A researcher is planning on investigating potential treatments aimed at the root causes of type 1 diabetes. At the (MUSC), ...
Georgetown University's Lombardi Comprehensive Cancer Center researchers have identified a new way to reprogram T cells, ...
KAIST researchers have developed an innovative treatment that transforms immune cells within tumours into cancer-fighting ...
In the battle against type 1 diabetes (T1D), one researcher at the Medical University of South Carolina (MUSC) is leading a ...
Cells of a multicellular organism are functionally heterogeneous owing to the differential expression of genes. Historically, differential gene expression had been thought to involve the genetic ...
Induced pluripotent stem (iPS) cells hold the potential to revolutionize regenerative medicine through their capacity to generate cells of diverse lineages for future patient-specific cell-based ...
The capacity of an organism to regenerate depends on cell dedifferentiation followed by proliferation. Mammals, in general, have limited regenerative capacity. Now, a team of researchers at the Salk ...
A research paper by scientists from Beijing Institute of Technology investigated the anti-tumor effect of millimeter waves (MMWs) alone and in combination with the anti-programmed cell death-ligand 1 ...
Researchers developed a way to directly reprogram human glial cells into PV interneurons without passing through a stem‑cell stage.
A mechanism underlying neutrophil reprogramming in brain cancers has been uncovered, illuminating potential therapeutic targets to stop their pro-cancer effect. Tumor-infiltrating neutrophils are ...
Humans, like other animals, have the ability to constantly adapt to new situations. Researchers have utilized a mouse model to reveal which neurons in the brain are in command in guiding adaptive ...
Once Congress appropriates funds, the Department of Defense can request changes to how these funds will be used through a process called reprogramming. From first planning to the full year of ...