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Updated: Jul 16, 2025

Calcification of Vascular Smooth Muscle Cells and Imaging of Aortic Calcification and Inflammation
Published on: May 31, 2016
Osteoporosis and vascular calcifications
Nancy Martini1, Lucas Streckwall1, Antonio Desmond McCarthy1
1Laboratorio de Investigaciones en Osteopatías y Metabolismo Mineral (LIOMM-UNLP-CICPBA), Facultad de Ciencias Exactas, Universidad Nacional de La Plata, La Plata, Argentina.
Insights
Bone mineral density loss and arterial calcification are linked in aging populations. Understanding shared regulatory mechanisms may lead to treatments improving both bone and vascular health.
Area of Science:
- Bone biology and vascular health
- Metabolic and endocrine regulation
Background:
- Post-menopausal women, elderly individuals, and patients with diabetes or chronic kidney disease experience decreased bone mineral density (BMD) and arterial calcifications (ACs).
- Low BMD and fragility fractures are associated with increased cardiovascular events and mortality.
- Abdominal aorta calcifications correlate with reduced BMD in adjacent bones, indicating a link between vascular pathology and bone fragility.
Purpose of the Study:
- To explore the reciprocal relationship between bone metabolism and vascular calcification.
- To identify shared regulatory pathways and molecular mechanisms involved in bone loss and arterial calcification.
Main Methods:
- Review of animal and in vitro models investigating bone-vascular interactions.
- Analysis of potential molecular regulators including vitamin K, vitamin D, advanced glycation end-products, osteoprotegerin/RANKL/RANK system, Fetuin A, estrogen, and microbiota.
Main Results:
- Ectopic biomineralization in ACs involves osteogenic transdifferentiation of vascular smooth muscle cells.
- Shared regulatory molecules, often acting in reverse for bone and vascular health, have been identified.
- Potential mechanisms include vitamin sufficiency, RAGE interaction, hormonal status, and microbiota.
Conclusions:
- The interplay between bone and vascular health is complex, involving shared molecular pathways.
- Further clinical validation of identified mechanisms is needed.
- Elucidating these mechanisms could pave the way for interventions promoting simultaneous bone and vascular health.
Abstract:
In post-menopausal women, aged individuals, and patients with diabetes mellitus or chronic renal disease, bone mineral density (BMD) decreases while the vasculature accumulates arterial calcifications (ACs). AC can be found in the tunica intima and/or in the tunica media. Prospective studies have shown that patients with initially low BMD and/or the presence of fragility fractures have at follow-up a significantly increased risk for coronary and cerebrovascular events and for overall cardiovascular mortality. Similarly, patients presenting with abdominal aorta calcifications (an easily quantifiable marker of vascular pathology) show a significant decrease in the BMD (and an increase in the fragility) of bones irrigated by branches of the abdominal aorta, such as the hip and lumbar spine. AC induction is an ectopic tissue biomineralization process promoted by osteogenic transdifferentiation of vascular smooth muscle cells as well as by local and systemic secreted factors. In many cases, the same regulatory molecules modulate bone metabolism but in reverse. Investigation of animal and in vitro models has identified several potential mechanisms for this reciprocal bone-vascular regulation, such as vitamin K and D sufficiency, advanced glycation end-products-RAGE interaction, osteoprotegerin/RANKL/RANK, Fetuin A, oestrogen deficiency and phytooestrogen supplementation, microbiota and its relation to diet, among others. Complete elucidation of these potential mechanisms, as well as their clinical validation via controlled studies, will provide a basis for pharmacological intervention that could simultaneously promote bone and vascular health.
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