Scientists at Memorial Sloan Kettering Cancer Center (MSK) and their colleagues are shedding new light on a tumor's earliest moments—revealing how lung cells with cancer-causing mutations recruit ...
Researchers at Moffitt Cancer Center have developed a new way to predict how cancer cells evolve by gaining and losing whole chromosomes, changes that help tumors grow, adapt and resist treatment. In ...
A cancer cell line that is resistant to one of the newest classes of cancer treatments has been developed by researchers who already are using it to determine what else to give patients when this ...
Scientists have identified a molecular switch that may help explain how colorectal cancer becomes deadly. When levels of a gene-regulating factor called GATA6 drop, cancer cells can shed their normal ...
UC Santa Barbara postdoctoral researcher Ishwaree Datta studies how cancer cells mount stress response programs to survive ...
Scientists at Houston Methodist have developed an artificial intelligence platform that can decode how cells communicate inside the human body, opening a window into conditions such as Alzheimer’s ...
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How colon cancer spreads: Scientists uncover 'identity switch' behind deadly metastasis
A groundbreaking study by researchers at Weill Cornell Medicine and MIT reveals how the loss of the GATA6 protein enables ...
Acute myeloid leukemia (AML) is an aggressive form of blood cancer. It affects people of all ages but is most common in those over 65. Around 150 people are diagnosed with the disease each year in ...
A protein involved with cell death can be manipulated to slow or reverse tumor growth, a pair of new studies in mice found. A colorized three dimensional micrographic scan of a melanoma cell. Recent ...
In a new study published in Nature Communications, a research team at the University of Oslo have examined how cancer cells develop in the bone marrow and whether it might be possible to stop them.
Cells are regularly faced with environmental stresses that may damage or destroy them. To survive, they quickly adjust their gene expression to protect themselves. This is especially true for cancer ...
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