细胞生物学
骨重建
动脉壁
化学
解剖
生物
医学
内科学
内分泌学
作者
Vishal Mohanakrishnan,Kishor K. Sivaraj,Hyun‐Woo Jeong,Esther Bovay,Backialakshmi Dharmalingam,M. Gabriele Bixel,Van Vuong Dinh,Milena Petkova,Isidora Paredes Ugarte,Yien–Ming Kuo,Malarvizhi Gurusamy,Brian Raftrey,N. T. Chu,Soumyashree Das,Pamela E. Rios Coronado,Martin Stehling,Lars Sävendahl,Andrei S. Chagin,Taija Mäkinen,Kristy Red‐Horse,Ralf H. Adams
标识
DOI:10.1038/s41556-024-01545-1
摘要
The vasculature of the skeletal system is crucial for bone formation, homoeostasis and fracture repair, yet the diversity and specialization of bone-associated vessels remain poorly understood. Here we identify a specialized type of post-arterial capillary, termed type R, involved in bone remodelling. Type R capillaries emerge during adolescence around trabecular bone, possess a distinct morphology and molecular profile, and are associated with osteoprogenitors and bone-resorbing osteoclasts. Endothelial cell-specific overexpression of the transcription factor DACH1 in postnatal mice induces a strong increase in arteries and type R capillaries, leading to local metabolic changes and enabling trabecular bone formation in normally highly hypoxic areas of the diaphysis. Indicating potential clinical relevance of type R capillaries, these vessels respond to anti-osteoporosis treatments and emerge during ageing inside porous structures that are known to weaken compact bone. Our work outlines fundamental principles of vessel specialization in the developing, adult and ageing skeletal system.
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