Lipases are key components in the mechanisms underlying the persistence and virulence of infections by fungi, and thus also promising triggers for bioresponsive lipid-based liquid crystalline nanoparticles. We here propose a platform in which only a minor component of the formulation is susceptible to cleavage by lipase and where hydrolysis triggers a controlled phase transition within the nanoparticles that can potentially allow for an extended drug release. The responsive formulations were composed of phytantriol, which was included as a non-cleavable major component and polysorbate 80, which serves both as nanoparticle stabilizer and potential lipase target. To monitor the structural changes resulting from lipase activity with sufficient...
Self-assembled lyotropic liquid crystalline lipid nanoparticles have been developed for a wide range...
Lipids, of the glyceride sub-species, are amphiphilic molecules that will self-assemble in aqueous c...
We report here the lyotropic liquid crystalline phase behavior of two lipid nanoparticulate systems ...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
Liquid crystalline nanoparticles have shown great potential for application in fields of drug delive...
Liquid crystalline nanoparticles have shown great potential for application in fields of drug delive...
In this study well-ordered glycerol monooleate (GMO)-based cubic liquid crystalline nanoparticles (L...
In this study well-ordered glycerol monooleate (GMO)-based cubic liquid crystalline nanoparticles (L...
In the advent of the post-antibiotic era, new strategies are urgently required to improve the effica...
Mesophase structures of self-assembled lyotropic liquid crystalline nanoparticles are important fact...
Lipid nanoparticles of reversed internal phase structures, such as cubic micellar (I2) structure sho...
Lipid-based liquid crystalline materials have been proposed as controlled drug delivery systems. Dif...
Lipid-based liquid crystalline materials are being developed as drug delivery systems. However, the ...
Mesophase structures of self-assembled lyotropic liquid crystalline nanoparticles are important fact...
Lipid nanoparticles of reversed internal phase structures, such as cubic micellar (I-2) structure sh...
Self-assembled lyotropic liquid crystalline lipid nanoparticles have been developed for a wide range...
Lipids, of the glyceride sub-species, are amphiphilic molecules that will self-assemble in aqueous c...
We report here the lyotropic liquid crystalline phase behavior of two lipid nanoparticulate systems ...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
Liquid crystalline nanoparticles have shown great potential for application in fields of drug delive...
Liquid crystalline nanoparticles have shown great potential for application in fields of drug delive...
In this study well-ordered glycerol monooleate (GMO)-based cubic liquid crystalline nanoparticles (L...
In this study well-ordered glycerol monooleate (GMO)-based cubic liquid crystalline nanoparticles (L...
In the advent of the post-antibiotic era, new strategies are urgently required to improve the effica...
Mesophase structures of self-assembled lyotropic liquid crystalline nanoparticles are important fact...
Lipid nanoparticles of reversed internal phase structures, such as cubic micellar (I2) structure sho...
Lipid-based liquid crystalline materials have been proposed as controlled drug delivery systems. Dif...
Lipid-based liquid crystalline materials are being developed as drug delivery systems. However, the ...
Mesophase structures of self-assembled lyotropic liquid crystalline nanoparticles are important fact...
Lipid nanoparticles of reversed internal phase structures, such as cubic micellar (I-2) structure sh...
Self-assembled lyotropic liquid crystalline lipid nanoparticles have been developed for a wide range...
Lipids, of the glyceride sub-species, are amphiphilic molecules that will self-assemble in aqueous c...
We report here the lyotropic liquid crystalline phase behavior of two lipid nanoparticulate systems ...