25 Bilder zum Thema "porin" bei ClipDealer

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3d rendering of molecules passing through carbon nanotube porins on lipid bilayer membrane
3d rendering of molecules passing through carbon nanotube porins on lipid bilayer membrane
3d rendering of Gram positive bacteria have a thick peptidoglycan layer and no outer lipid membrane
3d rendering of lipid monolayer is a type of cell membrane in which the lipids are arranged in a single layer, rather than the typical bilayer. Several Archaea have a lipid monolayer
Kokemanjoki river in Pori, Finland
3D rendering of carbon nanotube porins, short pieces of carbon nanotubes capable of self-inserting into a lipid bilayer, model of biological membrane channels.
3D rendering of carbon nanotube porins, short pieces of carbon nanotubes capable of self-inserting into a lipid bilayer, model of biological membrane channels.
3d rendering of lipid monolayer is a type of cell membrane in which the lipids are arranged in a single layer, rather than the typical bilayer. Several Archaea have a lipid monolayer
Embankment of Kokemanjoki river in Pori, Finland
3D rendering of carbon nanotube porins, short pieces of carbon nanotubes capable of self-inserting into a lipid bilayer, model of biological membrane channels.
3d rendering of lipid monolayer is a type of cell membrane in which the lipids are arranged in a single layer, rather than the typical bilayer. Several Archaea have a lipid monolayer
3d rendering of molecules passing through carbon nanotube porins on lipid bilayer membrane
3d rendering of lipid monolayer is a type of cell membrane in which the lipids are arranged in a single layer, rather than the typical bilayer. Several Archaea have a lipid monolayer
3d rendering of molecules passing through carbon nanotube porins on lipid bilayer membrane
3d rendering of Gram-negative bacteria, have a thin peptidoglycan cell wall, which is surrounded by an outer membrane containing lipopolysaccharide
3D rendering of carbon nanotube porins, short pieces of carbon nanotubes capable of self-inserting into a lipid bilayer, model of biological membrane channels.
3D rendering of carbon nanotube porins, short pieces of carbon nanotubes capable of self-inserting into a lipid bilayer, model of biological membrane channels.
3d rendering of molecules passing through carbon nanotube porins on lipid bilayer membrane
3d rendering of Gram-negative bacteria, have a thin peptidoglycan cell wall, which is surrounded by an outer membrane containing lipopolysaccharide
3d rendering of lipid monolayer is a type of cell membrane in which the lipids are arranged in a single layer, rather than the typical bilayer. Several Archaea have a lipid monolayer
3d rendering of lipid monolayer is a type of cell membrane in which the lipids are arranged in a single layer, rather than the typical bilayer. Several Archaea have a lipid monolayer
3D rendering of carbon nanotube porins, short pieces of carbon nanotubes capable of self-inserting into a lipid bilayer, model of biological membrane channels.
3d rendering of molecules passing through carbon nanotube porins on lipid bilayer membrane
Bacterial wall being passed by streptomycin molecules. Structure of a bacterial wall being passed by streptomycin molecules through the channel protein porin. 3D rendering. Illustration
3d rendering of Gram positive bacteria have a thick peptidoglycan layer and no outer lipid membrane

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