Living cells may generate electricity through the natural motion of their membranes. These fast electrical signals could play ...
The study revealed the small-molecule signaling system for mammalian cell-cell communication that combines super-sensitivity with a chassis-friendly, low-burden design, and demonstrated the system's ...
In our everyday lives, we are directly exposed to thousands of industrial and agricultural compounds, in addition to added ...
Electric vehicles promise low running costs and cleaner streets, yet many drivers discover their range shrinking long before ...
Evidence is mounting that the same basic chemistry that made Earth habitable is unfolding, or once unfolded, on Mars. From ...
Background Malnutrition influences prognosis in patients with heart failure, but current nutritional evaluation methods are ...
Researchers uncover hidden internal stress that causes next-gen EV batteries to crack, shortening lifespan despite higher ...
Researchers from Kyushu University have developed an innovative computational method, called ddHodge, that can reconstruct ...
Life begins with a single fertilized cell that gradually transforms into a multicellular organism. This process requires ...
The constant, energy-driven motion inside living cells may generate electricity in a way no one fully recognized before.
New evidence of electrical power generation on cell membranes could offer insights into how living cells interact with their ...
Background Inflammatory bowel disease (IBD) arises from complex interactions among diet, host and gut microbiome. Although diet influences intestinal inflammation, the microbial and metabolic pathways ...