k Drug delivering liposome, artwork Drug delivering liposome, computer artwork. This artificiallyconstructed, spherical vesicle possesses a selectivelypermeable wall that closely resembles the membrane of a living cell. The membrane consists of a dual layer of phospholipids. Each phospholipid consists of a phosphate group head blue and a fatty acid tail orange. Liposomes can be used to carry drugs or genes to target cells. This is particularly useful for highly toxic cancer drugs as it reduces unpleasant side effects. The blue spheres are depicting drug substances delivered through the liposome. Stock Photo - Afloimages
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Drug delivering liposome, artwork Drug delivering liposome, computer artwork. This artificially constructed, spherical vesicle possesses a selectively permeable wall that closely resembles the membrane of a living cell. The membrane consists of a dual layer of phospholipids. Each phospholipid consists of a phosphate group head  blue  and a fatty acid tail  orange . Liposomes can be used to carry drugs or genes to target cells. This is particularly useful for highly toxic cancer drugs as it reduces unpleasant side effects. The blue spheres are depicting drug substances delivered through the liposome.
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Drug delivering liposome, artwork

Drug delivering liposome, computer artwork. This artificially-constructed, spherical vesicle possesses a selectively-permeable wall that closely resembles the membrane of a living cell. The membrane consists of a dual layer of phospholipids. Each phospholipid consists of a phosphate group head (blue) and a fatty acid tail (orange). Liposomes can be used to carry drugs or genes to target cells. This is particularly useful for highly toxic cancer drugs as it reduces unpleasant side effects. The blue spheres are depicting drug substances delivered through the liposome.

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