A stable tetraporphyrin metallacycle with Re(I) corners (<b>1</b>) is capable of forming nanopores in a liposomial membrane, provided that the porphyrin units are properly functionalized with peripheral carboxylic acid residues that, by establishing an hydrogen bond network, allow the formation of dimers that span the depth of the membrane
1,3,5-benzenetricarboxylate, biphenyl-3,4′,5-tricarboxylate, and [1,1′:3′,1″-terphenyl]-4,4″,5′-tric...
A new efficient strategy of a zinc porphyrin based yoctowell cavity as a receptor for the formation ...
Structural control of lipid membranes is important for mechanisms underlying biological functions an...
A stable tetraporphyrin metallacycle with Re(I) corners (1) is capable of forming nanopores in a lip...
Oligocholate macrocycles self-assemble into transmembrane nanopores by the associative interactions ...
Cell membranes perform important biological roles including compartmentalization, signaling, and tra...
Oligocholate macrocycles self-assemble into transmembrane nanopores by the associative interactions ...
Nanoporous membranes are made based on photoreactive hydrogen-bridged smectic liquid crystal dimers....
Large multiprotein nanopores remain difficult to reconstitute in vitro, such as, for instance, the n...
Reproducing the structure and function of biological membrane channels, synthetic nanopores have bee...
Membrane proteins are vital for cellular homeostasis. They maintain the electrochemical gradients th...
Large multiprotein nanopores remain difficult to reconstitute in vitro, such as, for instance, the n...
A binding pocket consisting of two zinc porphyrins self assembled by Watson-Crick base pairing is pr...
Biological ion channels and ion pumps with sub-nanometer sizes modulate ion transport in response to...
Nanopore analysis is a very promising technique for many applications, such as the study of intrinsi...
1,3,5-benzenetricarboxylate, biphenyl-3,4′,5-tricarboxylate, and [1,1′:3′,1″-terphenyl]-4,4″,5′-tric...
A new efficient strategy of a zinc porphyrin based yoctowell cavity as a receptor for the formation ...
Structural control of lipid membranes is important for mechanisms underlying biological functions an...
A stable tetraporphyrin metallacycle with Re(I) corners (1) is capable of forming nanopores in a lip...
Oligocholate macrocycles self-assemble into transmembrane nanopores by the associative interactions ...
Cell membranes perform important biological roles including compartmentalization, signaling, and tra...
Oligocholate macrocycles self-assemble into transmembrane nanopores by the associative interactions ...
Nanoporous membranes are made based on photoreactive hydrogen-bridged smectic liquid crystal dimers....
Large multiprotein nanopores remain difficult to reconstitute in vitro, such as, for instance, the n...
Reproducing the structure and function of biological membrane channels, synthetic nanopores have bee...
Membrane proteins are vital for cellular homeostasis. They maintain the electrochemical gradients th...
Large multiprotein nanopores remain difficult to reconstitute in vitro, such as, for instance, the n...
A binding pocket consisting of two zinc porphyrins self assembled by Watson-Crick base pairing is pr...
Biological ion channels and ion pumps with sub-nanometer sizes modulate ion transport in response to...
Nanopore analysis is a very promising technique for many applications, such as the study of intrinsi...
1,3,5-benzenetricarboxylate, biphenyl-3,4′,5-tricarboxylate, and [1,1′:3′,1″-terphenyl]-4,4″,5′-tric...
A new efficient strategy of a zinc porphyrin based yoctowell cavity as a receptor for the formation ...
Structural control of lipid membranes is important for mechanisms underlying biological functions an...