In both biological and engineered systems, cells and sensors must make sense of noisy, changing signals to function. However, ...
Mitochondria—tiny structures that convert nutrients into energy—are often depicted as discrete kidney bean-shaped objects. But in reality, they form a dynamic, interconnected network throughout the ...
Researchers at the Francis Crick Institute have developed a new stem cell model of the mature human amniotic sac, which replicates development of the tissues supporting the embryo from two to four ...
Researchers have developed a new stem cell model of the mature human amniotic sac, which replicates development of the tissues supporting the embryo from two to four weeks after fertilization. This is ...
Researchers report an unexplained 71-terahertz vibration in living cells, mouse tissues and isolated mitochondria that ...
Researchers at Stanford Medicine have developed two new artificial intelligence models of the biological cell. The first, ...
In a recent study, Associate Professor Makoto Ikeya (Department of Clinical Application) and his team of researchers successfully established a method to generate jawbone-like organoids (mini-organs) ...
They outperformed a single-target version in mice, a lab-grown mini blood vessel and artery tissue from heart disease patients.
An international team of researchers led by Max Delbrück Center Scientific Director Professor Maike Sander, MD, has for the first time developed an organoid model of human pluripotent stem ...
A human cell culture model of the lung's most important immune cells, alveolar macrophages, helped make a key finding that is prompting researchers to rethink the role of another immune protein. A ...