Dynamic amphiphiles have a “bridge” between their charged head and their hydrophobic tails. The presence of dynamic covalent bonds is of interest for differential and biosensing applications as well as for rapid access to the libraries needed to screen for gene delivery or cellular uptake of siRNA. However, efforts to develop libraries have so far concentrated on hydrazone bridges to monocationic heads. Here, we report synthesis efforts to enlarge this focused library with oxime and disulfide bridges and dynamic amphiphiles with more than one positive charge. Evaluation in fluorogenic vesicles reveals best activation of DNA as ion transporters by dynamic amphiphiles with dendritic scaffolds, doubly charged heads and four tails. Moreover, ox...
Amphiphiles are molecules that contain both water-soluble and water-insoluble components. The dual n...
AbstractIn order to find new efficient and safe agents for gene delivery, we have designed and synth...
Dynamic amphiphiles provide access to transmembrane ion transport, differential sensing and cellular...
We report the design, synthesis and evaluation of dynamic “octopus” amphiphiles with emphasis on the...
The rapid development of DNA nanotechnology has led to the generation of numerous 1D, 2D and 3D DNA ...
Among the current selection of modern drugs, most are hydrophobic causing insolubility in the aqueou...
This thesis reports the application of dynamic combinatorial chemistry (DCC)to identify new DNA-bind...
ABSTRACT: Dynamic amphiphiles are amphiphiles with dynamic covalent bridges between their hydrophili...
In this thesis, DCC based selective chemical functionalization of nanomaterials is investigated. The...
In this thesis, DCC based selective chemical functionalization of nanomaterials is investigated. The...
In this thesis, DCC based selective chemical functionalization of nanomaterials is investigated. The...
In this thesis, DCC based selective chemical functionalization of nanomaterials is investigated. The...
Amphiphiles are molecules that contain both water-soluble and water-insoluble components. The dual n...
Dynamic amphiphiles are amphiphiles with dynamic covalent bridges between their hydrophilic heads an...
In this thesis, DCC based selective chemical functionalization of nanomaterials is investigated. The...
Amphiphiles are molecules that contain both water-soluble and water-insoluble components. The dual n...
AbstractIn order to find new efficient and safe agents for gene delivery, we have designed and synth...
Dynamic amphiphiles provide access to transmembrane ion transport, differential sensing and cellular...
We report the design, synthesis and evaluation of dynamic “octopus” amphiphiles with emphasis on the...
The rapid development of DNA nanotechnology has led to the generation of numerous 1D, 2D and 3D DNA ...
Among the current selection of modern drugs, most are hydrophobic causing insolubility in the aqueou...
This thesis reports the application of dynamic combinatorial chemistry (DCC)to identify new DNA-bind...
ABSTRACT: Dynamic amphiphiles are amphiphiles with dynamic covalent bridges between their hydrophili...
In this thesis, DCC based selective chemical functionalization of nanomaterials is investigated. The...
In this thesis, DCC based selective chemical functionalization of nanomaterials is investigated. The...
In this thesis, DCC based selective chemical functionalization of nanomaterials is investigated. The...
In this thesis, DCC based selective chemical functionalization of nanomaterials is investigated. The...
Amphiphiles are molecules that contain both water-soluble and water-insoluble components. The dual n...
Dynamic amphiphiles are amphiphiles with dynamic covalent bridges between their hydrophilic heads an...
In this thesis, DCC based selective chemical functionalization of nanomaterials is investigated. The...
Amphiphiles are molecules that contain both water-soluble and water-insoluble components. The dual n...
AbstractIn order to find new efficient and safe agents for gene delivery, we have designed and synth...
Dynamic amphiphiles provide access to transmembrane ion transport, differential sensing and cellular...