The development of anticancer drug delivery systems based on biodegradable nanoparticles has been intended to maximize the localization of chemotherapy agents within tumor interstitium, along with negligible drug distribution into healthy tissues. Interestingly, passive and active drug targeting strategies to cancer have led to improved nanomedicines with great tumor specificity and efficient chemotherapy effect. One of the most promising areas in the formulation of such nanoplatforms is the engineering of magnetically responsive nanoparticles. In this way, we have followed a chemical modification method for the synthesis of magnetite/chitosan-l-glutamic acid (core/shell) nanostructures. These magnetic nanocomposites (average size a parts p...
Magnetic nanocarriers have attracted increasing attention for multimodal cancer therapy due to the p...
ABSTRACT: Iron oxide (Fe3O4) containing magnetic chitosan nanoparticles were prepared with Concanava...
Dual stimuli pH and temperature-responsive nanohydrogels based on poly(N-isopropylacrylamide)-chitos...
(Maghemite/poly(d,l-lactide-co-glycolide))/chitosan (core/shell)/shell nanoparticles have been prepa...
Targeted drug delivery is a promising alternative to overcome the limitations of classical chemother...
Chitosan (CS) iron oxide magnetic nanoparticles (MNPs) were coated with phytic acid (PTA) to form ph...
Chitosan (CS) iron oxide magnetic nanoparticles (MNPs) were coated with phytic acid (PTA) to form ph...
Cancer-based magnetic theranostics has gained significant interest in recent years and can contribut...
Stimuli-responsive nanoparticles are regarded as an ideal candidate for anticancer drug targeting. W...
A (core/shell)/shell nanostructure (production performance ≈ 50%, mean diameter ≈ 330 nm) was built ...
Nanoparticles have gained increased attention due to the prospection of drug delivery at target site...
In clinical tumor therapy, chemotherapeutic routes have caused severe side effects; current delivery...
The goal of the present work is to synthesize chitosan-coated superparamagnetic iron oxide nanoparti...
A (core/shell)/shell nanostructure (production performance ≈ 50%, mean diameter ≈ 330 nm) was built ...
Chitosan nanoparticles (CSNPs) ionically crosslinked with tripolyphosphate salts (TPP) were employed...
Magnetic nanocarriers have attracted increasing attention for multimodal cancer therapy due to the p...
ABSTRACT: Iron oxide (Fe3O4) containing magnetic chitosan nanoparticles were prepared with Concanava...
Dual stimuli pH and temperature-responsive nanohydrogels based on poly(N-isopropylacrylamide)-chitos...
(Maghemite/poly(d,l-lactide-co-glycolide))/chitosan (core/shell)/shell nanoparticles have been prepa...
Targeted drug delivery is a promising alternative to overcome the limitations of classical chemother...
Chitosan (CS) iron oxide magnetic nanoparticles (MNPs) were coated with phytic acid (PTA) to form ph...
Chitosan (CS) iron oxide magnetic nanoparticles (MNPs) were coated with phytic acid (PTA) to form ph...
Cancer-based magnetic theranostics has gained significant interest in recent years and can contribut...
Stimuli-responsive nanoparticles are regarded as an ideal candidate for anticancer drug targeting. W...
A (core/shell)/shell nanostructure (production performance ≈ 50%, mean diameter ≈ 330 nm) was built ...
Nanoparticles have gained increased attention due to the prospection of drug delivery at target site...
In clinical tumor therapy, chemotherapeutic routes have caused severe side effects; current delivery...
The goal of the present work is to synthesize chitosan-coated superparamagnetic iron oxide nanoparti...
A (core/shell)/shell nanostructure (production performance ≈ 50%, mean diameter ≈ 330 nm) was built ...
Chitosan nanoparticles (CSNPs) ionically crosslinked with tripolyphosphate salts (TPP) were employed...
Magnetic nanocarriers have attracted increasing attention for multimodal cancer therapy due to the p...
ABSTRACT: Iron oxide (Fe3O4) containing magnetic chitosan nanoparticles were prepared with Concanava...
Dual stimuli pH and temperature-responsive nanohydrogels based on poly(N-isopropylacrylamide)-chitos...