A major problem with magnetogels is the encapsulation of hydrophobic drugs. Magnetoliposomes not only provide these domains but also improve drug stability and avert the aggregation of the magnetic nanoparticles. In this work, two magnetoliposome architectures, solid and aqueous, were combined with supramolecular peptide-based hydrogels, which are of biomedical interest owing to their biocompatibility, easy tunability, and wide array of applications. This proof-of-concept was carried out through combination of magnetoliposomes (loaded with the model drug curcumin and the lipid probe Nile Red) with the hydrogels prior to pH triggered gelation, and fluorescence spectroscopy was used to assess the dynamics of the encapsulated molecules. These ...
Currently, the nanoparticle functionalization effect on supramolecular peptide-based hydrogels remai...
Supramolecular hydrogels are highly promising for biomedical materials owing to the wide array of pr...
Combining liposomes with magnetic nanoparticles is an intriguing approach to create multifunctional ...
In this work, magnetic liposomes, both solid and aqueous, were loaded with a model drug and combined...
The combination of gels with magnetic nanoparticles towards magnetic gels provides a means for the r...
In this work, manganese ferrite nanoparticles were synthesized, coated with a gold shell or decorat...
In this work, dehydropeptide gels were loaded with citrate- or lipid-stabilized nanoparticles to eva...
In this work, superparamagnetic manganese ferrite (MnFe2O4) nanoparticles were successfully incorpor...
Both aqueous magnetoliposomes (AMLs, containing magnetic nanoparticles entrapped in liposomes) and s...
Magnetic gels have been gaining great attention in nanomedicine, as they combine features of hydroge...
Magneto-sensitive liposomes can be obtained by encapsulation of magnetic nanoparticles into liposom...
Magnetoliposomes have gained increasing attention as delivery systems, as they surpass many limitati...
Herein, novel dehydropeptide-based magnetogels, based on the hydrogelators Npx-L-Phe-Z-ΔAbu-OH, Npx-...
Drug delivery nanosystems have been thriving in recent years as a promising application in therapeut...
Superparamagnetic manganese ferrite (MnFe2O4) nanoparticles were successfully incorporated into self...
Currently, the nanoparticle functionalization effect on supramolecular peptide-based hydrogels remai...
Supramolecular hydrogels are highly promising for biomedical materials owing to the wide array of pr...
Combining liposomes with magnetic nanoparticles is an intriguing approach to create multifunctional ...
In this work, magnetic liposomes, both solid and aqueous, were loaded with a model drug and combined...
The combination of gels with magnetic nanoparticles towards magnetic gels provides a means for the r...
In this work, manganese ferrite nanoparticles were synthesized, coated with a gold shell or decorat...
In this work, dehydropeptide gels were loaded with citrate- or lipid-stabilized nanoparticles to eva...
In this work, superparamagnetic manganese ferrite (MnFe2O4) nanoparticles were successfully incorpor...
Both aqueous magnetoliposomes (AMLs, containing magnetic nanoparticles entrapped in liposomes) and s...
Magnetic gels have been gaining great attention in nanomedicine, as they combine features of hydroge...
Magneto-sensitive liposomes can be obtained by encapsulation of magnetic nanoparticles into liposom...
Magnetoliposomes have gained increasing attention as delivery systems, as they surpass many limitati...
Herein, novel dehydropeptide-based magnetogels, based on the hydrogelators Npx-L-Phe-Z-ΔAbu-OH, Npx-...
Drug delivery nanosystems have been thriving in recent years as a promising application in therapeut...
Superparamagnetic manganese ferrite (MnFe2O4) nanoparticles were successfully incorporated into self...
Currently, the nanoparticle functionalization effect on supramolecular peptide-based hydrogels remai...
Supramolecular hydrogels are highly promising for biomedical materials owing to the wide array of pr...
Combining liposomes with magnetic nanoparticles is an intriguing approach to create multifunctional ...