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Updated: Aug 9, 2026

A Semi-Automated and Reproducible Biological-Based Method to Quantify Calcium Deposition In Vitro
Published on: June 2, 2022
[Can cardiovascular calcifications be prevented in chronic kidney disease?]
1Nefrologia ed Ipertensione, Ospedale Israelitico, Rome. giorgio.coen@fastwebnet.it
Insights
Cardiovascular calcification is common in chronic kidney disease (CKD) patients on hemodialysis. Understanding the balance between calcification inducers and inhibitors is key to preventing these dangerous mineral deposits.
Area of Science:
- Nephrology and Cardiovascular Medicine
- Biomineralization and Cellular Biology
Context:
- Patients with chronic kidney disease (CKD), particularly those on hemodialysis, exhibit high rates of cardiac and vascular calcification.
- These calcifications are strongly linked to increased cardiovascular mortality in CKD.
- Extraskeletal calcification, especially in cardiovascular structures, requires thorough investigation for potential prevention strategies.
Purpose:
- To explore the underlying mechanisms of extraskeletal calcification in CKD.
- To identify key factors, both inducers and inhibitors, involved in cardiovascular calcification.
- To inform the development of preventative measures against cardiac calcification in CKD patients.
Summary:
- Cardiac calcification in CKD primarily affects coronary arteries and heart valves, correlating with cardiovascular mortality.
- While hyperphosphatemia, hypercalcemia, and elevated calcium-phosphate (Ca x P) product are implicated, calcification is an active cellular process involving vascular smooth muscle cell differentiation into osteoblast-like cells.
- The process is regulated by a balance between pro-mineralizing factors and inhibitors such as Fetuin-A, MGP, Osteopontin, and Osteoprotegerin.
Impact:
- Current prevention strategies focus on managing serum phosphate levels and reducing calcium load using non-calcium-based phosphate binders.
- Statins may also play a role in managing atherosclerosis and associated calcification.
- Understanding the cellular mechanisms and the balance of calcification factors offers new avenues for therapeutic interventions to reduce cardiovascular risk in CKD.
Abstract:
Chronic kidney disease, with special regard to hemodialysis patients, develop frequent and widespread cardiac and vascular calcifications. In the heart calcifications are mainly located in the coronary arteries and in the valvular structures. There is a strict relation between cardiovascular mortality in CKD and the extent of cardiac and vascular calcifications. Therefore it is important to evaluate the causes of extraskeletal calcifications for the evaluation of the possibility of prevention. The importance of hyperphosphatemia, of hypercalcemia and of the increased CAxP product as a cause of cardiac calcification has been clearly underlined. However the mechanism of calcification, initially considered a physico-chemical precipitation, has been investigated with the conclusion that the process is mediated by cellular differentiation and production of factors favoring mineralization in the extracellular milieu. Increased serum phosphate levels are able to induce a transformation of vascular smooth muscle cells into osteoblast-like cells, able to produce factors known to be pro-mineralizing agents in the bone tissue. Further studies have revealed the importance of a number of inhibitors of calcification of cardiovascular structures, like Fetuin-A, MGP, Osteopontin, Osteoprotegerin. Therefore at present the calcification process of vascular tissue is considered to be linked to a balance between inducers and inhibitors of calcium-phosphate deposits. Prevention of cardiac calcifications is at present mainly based of optimal control of serum phosphate and reduction of calcium load through the use of non-calcium containing phosphate binders. Treatment with statins for prevention and treatment of atherosclerosis is also an important means of decreasing the size and number of atherosclerotic plaques, where a portion of the calcification process develops.
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