In this roadmap I am portraying my personnel view of the most significant progress made in lyotropic liquid crystal nanostructure research with reference to my contribution ‘The Biologically Relevant Lipid Mesophases as “Seen” by X-rays’ (Advances in Planar Lipid Bilayers and Liposomes, vol. 5, 2006). First, I summarize the biological most relevant inverse liquid crystalline phases citing newest literature contributions. Second, recent advances on the design of lipid-based nanoparticles for drug release applications follows. Finally, I unveil desirable methodological developments and research trends for the future. While exploring biomimetic membranes with steadily improving temporal and spatial resolution by exploiting increasingly also th...
Nonlamellar lyotropic liquid crystalline (LLC) lipid nanomaterials have emerged as a promising class...
Future nanoscale soft matter design will be driven by the biological paradigms of hierarchical self-...
Amphiphilic in nature, lipids spontaneously self-assemble into various nanostructures in aqueous sol...
Biological amphiphiles, such as the lipids that make up the fabric of the cell membrane, can self-as...
Non-lamellar lipid lyotropic liquid crystal nanoparticles (LCNPs) formed by inverse type lipids have...
Lipid-based nanosystems have gained interest as matrixes able to dissolve and to control delivery of...
Amphiphilic lipids aggregate in aqueous solution into a variety of structural arrangements. Among th...
Lipid-based nanosystems have gained interest as matrixes able to dissolve and to control delivery of...
Lipid-based nanosystems have gained interest as matrixes able to dissolve and to control delivery of...
Lipid based nanosystems have potential use as matrixes able to dissolve and deliver active molecules...
Amphiphilic lipids aggregate in aqueous solution into a variety of structural arrangements. Among th...
Amphiphilic lipids aggregate in aqueous solution into a variety of structural arrangements. Among th...
Ordered amphiphile self-assembly materials with a tunable three-dimensional (3D) nanostructure are o...
Self-assembly of lipid-based liquid crystalline (LLC) nanoparticles is a formulation art arising fro...
Amphiphilic in nature, lipids spontaneously self-assemble into a range of nanostructures in the pres...
Nonlamellar lyotropic liquid crystalline (LLC) lipid nanomaterials have emerged as a promising class...
Future nanoscale soft matter design will be driven by the biological paradigms of hierarchical self-...
Amphiphilic in nature, lipids spontaneously self-assemble into various nanostructures in aqueous sol...
Biological amphiphiles, such as the lipids that make up the fabric of the cell membrane, can self-as...
Non-lamellar lipid lyotropic liquid crystal nanoparticles (LCNPs) formed by inverse type lipids have...
Lipid-based nanosystems have gained interest as matrixes able to dissolve and to control delivery of...
Amphiphilic lipids aggregate in aqueous solution into a variety of structural arrangements. Among th...
Lipid-based nanosystems have gained interest as matrixes able to dissolve and to control delivery of...
Lipid-based nanosystems have gained interest as matrixes able to dissolve and to control delivery of...
Lipid based nanosystems have potential use as matrixes able to dissolve and deliver active molecules...
Amphiphilic lipids aggregate in aqueous solution into a variety of structural arrangements. Among th...
Amphiphilic lipids aggregate in aqueous solution into a variety of structural arrangements. Among th...
Ordered amphiphile self-assembly materials with a tunable three-dimensional (3D) nanostructure are o...
Self-assembly of lipid-based liquid crystalline (LLC) nanoparticles is a formulation art arising fro...
Amphiphilic in nature, lipids spontaneously self-assemble into a range of nanostructures in the pres...
Nonlamellar lyotropic liquid crystalline (LLC) lipid nanomaterials have emerged as a promising class...
Future nanoscale soft matter design will be driven by the biological paradigms of hierarchical self-...
Amphiphilic in nature, lipids spontaneously self-assemble into various nanostructures in aqueous sol...