A team of Australian scientists has made a world-first discovery by describing the structure of a vital receptor found on the surface of body cells in all animals, including humans. This breakthrough has major implications for understanding growth and development, as well as diseases such as diabetes and cancer.
A Purdue University study reveals that a virus uses six RNAs to create a motor that transports DNA, facilitating the development of nanoscale devices. The research also improves scientists' understanding of how cells transport large molecules through membranes.
Scientists at NIST have successfully used an advanced measurement technique to study the evolution of complex defect structures in deformed metals. This breakthrough could lead to more accurate computer models that help manufacturers save hundreds of millions of dollars annually by reducing trial and error.
Scientists at Whitehead Institute for Biomedical Research discovered a plant gene called EIR1 that plays a critical role in root growth towards the earth in response to gravity. The findings may lead to new strategies for enhancing food production, particularly in arid climates.
Scientists have found that a marine snail venom extracts can prevent serotonin from acting on a specific receptor in African toad eggs, which is also found in the human brain. This discovery could provide insight into regulating nerve cell behavior and designing new drugs to control serotonin's actions.
The Hilary Koprowski Endowed Professorship will provide long-term support for renowned scientists, setting a precedent for additional endowed professorships at The Wistar Institute. Established in honor of Dr. Koprowski's contributions to medical research, the chair aims to advance vaccine development and cancer research.
Researchers created a mathematical model that builds on current FAA ground-holding policies, aiming to reduce cost and improve efficiency in air traffic management. The model has been partially implemented in Europe and shows a potential improvement of up to 30 percent in reducing congestion.
Researchers discovered a specific code that unlocks T cell activation, preventing immune cells from attacking the body's own cells. The code is: B1, C2, A1, A2, B2, C1.