Our fat tissue could be used to make our bones regrow, with scientists successfully using adipose cells to repair spinal compression fractures. It could change how breaks are treated and improve bone ...
Scientists uncovered how the protein Piezo1 translates physical activity into stronger bones, offering a path to ...
Around 500 million years ago, early vertebrates in the seas became fish, adopting an inner skeleton and a flexible spine based on a nanocmposite of fibers and mineral, known as bone material. This ...
Researchers have developed a magnetic nanomaterial that can kill bone cancer cells and support bone regeneration at the same ...
The From Labs to Lives Blog connects everyday topics with UC Davis research. Each post is reviewed by our experts, ensuring you always get useful information you can trust. Because we can’t see them, ...
Bone cancer is a rare type of cancer that happens when cells in a bone begin to grow out of control. While people may think of bone as solid and unchanging, it constantly dissolves and forms new bone ...
This review innovatively proposes the use of electrospinning to fabricate electroactive fibrous scaffolds, which mimic the structure of the extracellular matrix while providing electrical activity, ...
Hidden inside every organ, microscopic fibers form a scaffolding that quietly shapes how we move, think, and heal. For the ...
Vitamin K2 is a versatile nutrient recognized for its bone and cardiovascular health benefits. It ensures calcium reaches the ...