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In the high-fat system, the lipid surface film reduced the extent of particle shrinkage and impeded the drying process.
An analytical expression for the osmotic pressure of the electrolyte solution between the zwitterionic lipid surface and a charged particle (macroion) is derived.
They can support the adsorption of phospholipids into a layer or specifically influence the surface tension of a lipid surface [1].
After introduction in the bloodstream, the lipid surface is immediately modified by the adsorption of a "protein corona" and preserving the surface functionality appears to be challenging.
The peptide lies at an oblique angle to the interfacial plane, ranging between 47° and 62°, increasing with decreasing lipid surface density.
As an example of the application of the models described, a zwitterionic lipid surface with non-zero dipole moments in contact with an electrolyte solution of monovalent salt ions and water dipoles is studied within the LPB model.
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Their low intrinsic stability in the lipid-free state likely facilitates interaction with lipid surfaces.
A potential environmental factor influencing Aβ aggregate formation is the presence of lipid surfaces.
Surfactant is a lipid surface-tension-lowering agent and it helps to prevent pulmonary oedema.
Acidosis predominantly affects activities of the enzyme complexes on lipid surfaces [ 20].
Dynamins form GTP-dependent cooperative filaments on lipid surfaces and at least some act by constriction (Fig 2G).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com