The dynamic functionalization of the nanoparticle surface with biocompatible coatings is a critical step towards the development of functional nano-sized systems. While covalent approaches have been broadly exploited in the stabilization of nanoparticle colloidal systems, these strategies hinder the dynamic nanosurface chemical reconfiguration. Supramolecular strategies based on specific host–guest interactions hold promise due to their intrinsic reversibility, self-healing capabilities and modularity. Host/guest couples have recently been implemented in nanoparticle platforms for the exchange and release of effector molecules. However, the direct exchange of biocompatible hydrophilic oligomers (e.g. peptides) for the modulation of the surf...
Nature designs chemotactic supramolecular structures that can selectively bind specific groups prese...
This thesis describes the use of multivalent host-guest interactions at interfaces for the construct...
Multicomponent, negatively charged supramolecular nanoparticles (SNPs) were formed by multivalent ho...
Supramolecular chemistry offers diverse opportunities for fabrication and improvement of biodevices....
Supramolecular nanoparticles (SNPs) have emerged recently as a novel and powerful tool for new devel...
The cell machinery is very complex, precisely regulated by cues in space and time. Fine tuning bioac...
Existing methods for the covalent functionalization of nanoparticles rely on kinetically controlled ...
Stimuli-responsive colloidal microcapsules have been fabricated at the oil−water interface using mol...
Nanoscaled supramolecular systems have attracted significant attention because of their promising ap...
This work was supported by the EPSRC (EP/K016342/1 and EP/M506631/1), the Leverhulme Trust (RPG-2015...
Control over the assembly and disassembly of nanoparticles is pivotal for their use as drug delivery...
The ability to design surfaces with reversible, high-affinity protein binding sites represents a sig...
Bio-molecular non-covalent interactions provide a powerful platform for material-specific self-organ...
Here, we demonstrate the formation of dynamic peptide surfaces through the self-assembly of small pe...
Supramolecular host-guest interactions are ideal for engineering supramolecular nanoparticles (SNPs)...
Nature designs chemotactic supramolecular structures that can selectively bind specific groups prese...
This thesis describes the use of multivalent host-guest interactions at interfaces for the construct...
Multicomponent, negatively charged supramolecular nanoparticles (SNPs) were formed by multivalent ho...
Supramolecular chemistry offers diverse opportunities for fabrication and improvement of biodevices....
Supramolecular nanoparticles (SNPs) have emerged recently as a novel and powerful tool for new devel...
The cell machinery is very complex, precisely regulated by cues in space and time. Fine tuning bioac...
Existing methods for the covalent functionalization of nanoparticles rely on kinetically controlled ...
Stimuli-responsive colloidal microcapsules have been fabricated at the oil−water interface using mol...
Nanoscaled supramolecular systems have attracted significant attention because of their promising ap...
This work was supported by the EPSRC (EP/K016342/1 and EP/M506631/1), the Leverhulme Trust (RPG-2015...
Control over the assembly and disassembly of nanoparticles is pivotal for their use as drug delivery...
The ability to design surfaces with reversible, high-affinity protein binding sites represents a sig...
Bio-molecular non-covalent interactions provide a powerful platform for material-specific self-organ...
Here, we demonstrate the formation of dynamic peptide surfaces through the self-assembly of small pe...
Supramolecular host-guest interactions are ideal for engineering supramolecular nanoparticles (SNPs)...
Nature designs chemotactic supramolecular structures that can selectively bind specific groups prese...
This thesis describes the use of multivalent host-guest interactions at interfaces for the construct...
Multicomponent, negatively charged supramolecular nanoparticles (SNPs) were formed by multivalent ho...