Tag: Skin Cancer

Fasting boosts stem cells’ regenerative capacity: A drug treatment that mimics fasting can also provide the same benefit, study finds

As people age, their intestinal stem cells begin to lose their ability to regenerate. These stem cells are the source for all new intestinal cells, so this decline can make it more difficult to recover from gastrointestinal infections or other conditions that affect the intestine. This age-related loss of stem cell function can be reversed

Stem cells from adults function just as well as those from embryos: Stem cells from elderly donors can be used for personalized treatment of age-related chronic and degenerative diseases, concludes a new review

Donor age does not appear to influence the functionality of stem cells derived from adult body tissues, concludes a new review. The analysis of research on induced pluripotent stem cells (iPSCs) finds that not only are typical signs of aging reversed in iPSCs, but cells derived from both older and younger donors show the same

Scientists unlock path to use cell’s own nanoparticles as disease biomarkers: Extracellular vesicles can now be identified at the individual level

Researchers at the University of Sydney have established a method to identify individual nanoparticles released by human cells, opening the way for them to become diagnostic tools in the early-detection of cancers, dementia and kidney disease. The particles, known as extracellular vesicles, or EVs, are routinely released by cells and play a central role in

New trigger for onset of colon cancer: May lead to better therapies

Colon cancer is the second most common cause of cancer-related deaths. The APC protein has long been known for its critical role in preventing colorectal cancer. When APC is inactivated, the development of colorectal cancer is triggered. Inactivation of APC is responsible for the vast majority (80%) of all colorectal cancers. Researchers from the laboratory

New compound helps activate cancer-fighting T cells: Study identifies mechanisms responsible for improved immune system activity, offering new approaches for more effective cancer treatments and vaccines.

Invariant natural killer T (iNKT) cells are powerful weapons our body’s immune systems count on to fight infection and combat diseases like cancer, multiple sclerosis, and lupus. Finding ways to spark these potent cells into action could lead to more effective cancer treatments and vaccines. While several chemical compounds have shown promise stimulating iNKT cells