AI is making waves in health care and medicine. Does the technology have the potential for breakthroughs in how we tackle ...
Morning Overview on MSN
New synthetic-cell system boosts flexibility in mimicking cellular functions
Researchers have built a synthetic-cell platform that can be chemically adjusted in real time, sidestepping a long-standing ...
William & Mary will carry on a proud tradition of external support for its innovative undergraduate researchers in biology and chemistry as one of only 14 institutions across the country selected to ...
A team at the Center for Research in Biological Chemistry and Molecular Materials (CiQUS) at the University of Santiago de Compostela has developed a more flexible chemical strategy to create ...
Morning Overview on MSN
New fluorescence microscopy maps magnetic chemistry inside living cells
A research team at the University of Tokyo has built a fluorescence microscopy system that can detect fleeting magnetic ...
Today's nearly $70 billion U.S. biofuels economy is powered by two technology toolboxes. Biochemical technologies—used to produce around 17 billion gallons of ethanol annually—leverage microorganisms ...
“The elements are like the alphabet of life. The language of life is created from the right combination of letters or characters.” This is how chemistry professor Chris Chang sees chemical biology, as ...
When cells experience enough chronic stress, they can stop dividing permanently. In this state of cellular limbo, known as ...
Study identifies impaired ER-to-golgi ceramide transport as a key regulatory node underlying senescence-associated sphingolipid remodeling.
Winners of the 2022 Nobel Prize in chemistry. From left to right, Carolyn R. Bertozzi, Morten Meldal, and K. Barry Sharpless. © Nobel Prize Outreach. Illustration by ...
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