Surface-reactive luminescent vesicles were prepared by self-assembly of phospholipids, amphiphilic maleimides and fluorophors in aqueous solution. Those preformed liposomes were functionalized with various thiolated receptor units using a thiol-click reaction. As recognition elements, a bis-Zn2+-cyclen derivative for the detection of phosphate moieties or a DNA aptamer for the specific binding of the antibiotic ampicillin were utilized. A FRET-based assay revealed the close spatial proximity of the membrane-embedded dansyl molecules with the subsequently immobilized thiols, which is the origin for the signaling mechanism of the obtained vesicular sensors. Those receptor-functionalized liposomes indicate the binding of the targets to their s...
This work describes the membrane functionalization of small unilamellar phospholipid vesicles by inc...
This work describes the membrane functionalization of small unilamellar phospholipid vesicles by inc...
Ligand-receptor interactions mitigate intracellular responses, with abnormal signaling corresponding...
Surface-reactive luminescent vesicles were prepared by self-assembly of phospholipids, amphiphilic m...
Surface-reactive luminescent vesicles were prepared by self-assembly of phospholipids, amphiphilic m...
Self-assembled phospholipid vesicles are functionalized with thrombinbinding aptamers using a thiol-...
Self-assembled phospholipid vesicles are functionalized with thrombinbinding aptamers using a thiol-...
Self-assembled phospholipid vesicles are functionalized with thrombinbinding aptamers using a thiol-...
We report a modular design of vesicular chemosensors by co-embedding a Tb(III) complex and a recepto...
We report a modular design of vesicular chemosensors by co-embedding a Tb(III) complex and a recepto...
The anion binding ability of bis-zinc cyclen complexes in buffered aqueous solution was investigated...
The preparation of a fluorogenic sensory material for the detection of biomolecules is described. St...
We report on the ability of a new fluorescent probe, 4-(2-pyren-1-yl-vinyl) pyridine, 1, to respond ...
AbstractWe report on the ability of a new fluorescent probe, 4-(2-pyren-1-yl-vinyl) pyridine, 1, to ...
This work describes the membrane functionalization of small unilamellar phospholipid vesicles by inc...
This work describes the membrane functionalization of small unilamellar phospholipid vesicles by inc...
This work describes the membrane functionalization of small unilamellar phospholipid vesicles by inc...
Ligand-receptor interactions mitigate intracellular responses, with abnormal signaling corresponding...
Surface-reactive luminescent vesicles were prepared by self-assembly of phospholipids, amphiphilic m...
Surface-reactive luminescent vesicles were prepared by self-assembly of phospholipids, amphiphilic m...
Self-assembled phospholipid vesicles are functionalized with thrombinbinding aptamers using a thiol-...
Self-assembled phospholipid vesicles are functionalized with thrombinbinding aptamers using a thiol-...
Self-assembled phospholipid vesicles are functionalized with thrombinbinding aptamers using a thiol-...
We report a modular design of vesicular chemosensors by co-embedding a Tb(III) complex and a recepto...
We report a modular design of vesicular chemosensors by co-embedding a Tb(III) complex and a recepto...
The anion binding ability of bis-zinc cyclen complexes in buffered aqueous solution was investigated...
The preparation of a fluorogenic sensory material for the detection of biomolecules is described. St...
We report on the ability of a new fluorescent probe, 4-(2-pyren-1-yl-vinyl) pyridine, 1, to respond ...
AbstractWe report on the ability of a new fluorescent probe, 4-(2-pyren-1-yl-vinyl) pyridine, 1, to ...
This work describes the membrane functionalization of small unilamellar phospholipid vesicles by inc...
This work describes the membrane functionalization of small unilamellar phospholipid vesicles by inc...
This work describes the membrane functionalization of small unilamellar phospholipid vesicles by inc...
Ligand-receptor interactions mitigate intracellular responses, with abnormal signaling corresponding...