Hidden inside every organ, microscopic fibers form a scaffolding that quietly shapes how we move, think, and heal. For the ...
3D bioprinting combines cells, growth factors, and biomaterials to fabricate biomedical parts. The process requires special “bio-inks,” often made of materials like alginate or gelatin. A key goal is ...
A simple light-based method is uncovering hidden fiber networks inside the brain and body, even in tissue slides over 100 years old.
Forming sensory organs requires complicated interactions between numerous cell types. Building these tissues in a dish from human stem cells helps researchers understand how they develop over time and ...
Breakthroughs, discoveries, and DIY tips sent every weekday. Terms of Service and Privacy Policy. Budding surgeons may soon train on stretchy, lifelike 3D-printed ...
Discover how human adipose tissue can be transformed into functional organoids representing all three germ layers—mesoderm, ...