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A few minutes of sprinting could make a bigger impact than 90 minutes of moderate running
A few minutes of sprinting could make a bigger impact than 90 minutes of moderate running
Three minutes of sprinting can do something that 90 minutes of moderate exercise apparently cannot: dramatically reshape the molecular contents of the bloodstream. Rockefeller researchers comparing different intensities of exercise found that six sets of 30-second, all-out sprint
Sugar molecule could help protect against dangerous hospital fungus Candida auris
Sugar molecule could help protect against dangerous hospital fungus Candida auris
Researchers have developed a potential new approach against the highly drug-resistant hospital fungus Candida auris.
African grasslands expanded 5 million year earlier than previously thought, molecular fossils suggest
African grasslands expanded 5 million year earlier than previously thought, molecular fossils suggest
The iconic grassland savannas of Africa are geographically extensive and important for both local fauna and the global climate. Destaque: 5 mi.
Immune 'reprogramming' could protect poultry from deadly diseases without antibiotics
Immune 'reprogramming' could protect poultry from deadly diseases without antibiotics
University of Bristol–led researchers have identified a naturally occurring gut molecule that could strengthen chickens' immune response against a wide range of bacterial infections. This development, published today, Aug. 12, in The Journal of Immunology, offers a major step for
Light-controlled molecular switches offer exciting possibilities for future electronics, data storage
Light-controlled molecular switches offer exciting possibilities for future electronics, data storage
Whether it's neurons responding to electrical signals or plants stretching toward light, nature is filled with examples of biological materials that respond to their environment.
Quality control of proteins in the cellular membrane starts at the ribosome
Quality control of proteins in the cellular membrane starts at the ribosome
Scientists at the Center for Molecular Medicine Cologne (CMMC) and the CECAD Cluster of Excellence on Aging Research have demonstrated in a biomedical study that ribosomes, the protein factories of our cells, face an unusually tough challenge when building large, membrane-embedde
Porous material can arrange disordered gas molecules into a crystal-like structure, study predicts
Porous material can arrange disordered gas molecules into a crystal-like structure, study predicts
Capturing carbon or storing hydrogen to combat global warming requires compressing gases into sponge-like porous materials.
DNA origami nanosyringe actively transports molecules into synthetic cells
DNA origami nanosyringe actively transports molecules into synthetic cells
Transporting molecules across biological membranes is essential for life.
Long before adulthood, a chemical mark may quietly shape how the brain handles stress
Long before adulthood, a chemical mark may quietly shape how the brain handles stress
Stress or trauma during childhood may leave people more vulnerable to mental health struggles and stress later in life. Scientists think one reason could be that early-life stress leaves lasting molecular bookmarks on DNA, without changing the genetic sequence itself. A recent st
Fighting pathogens by watching how they read their own DNA: Q&A with structural biologist
Fighting pathogens by watching how they read their own DNA: Q&A with structural biologist
Every living cell, from the simplest bacterium to a human neuron, relies on the same basic machinery to read, interpret, and use its DNA. This molecular machinery is so fundamental that life as we know it cannot exist without it. And because it is so essential, it has long been a
Engineered enzymes forge carbon-carbon and carbon-nitrogen bonds with high selectivity
Engineered enzymes forge carbon-carbon and carbon-nitrogen bonds with high selectivity
Researchers from the Manchester Institute of Biotechnology, including Dr. Zachary Birch-Price and professor Anthony Green, have developed a new family of engineered enzymes that can create several different types of chemical bonds used to build complex molecules. This work demons
Molecular structures provide roadmap for targeted Parkinson's disease therapeutics
Molecular structures provide roadmap for targeted Parkinson's disease therapeutics
Researchers at Weill Cornell Medicine have uncovered how a key Parkinson's protein called LRRK2 shifts between inactive and active forms, revealing the structural changes that enable certain mutations to push the protein into an overactive state. Mutations that cause LRRK2 to bec