This paper provides an analysis of microfluidic techniques for the production of nanoscale lipid-based vesicular systems. In particular we focus on the key issues associated with the microfluidic production of liposomes. These include, but are not limited to, the role of lipid formulation, lipid concentration, residual amount of solvent, production method (including microchannel architecture), and drug loading in determining liposome characteristics. Furthermore, we propose microfluidic architectures for the mass production of liposomes with a view to potential industrial translation of this technology
Within this paper we present work that has the ability to de-risk the translation of liposomes from ...
Injectable liposomes are characterized by a suitable size and unique lipid mixtures, which require t...
dissertationLiposomes are small vesicles filled with an aqueous solvent, bounded by a fluid shell th...
This paper provides an analysis of microfluidic techniques for the production of nanoscale lipid-bas...
Since the inception of nanocarriers as drug delivery agents, liposomes stood out as a suitable candi...
For the last decades, lipid vesicles or liposomes, vesicles formed by a bilayer of amphiphilic lipid...
Despite the substantial body of research investigating the use of liposomes, niosomes and other bila...
Liposomes are spherical vesicles made up of one or more lipid bilayers that can contain an aqueous m...
Liposomes have been the centre of attention in research due to their potential to act as drug delive...
Microfluidics has recently emerged as a new method of manufacturing liposomes, which allows for repr...
The importance of drug delivery for disease treatment is supported by a vast literature and increasi...
Liposomes as cell‐mimetic system have attracted wide attention of researchers in various branches of...
Microfluidics is an emerging technology that can be employed as a powerful tool for designing lipid ...
Injectable liposomes are characterized by a suitable size and unique lipid mixtures, which require t...
Continuous‐flow production of liposomes using microfluidic reactors has demonstrated advantages comp...
Within this paper we present work that has the ability to de-risk the translation of liposomes from ...
Injectable liposomes are characterized by a suitable size and unique lipid mixtures, which require t...
dissertationLiposomes are small vesicles filled with an aqueous solvent, bounded by a fluid shell th...
This paper provides an analysis of microfluidic techniques for the production of nanoscale lipid-bas...
Since the inception of nanocarriers as drug delivery agents, liposomes stood out as a suitable candi...
For the last decades, lipid vesicles or liposomes, vesicles formed by a bilayer of amphiphilic lipid...
Despite the substantial body of research investigating the use of liposomes, niosomes and other bila...
Liposomes are spherical vesicles made up of one or more lipid bilayers that can contain an aqueous m...
Liposomes have been the centre of attention in research due to their potential to act as drug delive...
Microfluidics has recently emerged as a new method of manufacturing liposomes, which allows for repr...
The importance of drug delivery for disease treatment is supported by a vast literature and increasi...
Liposomes as cell‐mimetic system have attracted wide attention of researchers in various branches of...
Microfluidics is an emerging technology that can be employed as a powerful tool for designing lipid ...
Injectable liposomes are characterized by a suitable size and unique lipid mixtures, which require t...
Continuous‐flow production of liposomes using microfluidic reactors has demonstrated advantages comp...
Within this paper we present work that has the ability to de-risk the translation of liposomes from ...
Injectable liposomes are characterized by a suitable size and unique lipid mixtures, which require t...
dissertationLiposomes are small vesicles filled with an aqueous solvent, bounded by a fluid shell th...