Mystery cells that create blood stem cells in mammals identified
Imagine if one day blood transfusions from strangers were not needed because they could be produced from cells that line your own blood vessels' cells.
See also stories tagged with Regenerative medicine
Imagine if one day blood transfusions from strangers were not needed because they could be produced from cells that line your own blood vessels' cells.
A tiny marine creature with a strange lifestyle may provide valuable insights into human neurodegenerative disorders, such as Alzheimer's disease, according to scientists at Stanford Medicine.
A University of Minnesota Twin Cities team has, for the first time, developed a new tool to predict and customize the rate of a specific kind of DNA editing called "site-specific recombination." The research paves the way ...
Researchers at the Eli and Edythe Broad Center of Regenerative Medicine and Stem Cell Research at UCLA have developed a first-of-its-kind roadmap detailing how stem cells become sensory interneurons—the cells that enable ...
The Indiana Center for Regenerative Medicine and Engineering (ICRME) at Indiana University School of Medicine is home to tissue nanotransfection (TNT) regenerative medicine technology that achieves functional tissue reprogramming ...
Researcher Dhruv Sareen's own stem cells are now orbiting the Earth. The mission? To test whether they'll grow better in zero gravity.
Producing biomaterials that match the performance of cartilage and tendons has been an elusive goal for scientists, but a new material created at Cornell demonstrates a promising new approach to mimicking natural tissue.
With the discovery of synthetic stem cells, better known as induced pluripotent stem cells, the field or regenerative medicine has been revolutionized. These synthetic stem cells are created by reprogramming adult cells from ...
The Wake Forest Institute for Regenerative Medicine (WFIRM) researchers, who were the first to identify that stem cells in human urine have potential for tissue regenerative effects, continue their investigation into the ...
A joint research group led by Genki Kanda at the RIKEN Center for Biosystems Dynamics Research (BDR) has developed a robotic artificial intelligence (AI) system for autonomously determining the optimal conditions for growing ...