BETHESDA, MD – The Biophysical Society is pleased to announce that Sarah Veatch, of the University of Michigan, USA, will receive the 2026 Agnes Pockels Award in Lipids and Membrane Biophysics. Veatch ...
Lipid bilayers in mammalian membranes can have a more asymmetric composition than previously thought, new research shows. This lipid abundance asymmetry is enabled by the unique properties of ...
Cell membranes cradle, protect, and gatekeep living cells. Membranes can even affect how a cell behaves. But membranes’ own erratic behavior has puzzled scientists for years. Turns out, it’s all about ...
Hosted on MSN
Unexpected asymmetry in lipid bilayer challenges understanding of mammalian cell membranes
Lipid bilayers in mammalian membranes can have a more asymmetric composition than previously thought, new research shows. This lipid abundance asymmetry is enabled by the unique properties of ...
Cell membranes cradle, protect, and gatekeep living cells. Membranes can even affect how a cell behaves. But membranes' own erratic behavior has puzzled scientists for years. Turns out, it's all about ...
"Collection of laboratory instructions used during an international training course on membrane biophysics which was held at Homburg in fall of 1966." siris_sil_1475 ...
(Nanowerk News) Membrane rafts are nanometer-scale structures rich in cholesterol and sphingolipids, believed to serve as vital platforms for cell signaling, viral entry, and cancer metastasis. Since ...
‘Tiny biological batteries’ can change the cell membrane’s electrical properties – a discovery that has big implications for health, as many essential cellular processes hinge upon precise electrical ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results