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The word liposome derives from two Greek words: lipo ("fat") and soma ("body"); it is so named because its composition is primarily of phospholipid.. Liposomes were first described by British hematologist Alec Douglas Bangham [10] [11] [12] in 1961 at the Babraham Institute, in Cambridge—findings that were published 1964.
A ligand-targeted liposome (LTL) is a nanocarrier with specific ligands attached to its surface to enhance localization for targeted drug delivery. The targeting ability of LTLs enhances cellular localization and uptake of these liposomes for therapeutic or diagnostic purposes.
There is an interest in liposomal medicine because it features targeted drug delivery while mitigating the damage to healthy cells and tissues. [15] One of the combination products under liposome therapy that is being researched for cancer therapy applications is immunoliposome therapy. [15]
The use of cationic lipids helps to enhance the overall stability and efficiency of liposomes. Although cationic lipids themselves are able to encapsulate nucleic acids into liposomes, the transfection efficiency is low due to a process known as endosomal escape.
Because of rapid clearance by the immune system of the positively charged lipid, neutral ionizable amino lipids were developed. A novel squaramide lipid (a partially aromatic four-membered ring that can participate in pi–pi interactions) has been used as part of the delivery system used, for example, by Moderna. [7]
A liposome extruder is a device that prepares cell membranes, exosomes and also generates nanoscale liposome formulations. [1] [2] The liposome extruder employs the track-etched membrane to filter huge particles and achieve sterile filtration. [3] [4] Schematic of a monolamellar liposome.
(Note- the term “liposome” is in essence synonymous with “vesicle” except that vesicle is a general term for the structure whereas liposome refers to only artificial not natural vesicles) The basic idea of liposomal drug delivery is that the drug is encapsulated in solution inside the liposome then injected into the patient. These drug ...
Unilamellar liposomes are used to study biological systems and to mimic cell membranes, and are classified into three groups based on their size: small unilamellar liposomes/vesicles (SUVs) that with a size range of 20–100 nm, large unilamellar liposomes/vesicles (LUVs) with a size range of 100–1000 nm and giant unilamellar liposomes ...