Recent advances in the crosstalk between bone and vascular system: from mechanism to therapy
Zhuoxuan Su1, Jiali Liu1, Zhensen Zheng1
1Guangdong Metabolic Diseases Research Center of Integrated Chinese and Western Medicine, Key Laboratory of Glucolipid Metabolic Disorder, Ministry of Education of China, China; Institute of Chinese Medicine, Guangdong Pharmaceutical University, Guangdong TCM Key Laboratory for Metabolic Diseases, Guangzhou 510006, China.
Insights
Osteoporosis and cardiovascular disease are linked through the bone-vascular axis. This review explores how bone and blood vessels influence each other, aiming for better treatments.
Area of Science:
- Integrative biology
- Skeletal and vascular health
- Metabolic homeostasis
Background:
- Osteoporosis and cardiovascular disease are common, especially in the elderly.
- Growing evidence links osteoporosis with vascular calcification, highlighting the bone-vascular axis.
- This axis involves complex interactions between skeletal and vascular systems.
Purpose of the Study:
- To explore the mechanisms of crosstalk between bone and blood vessels.
- To investigate common pathways and regulatory factors.
- To review current therapeutic agents for the bone-vascular association.
Main Methods:
- Literature review of recent studies on bone-vascular interactions.
- Analysis of osteokines (e.g., FABP3, PDGF-BB, MYGDF, AB-EVs) and vascular factors (e.g., sclerostin, Dkk-1, Activin-A, SFRP).
- Examination of reciprocal regulatory mechanisms.
Main Results:
- Identified key molecular mediators in the bone-vascular axis.
- Demonstrated reciprocal influence between skeletal and vascular systems.
- Highlighted the role of this axis in bone metabolic homeostasis and cardiovascular disease prevention.
Conclusions:
- The bone-vascular axis is crucial for maintaining health.
- Understanding its mechanisms offers new therapeutic strategies.
- Further research is needed to clarify causal relationships and specific targets.
Abstract:
Osteoporosis and cardiovascular disease are prevalent health concerns, particularly among the elderly. Recent studies have increasingly demonstrated that osteoporosis is consistently associated with vascular calcification, drawing attention to the interactions between bones and blood vessels, and giving rise to the concept of the bone-vascular axis. The bone vascular axis involves several factors, including osteokines such as FABP3, PDGF-BB, MYGDF, and Aging Bone-Derived Extracellular Vesicles (AB-EVs), which influence vascular calcification. Simultaneously, calcified blood vessels secrete sclerostin, Dickkopf1 (Dkk-1), Activin-A, and frizzled-related protein (SFRP), further affecting bone metabolism. The bone-vascular axis is characterized by reciprocal regulation and influence between the skeletal and vascular systems, and is crucial for maintaining bone metabolic homeostasis and preventing cardiovascular disease. However, the causal relationship between these two systems, as well as the specific regulatory mechanisms and targets, remains unclear. Therefore, this review aims to explore the mechanisms underlying the crosstalk between bone and blood vessels from both the skeletal and vascular perspectives, as well as their common pathways, and to provide an overview of current therapeutic agents, with the goal of enhancing understanding of the bone-vascular association and offering new insights and approaches for clinical treatment.
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