The development of smart delivery systems able to deliver and target a drug to the site of action is one of the major challenges in the field of pharmaceutical technology. The surface modification of nanocarriers, such as liposomes, is widely investigated either for increasing the blood circulation time (by pegylation) or for interacting with specific tissues or cells (by conjugation of a selective ligand as a monoclonal antibody, mAb). Microscopical analysis thereby is a useful approach to evaluate the morphology and the size owing to resolution and versatility in defining either surface modification or the architecture and the internal structure of liposomes. This contribution aims to connect the outputs obtained by transmission electron ...
Injectable liposomes are well known in the pharmaceutical industry for drugdelivery. In particular, ...
Carbohydrate moieties of the cellular glycocalyx have been suggested to play an important role in bi...
A method was developed to functionalize biomedical metals with liposomes. The novelty of the method ...
The development of smart delivery systems able to deliver and target a drug to the site of action is...
At present, liposomes play a significant role as drug delivery vehicles being considered very promis...
Over the past decades the liposomes have been intensively studied for their unique properties which ...
Liposomes are lipid vesicles largely investigated in the past 30 years as pharmaceutical carriers. I...
We present here a highly efficient and chemoselective liposome functionalization method based on oxi...
Liposomes are lipid vesicles largely investigated in the past 30 years as pharmaceutical carriers. I...
This work aims to evaluate the effects of two different surface modification strategies: PEG convent...
Liposomes have been exploited for pharmaceutical purposes, including diagnostic imaging and drug and...
Nanocarriers have brought several medical advances through better diagnostics and improved drug ther...
AbstractCarbohydrate moieties of the cellular glycocalyx have been suggested to play an important ro...
An outstanding aspect of pharmaceutical nanotechnology lies in the characterization of nanocarriers ...
This chapter describes recent advances in the preparations, characterization, and evaluation of glyc...
Injectable liposomes are well known in the pharmaceutical industry for drugdelivery. In particular, ...
Carbohydrate moieties of the cellular glycocalyx have been suggested to play an important role in bi...
A method was developed to functionalize biomedical metals with liposomes. The novelty of the method ...
The development of smart delivery systems able to deliver and target a drug to the site of action is...
At present, liposomes play a significant role as drug delivery vehicles being considered very promis...
Over the past decades the liposomes have been intensively studied for their unique properties which ...
Liposomes are lipid vesicles largely investigated in the past 30 years as pharmaceutical carriers. I...
We present here a highly efficient and chemoselective liposome functionalization method based on oxi...
Liposomes are lipid vesicles largely investigated in the past 30 years as pharmaceutical carriers. I...
This work aims to evaluate the effects of two different surface modification strategies: PEG convent...
Liposomes have been exploited for pharmaceutical purposes, including diagnostic imaging and drug and...
Nanocarriers have brought several medical advances through better diagnostics and improved drug ther...
AbstractCarbohydrate moieties of the cellular glycocalyx have been suggested to play an important ro...
An outstanding aspect of pharmaceutical nanotechnology lies in the characterization of nanocarriers ...
This chapter describes recent advances in the preparations, characterization, and evaluation of glyc...
Injectable liposomes are well known in the pharmaceutical industry for drugdelivery. In particular, ...
Carbohydrate moieties of the cellular glycocalyx have been suggested to play an important role in bi...
A method was developed to functionalize biomedical metals with liposomes. The novelty of the method ...