Cell signaling is crucial for cells to communicate and function correctly. Disruptions in these pathways, caused by genetic mutations or environmental factors, can lead to uncontrolled cell growth, ...
Morning Overview on MSN
New research shows alcohol disrupts key brain cell signaling pathways
A wave of recent neuroscience research has identified specific molecular and cellular mechanisms through which alcohol disrupts signaling between brain cells, offering a sharper picture of how ...
Severe bacterial pneumonia remains a major cause of death in critically ill patients, largely due to impaired early immune responses. New research reveals that butyric acid, a metabolite produced by ...
Cell signalling pathways are central to maintaining cellular homeostasis and regulating essential functions such as proliferation, apoptosis, and repair. In both cancer and neurodegenerative diseases, ...
Brain cells grow faster in children with some forms of autism due to distinct changes in core cell signaling patterns, according to research from the laboratory of Anthony Wynshaw-Boris, MD, PhD, ...
News Medical on MSN
Researchers discover protein that promotes natural dental pulp tissue regeneration
Dental pulp injury caused by trauma or deep caries often leads to inflammation, tissue necrosis, and eventual loss of tooth ...
Researchers have uncovered a surprising molecular chain reaction in the brain that may play a role in some forms of autism.
New molecular insights into the link between hepatocellular carcinoma and intratumoral fibrosis could lead to better ...
When a cell receives a message from outside, it generates a molecule called cyclic AMP (cAMP) to relay this message. To ensure the signal reaches the correct effector without triggering pathways ...
Explore the serious implications of liver congestion and its connections to fibrosis, cirrhosis, and liver cancer in recent ...
Morning Overview on MSN
Study links a popular anti-aging supplement pathway to faster cancer growth
Preclinical research across multiple cancer types now shows that the NAD+ salvage pathway, the same biological mechanism targeted by popular anti-aging supplements like nicotinamide mononucleotide ...
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