Flexoelectricity, which can transform mechanical deformation into electrical signals, could provide enough power to fire ...
Researchers shifted the focus to the internal properties of the membrane itself, specifically its viscosity, highlighting its critical role in controlling deformation and dynamics during essential ...
Transverse tubules (T-tubules) play a significant role in muscle contraction. However, the underlying mechanism of their ...
Living cells may generate electricity through the natural motion of their membranes. These fast electrical signals could play ...
Opinion
The Brighterside of News on MSNOpinion
Scientists may have discovered a usable source of electrical power within cells
Cells do more than carry out chemical reactions. New theoretical work suggests they may also generate usable electrical energy through constant motion in their membranes, offering a fresh way to think ...
Located at the cellular interface, membrane proteins play critical regulatory roles in the signaling between a cell and its interacting environment, making them popular and ideal drug targets.
Researchers have determined that condensates are electrically charged droplets that can induce voltage changes across the ...
Morning Overview on MSN
Cell motion might be a hidden power source in biology
Inside every living cell, proteins and membranes are in constant motion, reshaping, colliding, and flexing as they keep an ...
Cellular membrane proteins play important roles in cellular transport, signaling, and cell-to-cell communication. Malfunction in membrane proteins can lead to serious diseases, such as cancer. However ...
While our cells are performing some important, basic functions, they can generate compounds known as reactive oxygen species ...
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