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1.
J Liposome Res ; 28(4): 275-284, 2018 Dec.
Article in English | MEDLINE | ID: mdl-28826275

ABSTRACT

Transdermal drug delivery systems are a key technology for skin-related diseases and for cosmetics development. The delivery of active ingredients to an appropriate site or target cells can greatly improve the efficacy of medical and cosmetic agents. For this study, liposome-based transdermal delivery systems were developed using pH-responsive phytosterol derivatives as liposome components. Succinylated phytosterol (Suc-PS) and 2-carboxy-cyclohexane-1-carboxylated phytosterol (CHex-PS) were synthesized by esterification of hydroxy groups of phytosterol. Modification of phytosterol derivatives on 1,2-dimyristoyl-sn-glycero-3-phosphocholine (DMPC) liposomes was confirmed by negatively zeta potentials at alkaline pH and the change of zeta potentials with decreasing pH. In response to acidic pH and temperatures higher than body temperature, Suc-PS-containing and CHex-PS-containing liposomes exhibited content release at intracellular acidic compartments of the melanocytes at the basement membrane of the skin. Phytosterol-derivative-containing liposomes were taken up by murine melanoma-derived B16-F10 cells. These liposomes delivered their contents into endosomes and cytosol of B16-F10 cells. Furthermore, phytosterol-derivative-containing liposomes penetrated the 3 D skin models and reached the basement membrane. Results show that pH-responsive phytosterol-derivative-containing DMPC liposomes are promising for use in transdermal medical or cosmetic agent delivery to melanocytes.


Subject(s)
Drug Delivery Systems , Fluoresceins/chemistry , Liposomes , Phytosterols , Administration, Cutaneous , Animals , Cell Line, Tumor , Fluoresceins/administration & dosage , Liposomes/chemistry , Melanocytes/drug effects , Mice , Phytosterols/chemistry , Skin/drug effects , Skin/metabolism
2.
Colloids Surf B Biointerfaces ; 155: 449-458, 2017 Jul 01.
Article in English | MEDLINE | ID: mdl-28463812

ABSTRACT

Dual-signal-sensitive copolymers were synthesized by copolymerization of methoxy diethylene glycol methacrylate, methacrylic acid, and lauroxy tetraethylene glycol methacrylate, which respectively provide temperature sensitivity, pH sensitivity, and anchoring to liposome surfaces. These novel copolymers, with water solubility that differs depending on temperature and pH, are soluble in water under neutral pH and low-temperature conditions, but they become water-insoluble and form aggregates under acidic pH and high-temperature conditions. Liposomes modified with these copolymers exhibited enhanced content release at weakly acidic pH with increasing temperature, although no temperature-dependent content release was observed in neutral conditions. Interaction between the copolymers and the lipid monolayer at the air-water interface revealed that the copolymer chains penetrate more deeply into the monolayer with increasing temperature at acidic pH than at neutral pH, where the penetration of copolymer chains was moderate and temperature-independent at neutral pH. Interaction of the copolymer-modified liposomes with HeLa cells demonstrated that the copolymer-modified liposomes were adsorbed quickly and efficiently onto the cell surface and that they were internalized more gradually than the unmodified liposomes through endocytosis. Furthermore, the copolymer-modified liposomes enhanced the content release in endosomes with increasing temperature, but no such temperature-dependent enhancement of content release was observed for unmodified liposomes.


Subject(s)
Delayed-Action Preparations/chemistry , Liposomes/chemistry , Methacrylates/chemistry , Adsorption , Arylsulfonates/chemistry , Cell Adhesion , Delayed-Action Preparations/pharmacokinetics , Drug Compounding/methods , HeLa Cells , Humans , Hydrogen-Ion Concentration , Lipid Bilayers/chemistry , Microscopy, Confocal , Polyethylene Glycols/chemistry , Polymethacrylic Acids/chemistry , Temperature
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