Scientists mapping the human body at the cellular level keep running into the same surprise: beneath the apparent chaos of ...
The study shows that fat tissue, when processed and cultured in a specific way, can self-organize into structures resembling ...
Discover how human adipose tissue can be transformed into functional organoids representing all three germ layers—mesoderm, ...
A simple light-based method is uncovering hidden fiber networks inside the brain and body, even in tissue slides over 100 years old.
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 new 3D human brain tissue platform developed by MIT researchers is the first to integrate all major brain cell types, including neurons, glial cells and the vasculature into a single culture. Grown ...
In the laboratories of 3D Biotechnology Solutions (3DBS), a startup incubated at the Mandic Hub in Campinas, São Paulo state, Brazil, solutions are being developed for the biofabrication of human and ...
Professor Yohan Kim of Sungkyunkwan University and the Max Planck Institute research team recreated the structure and ...
For decades, this question has bewildered biologists. Now, by studying Placozoa, scientists at Stanford University have ...