Macrophages which have undergone metabolic reprogramming have shown potential to accelerate bone repair by synchronising bone ...
Activating the GPR133 receptor with a small molecule can rebuild bone from within, offering a new direction for osteoporosis ...
Cell- and animal-based models of bone formation reveal novel mechanisms involved in the cartilage-to-bone phenotype transitions CHENGDU, SICHUAN, CHINA, March 20 ...
A recent mouse model based study suggests that blocking TGF-β may improve osteoporosis treatment by helping quiescent ...
A recent mouse model based study suggests that blocking TGF-β may improve osteoporosis treatment by helping quiescent osteoblasts in inactive bone surfaces return to an active state. Using spatial ...
Bone marrow is the spongy tissue located within the hollow center of bones, serving as the primary site for the continuous production of red blood cells, platelets, and white blood cells. Despite its ...
Osteopenia causes reduced bone density without symptoms, driven by aging, hormones, and lifestyle factors. Early detection ...
A newly discovered pair of stem cell lineages drives the formation of both tooth roots and the bone that anchors them. Understanding how these cells switch roles could pave the way for regenerating ...