Oligocholate macrocycles self-assemble into transmembrane nanopores by the associative interactions of water molecules inside the amphiphilic macrocycles. Macrocycles functionalized with a terephthalic acid “side chain” displayed significantly higher transport activity for glucose across lipid bilayers than the corresponding methyl ester derivative. Changing the 1,4-substitution of the dicarboxylic acid to 1,3-substitution lowered the activity. Combining the hydrophobic interactions and the hydrogen-bond-based carboxylic acid dimerization was an effective strategy to tune the structure and activity of self-assembled nanopores in lipid membranes
ABSTRACT: Lipid modifications provide efficient targeting of oligonucleotides to live cell membranes...
Macrocyclic urea/amide hybrids are introduced as functional, anion-selective membrane transporters i...
A long-standing aim in molecular self-assembly is the development of synthetic nanopores capable of ...
Oligocholate macrocycles self-assemble into transmembrane nanopores by the associative interactions ...
A series of rigid amphiphilic oligocholate macrocycles were synthesized and their pore formation in ...
Hydrophobic interactions normally are not considered a major driving force for self-assembling in a ...
The aggregation of macrocyclic oligocholates with introverted hydrophilic groups and aromatic side c...
The aggregation of macrocyclic oligocholates with introverted hydrophilic groups and aromatic side c...
Macrocyclic oligocholates were found in a previous work (Cho, H.; Widanapathirana, L.; Zhao, Y. J. A...
A stable tetraporphyrin metallacycle with Re(I) corners (1) is capable of forming nanopores in a lip...
A macrocyclic and a linear trimer of a facially amphiphilic cholate building block were labeled with...
A stable tetraporphyrin metallacycle with Re(I) corners (<b>1</b>) is capable of forming nanopores ...
Controlled translocation of molecules and ions across lipid membranes is the basis of numerous biolo...
International audienceMacrocyclic urea/amide hybrids are introduced as functional, anion-selective m...
Macrocycles made of cholate building blocks were previously found to transport glucose readily acros...
ABSTRACT: Lipid modifications provide efficient targeting of oligonucleotides to live cell membranes...
Macrocyclic urea/amide hybrids are introduced as functional, anion-selective membrane transporters i...
A long-standing aim in molecular self-assembly is the development of synthetic nanopores capable of ...
Oligocholate macrocycles self-assemble into transmembrane nanopores by the associative interactions ...
A series of rigid amphiphilic oligocholate macrocycles were synthesized and their pore formation in ...
Hydrophobic interactions normally are not considered a major driving force for self-assembling in a ...
The aggregation of macrocyclic oligocholates with introverted hydrophilic groups and aromatic side c...
The aggregation of macrocyclic oligocholates with introverted hydrophilic groups and aromatic side c...
Macrocyclic oligocholates were found in a previous work (Cho, H.; Widanapathirana, L.; Zhao, Y. J. A...
A stable tetraporphyrin metallacycle with Re(I) corners (1) is capable of forming nanopores in a lip...
A macrocyclic and a linear trimer of a facially amphiphilic cholate building block were labeled with...
A stable tetraporphyrin metallacycle with Re(I) corners (<b>1</b>) is capable of forming nanopores ...
Controlled translocation of molecules and ions across lipid membranes is the basis of numerous biolo...
International audienceMacrocyclic urea/amide hybrids are introduced as functional, anion-selective m...
Macrocycles made of cholate building blocks were previously found to transport glucose readily acros...
ABSTRACT: Lipid modifications provide efficient targeting of oligonucleotides to live cell membranes...
Macrocyclic urea/amide hybrids are introduced as functional, anion-selective membrane transporters i...
A long-standing aim in molecular self-assembly is the development of synthetic nanopores capable of ...