Biological amphiphiles, such as the lipids that make up the fabric of the cell membrane, can self-assemble into a diverse range of one-, two-, and three-dimensional structures. The factors governing this self-assembly take into account the shape of the lipid molecule and the medium within which it resides. Recent work has shown that it is possible to utilize these structures not only to further our understanding of biological processes but also in the development of new, nanoscale functional materials. This chapter outlines the rationale behind the self-assembly behavior of lipids and shows the diversity and complexity of the structures that these relatively simple molecules can adopt. It then addresses recent developments in the formation,...
Lipid bicontinuous cubic phases have attracted enormous interest as bio-compatible scaffolds for use...
Lipid crystallization is ubiquitous in nature, observed in biological structures as well as in comme...
Lipid crystallization is ubiquitous in nature, observed in biological structures as well as in comme...
Future nanoscale soft matter design will be driven by the biological paradigms of hierarchical self-...
The bicontinuous lipidic cubic phase (LCP), which is based on the fundamental structure of the lipid...
We review the use of bicontinuous cubic amphiphile self-assembly materials for protein encapsulation...
Ordered amphiphile self-assembly materials with a tunable three-dimensional (3D) nanostructure are o...
Obtaining well-diffracting crystals of membrane proteins, which is crucial to the molecular-level un...
In this roadmap I am portraying my personnel view of the most significant progress made in lyotropic...
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...
The bicontinuous lipidic cubic phase (LCP), which is based on the fundamental structure of the lipid...
Amphiphilic lipids aggregate in aqueous solution into a variety of structural arrangements. Among th...
© 2016 Dr. Thomas Geoffrey MeikleThe inverse bicontinuous lipidic cubic phase provides a robust, the...
Amphiphilic in nature, lipids spontaneously self-assemble into various nanostructures in aqueous sol...
Lipid bicontinuous cubic phases have attracted enormous interest as bio-compatible scaffolds for use...
Lipid crystallization is ubiquitous in nature, observed in biological structures as well as in comme...
Lipid crystallization is ubiquitous in nature, observed in biological structures as well as in comme...
Future nanoscale soft matter design will be driven by the biological paradigms of hierarchical self-...
The bicontinuous lipidic cubic phase (LCP), which is based on the fundamental structure of the lipid...
We review the use of bicontinuous cubic amphiphile self-assembly materials for protein encapsulation...
Ordered amphiphile self-assembly materials with a tunable three-dimensional (3D) nanostructure are o...
Obtaining well-diffracting crystals of membrane proteins, which is crucial to the molecular-level un...
In this roadmap I am portraying my personnel view of the most significant progress made in lyotropic...
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...
The bicontinuous lipidic cubic phase (LCP), which is based on the fundamental structure of the lipid...
Amphiphilic lipids aggregate in aqueous solution into a variety of structural arrangements. Among th...
© 2016 Dr. Thomas Geoffrey MeikleThe inverse bicontinuous lipidic cubic phase provides a robust, the...
Amphiphilic in nature, lipids spontaneously self-assemble into various nanostructures in aqueous sol...
Lipid bicontinuous cubic phases have attracted enormous interest as bio-compatible scaffolds for use...
Lipid crystallization is ubiquitous in nature, observed in biological structures as well as in comme...
Lipid crystallization is ubiquitous in nature, observed in biological structures as well as in comme...