbonate/acetate intake and dialysate calcium concentration, are proposed for different mineral and bone profiles in CKD.
Conclusions:
- Maintaining bone health and mineral homeostasis through judicious use of phosphate binders, vitamin D, and low calcium dialysate is essential for managing VC and bone disorders in CKD.
- Early recognition of CKD as an independent CVD risk factor necessitates a comprehensive approach to managing mineral and bone metabolism.
- Optimized therapeutic strategies, considering individual patient needs and potential cost-effectiveness, are crucial for improving outcomes in CKD patients.
Abstract:
Abnormal bone in chronic kidney disease (CKD) may adversely affect vascular calcification via disordered calcium and phosphate metabolism. In this context, bone health should be viewed as a prerequisite for the successful prevention/treatment of vascular calcification (VC) along with controlled parathyroid hormone (PTH) secretion, the use of calcium-based phosphate binders and vitamin D therapy. In CKD patients, VC occurs more frequently and progresses more rapidly than in the general population, and is associated with increased cardiovascular disease (CVD) morbidity and mortality. A number of therapies aimed at reducing PTH concentration are associated with an increase of calcaemia and Ca x P product, e.g. calcium-containing phosphate binders or active vitamin D. The introduction of calcium-free phosphate binders has reduced calcium load, attenuating VC and improving trabecular bone content. In addition, a major breakthrough has been achieved through the use of calcimimetics, as first agents which lower PTH without increasing the concentrations of serum calcium and phosphate. Nowadays, it is becoming evident that even early stage CKD is recognised as an independent CVD risk factor. Moreover, the excess of CVD among dialysis patients cannot be explained entirely on the basis of abnormal mineral and bone metabolism. Hence, much controversy has surrounded the cost-effectiveness of treatment with the new phosphate-binding drugs as well as new vitamin D analogs and calcimimetics. Thus, it seems prudent and reasonable that maintaining bone health and mineral homeostasis should rely on some modifications of standard phosphate binding and calcitriol therapy. Hypophosphataemia and hypercalcaemia in adynamic bone disease (ABD) might be treated by reducing the number of calcium carbonate/acetate tablets in order to increase serum phosphate and decrease serum calcium, which, in turn, might positively stimulate PTH secretion. The same rationale is assumed for the use of a low calcium dialysate. On the other hand, secondary hyperparathyroidism with hyperphosphataemia and hypocalcaemia should be treated with a substantial number of calcium carbonate/acetate tablets in combination with calcitriol and low calcium dialysate in order to decrease serum phosphate and maintain the Ca x P product within K/DOQI guidelines (<4.4 mmol l(-1)). Finally, it becomes apparent that prevention, with judicious use of calcium-based binders, vitamin D and a low calcium dialysate without adverse effects on Ca x P or oversuppression of PTH, provides the best management of VC and mineral and bone disorder in CKD patients.
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