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Liquid Crystalline Lipid Nanoparticles: Emerging Trends and Applications in Skin Cancer
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Liquid crystalline lipid nanoparticles (LCNPs) represent a type of membrane-based
nano-carriers formed through the self-assembly of lyotropic lipids. These lipids, such as unsaturated
monoglycerides, phospholipids, and co-lipids, create liquid crystals or vesicles with an aqueous
core enclosed by a natural or synthetic phospholipid bilayer upon exposure to an aqueous medium.
Liquid crystalline lipid nanoparticles (LCNPs), akin to liposomes, have garnered significant
attention as nanocarriers suitable for a diverse range of hydrophobic and hydrophilic molecules.
Their notable structural advantage lies in a mono-channel network organization and the presence
of multiple compartments, resulting in heightened encapsulation efficiency for various substances.
Cubosomes, spongosomes, hexosomes, and multicompartment nanoparticles are examples of lipid
nanocarriers with interior liquid crystalline structures that have recently gained a lot of interest as
effective drug delivery systems. Additionally, LCNPs facilitate the sustained release of encapsulated
compounds, including therapeutic macromolecules. This review delves into the structure of
liquid crystalline lipid nanoparticles, explores preparation techniques, and outlines their applications
in the context of skin cancer.
Bentham Science Publishers Ltd.
Title: Liquid Crystalline Lipid Nanoparticles: Emerging Trends and Applications in Skin Cancer
Description:
Liquid crystalline lipid nanoparticles (LCNPs) represent a type of membrane-based
nano-carriers formed through the self-assembly of lyotropic lipids.
These lipids, such as unsaturated
monoglycerides, phospholipids, and co-lipids, create liquid crystals or vesicles with an aqueous
core enclosed by a natural or synthetic phospholipid bilayer upon exposure to an aqueous medium.
Liquid crystalline lipid nanoparticles (LCNPs), akin to liposomes, have garnered significant
attention as nanocarriers suitable for a diverse range of hydrophobic and hydrophilic molecules.
Their notable structural advantage lies in a mono-channel network organization and the presence
of multiple compartments, resulting in heightened encapsulation efficiency for various substances.
Cubosomes, spongosomes, hexosomes, and multicompartment nanoparticles are examples of lipid
nanocarriers with interior liquid crystalline structures that have recently gained a lot of interest as
effective drug delivery systems.
Additionally, LCNPs facilitate the sustained release of encapsulated
compounds, including therapeutic macromolecules.
This review delves into the structure of
liquid crystalline lipid nanoparticles, explores preparation techniques, and outlines their applications
in the context of skin cancer.
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