Biological tissues have a remarkable ability to organize and change shape, driven by forces generated by their own cells. One ...
Stunning Stanford study finds way to regrow joint cartilage. Could it mean an end to osteoarthritis?
New groundbreaking research by Stanford researchers has shown to do something that was previously believed not possible: ...
Morning Overview on MSN
Study finds blocking GCN1 boosts T cells’ cancer-fighting power
A protein that helps cancer cells hide from the immune system may have a critical weakness, according to research that could ...
A new study co-led by an Oregon Health & Science University researcher describes a breakthrough in microscopy tools that ...
Fibroblasts are an essential component of the heart, as they play key roles in its structure, development and response to ...
Inside every cell, a cleanup operation runs around the clock. Proteins are constantly damaged by wear and tear. Some can be ...
Cells aren’t as passive as scientists once thought—they actively create internal currents to move proteins quickly and efficiently. These “cellular winds” push materials to the front of the cell, ...
Mayo Clinic's Translational Neuromuscular Disease Research Lab led by Nathan P. Staff, M.D., Ph.D., studies the biological ...
Researchers discovered that a long-misunderstood protein plays a key role in helping chromosomes latch onto the right “tracks” during cell division. Instead of acting like a motor, it works more like ...
The study, “Integration of phospho-signaling and transcriptomics in single cells reveals distinct Th17 cell fates,” was published in Cell Reports. In the study, first author Seth Fortmann, M.D., Ph.D.
Morning Overview on MSN
Study suggests shared biology may link autism and Alzheimer’s disease
Autism and Alzheimer’s disease have long occupied separate corners of neuroscience. One is diagnosed in childhood; the other emerges late in life. But a convergence of epidemiological data, genetic ...
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