Scientists at Duke-NUS Medical School have developed two powerful computational tools that could transform how researchers study the "conversations" between cells inside the body. The tools, called ...
Cells convert mechanical forces into signals that influence physiological processes, such as exercise strengthening bones. A research team at Washington University in St. Louis and Tsinghua University ...
FMI researchers and their collaborators have shown how regenerating intestinal tissue turns small initial differences between cells into stable patterns. The findings reveal a general principle for ...
Researchers at Helmholtz Munich and the Technical University of Munich (TUM) have developed Nicheformer, the first large-scale foundation model that integrates single-cell analysis with spatial ...
Scientists discovered a population of cells that can start the process of programmed cell death, survive it, and then help rapidly rebuild damaged tissue. Their descendants become far more resistant ...
New research led by scientists at La Jolla Institute for Immunology (LJI) and the University of Liverpool (UOL) provides the first comprehensive look at how a hidden immune cell army defends the vast, ...
Cell-material interactions lie at the heart of tissue engineering, dictating the success of biomaterials in regenerative applications. Cells engage with their environment through specialised receptors ...
Stem cell-based regenerative tissue engineering integrates the inherent self-renewal and differentiation capabilities of pluripotent and multipotent stem cells with advanced biomaterial scaffolds and ...
The epithelium, a layer of cells that forms a protective barrier between the body and the outside world, was the first ...