Cornell researchers have used artificial intelligence to uncover a previously unknown way cells control how proteins move ...
The UPV/EHU researcher Ildefonso Martínez de la Fuente has led an exhaustive analysis of the locomotion trajectories of 700 individual cells using advanced scientific techniques to demonstrate that ...
Like schools of fish and flocks of birds, our cells can also migrate collectively in coordination with their neighbors. This harmonious movement of cells occurs during embryonic development, wound ...
Cells can be thought of as cities, with factories, a transport system, and lots of building activity. An international team led by scientists at the University of Groningen studied cells growing under ...
Biophysicists have gained a new insight about the dynamics of cellular movement, which is key to processes ranging from stem-cell differentiation and wound healing to the development of diseases such ...
Scientists have discovered how chemokines and G protein-coupled receptors selectively bind each other to control how cells move. Scientists from St. Jude Children's Research Hospital and the Medical ...
Cell movement is an essential biological process, whether it's cancer cells metastasizing to other parts of the body or immune cells migrating to heal a wound. However, the principle by which cells ...
Biomedical engineers at Duke University have significantly enhanced the capabilities of a computational model that simulates the movement of individual cancer cells across long distances within the ...
A team of researchers at Karolinska Institutet, together with colleagues from Linköping University, has uncovered the function of a gene called DIORA1 (FAM167A), previously linked to autoimmune ...
The body's cells change their shape to close gaps such as wounds – with part of the cell flexing depending on the curve of the gap and the organization of cell-internal structures, a new study reveals ...