The aim of this work was to evaluate the potential of INVITE-based nanomicelles, an amphiphilic polymer constituted by inulin (INU) and vitamin E (VITE), as a platform for improving the biopharmaceutical properties of hydrophobic drugs. For this purpose, curcumin was selected as a model and curcumin-INVITE nanomicelles were prepared. This drug delivery system was characterized both in vitro for what concerns the physicochemical properties, blood compatibility, and cellular uptake, and in vivo for the evaluation of the pharmacokinetic profile. It was found that these nanomicelles released curcumin in a controlled manner, and they were able to penetrate cellular membrane. Moreover, they showed an improved pharmacokinetic profile after intrave...
This work aims at designing a drug delivery system for rifampicin (RIF) to be used for the therapy o...
This work reports on the formation of a carrier-in-carrier device for the systemic delivery and targ...
In order to verify the effect of different processes on the starting polymers INVITE, their thermal ...
The aim of this work was to evaluate the potential of INVITE-based nanomicelles, an amphiphilic poly...
The aim of this work was to evaluate the potential of INVITE based nanomicelles, an amphiphilic poly...
In this work the hydrophobic core of Inulin based micelles has been exploited for the loading of the...
In order to investigate the potential use of INVITE micelles for urinary tract infections, we tested...
Curcumin (CUR) and celecoxib (CLX) are two highly hydrophobic drugs which show bioavailability probl...
There is a great demand for efficient ocular dosage forms for the treatment of diabetic retinopathy....
Here, long-circulating behaviors of Inulin-based nanomicelles are demonstrated for the first time in...
In the context of ours research projects aimed at evaluating biodegradable amphiphilic polymers of n...
This work reports on the formation of a carrier-in-carrier device for the systemic delivery and targ...
Inulin (INU) is a polyfructose which have the unique features to not bind plasmatic proteins and to ...
This work aims at designing a drug delivery system for rifampicin (RIF) to be used for the therapy o...
This work aims at designing a drug delivery system for rifampicin (RIF) to be used for the therapy o...
This work reports on the formation of a carrier-in-carrier device for the systemic delivery and targ...
In order to verify the effect of different processes on the starting polymers INVITE, their thermal ...
The aim of this work was to evaluate the potential of INVITE-based nanomicelles, an amphiphilic poly...
The aim of this work was to evaluate the potential of INVITE based nanomicelles, an amphiphilic poly...
In this work the hydrophobic core of Inulin based micelles has been exploited for the loading of the...
In order to investigate the potential use of INVITE micelles for urinary tract infections, we tested...
Curcumin (CUR) and celecoxib (CLX) are two highly hydrophobic drugs which show bioavailability probl...
There is a great demand for efficient ocular dosage forms for the treatment of diabetic retinopathy....
Here, long-circulating behaviors of Inulin-based nanomicelles are demonstrated for the first time in...
In the context of ours research projects aimed at evaluating biodegradable amphiphilic polymers of n...
This work reports on the formation of a carrier-in-carrier device for the systemic delivery and targ...
Inulin (INU) is a polyfructose which have the unique features to not bind plasmatic proteins and to ...
This work aims at designing a drug delivery system for rifampicin (RIF) to be used for the therapy o...
This work aims at designing a drug delivery system for rifampicin (RIF) to be used for the therapy o...
This work reports on the formation of a carrier-in-carrier device for the systemic delivery and targ...
In order to verify the effect of different processes on the starting polymers INVITE, their thermal ...