Model shows the role of intrinsically disordered proteins in biomolecular condensate viscoelasticity
Molecular dynamics simulations yield thermodynamic and time-dependent behavior, elucidating the role of intrinsically ...
Researchers from a joint Skoltech and University of Sharjah laboratory and their collaborators from Paris Saclay University, France, have identified biomolecules whose levels in nerve tissue are ...
Detecting gum disease currently requires a dentist chair and a visual exam, often catching problems only after tissue damage has started. To shift care from reactive to proactive, researchers at Texas ...
Networks of molecules in our body behave as though they have goals and desires. Understanding this phenomenon could solve the ...
New method reveals chemical signs of early microbial life in ancient Earth rocks, showing photosynthesis evolved much earlier than believed.
Predicting how circulating immune cells interact with human tissues remains a major challenge in preclinical drug testing.
Detecting gum disease currently requires a dentist chair and visual exam, often catching problems only after tissue damage ...
Artificial intelligence (AI) is transforming how scientists understand proteins—these are working molecules that drive nearly every process in the human body, from cell growth and immune defense to ...
Research suggests young, active people are increasingly being diagnosed with osteoarthritis at much earlier ages than many ...
Osteoarthritis is increasingly diagnosed in younger, active people. Early detection could be key to reducing pain and ...
Ancient fossils are revealing unexpected chemical survivors, challenging long-held assumptions about how biological carbon is ...
Experiments reveal that unsaturated lipid membranes promote vesicle fusion and DNA retention during freeze–thaw cycles, highlighting icy environments as potential drivers of protocell evolution. Today ...
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