A new review maps how membrane engineering, noble-free catalysts and alternative alcohol fuels are pushing direct alcohol fuel cells toward commercial reality.
In the crowded interior of a bacterial cell, location can be everything. A new study of the opportunistic pathogen Pseudomonas aeruginosa reveals that a short molecular tether anchoring the cell’s m ...
The essential amino acid leucine can boost cellular energy production by protecting key proteins on mitochondria from being ...
Hyundai Rotem showcased a 400 km/h high-speed concept, a 220 km/h hydrogen multiple unit and a 3 MW hydrogen freight ...
Scientists at Scripps Research have engineered a synthetic protein capable of binding to Toll-like receptor 4 within the cell ...
To sense their environment and respond accordingly, cells enlist membrane proteins as communication hubs, receiving molecular ...
The Intracellular Quality Control Project at the Tokyo Metropolitan Institute of Medical Science has identified a molecular ...
A team of scientists at Michigan State University has been awarded a new grant from the National Institutes of Health to ...
A new approach to the traditional alkaline electrolyzers used to produce “green” hydrogen from water eliminates the membrane ...
A natural compound found in green tea is being studied for its possible ability to protect brain cells from damage linked to ...
Viruses come in two major flavors—not chocolate and vanilla, quips Harvard Medical School structural biologist Stephen ...
Researchers at SUNY Upstate Medical University have resolved a long-standing neurobiology puzzle: how the central nervous system gauges axon diameter to control myelin sheath length. The study reveals ...
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