Differential sensing attempts to mimic the mammalian senses of smell and taste to identify analytes and complex mixtures. In place of hundreds of complex, membrane-bound G-protein coupled receptors, differential sensors employ arrays of small molecules. Here we show that arrays of computationally designed de novo peptides provide alternative synthetic receptors for differential sensing. We use self-assembling α-helical barrels (αHBs) with central channels that can be altered predictably to vary their sizes, shapes and chemistries. The channels accommodate environment-sensitive dyes that fluoresce upon binding. Challenging arrays of dye-loaded barrels with analytes causes differential fluorophore displacement. The resulting fluorimetric fing...
The past decade has seen great interest concerning the development of artificial sensing devices; mo...
A strategy for peptides selection, suitable for gas sensors arrays, is presented. Peptide selection ...
Biological olfactory systems show high sensitivity and exquisite discriminatory capacity to odorants...
Differential sensing attempts to mimic the mammalian senses of smell and taste to identify analytes ...
textIn the field of supramolecular chemistry a common goal is to design a receptor that is highly s...
The development of a miniaturized sensing platform for the selective detection of chemical odorants ...
A crucial bottleneck in membrane protein studies, particularly G-protein coupled receptors, is the n...
A crucial bottleneck in membrane protein studies, particularly G-protein coupled receptors, is the n...
Molecular biomimetics is an emerging field in which the tools of molecular biology and nanotechnolog...
Electronic noses mimic smell and taste senses by using sensor arrays to assess complex samples and t...
Detection and monitoring of volatiles is a challenging and fascinating issue in environmental analys...
Sensor arrays allow for discrimination of analytes using a set of supramolecular hosts via different...
A strategy for peptides selection, suitable for gas sensors arrays, is presented. Peptide selection ...
This feature article offers a comprehensive account of a decade of research devoted to the combinati...
A semi-combinatorial virtual approach was used to prepare peptide-based gas sensors with binding pro...
The past decade has seen great interest concerning the development of artificial sensing devices; mo...
A strategy for peptides selection, suitable for gas sensors arrays, is presented. Peptide selection ...
Biological olfactory systems show high sensitivity and exquisite discriminatory capacity to odorants...
Differential sensing attempts to mimic the mammalian senses of smell and taste to identify analytes ...
textIn the field of supramolecular chemistry a common goal is to design a receptor that is highly s...
The development of a miniaturized sensing platform for the selective detection of chemical odorants ...
A crucial bottleneck in membrane protein studies, particularly G-protein coupled receptors, is the n...
A crucial bottleneck in membrane protein studies, particularly G-protein coupled receptors, is the n...
Molecular biomimetics is an emerging field in which the tools of molecular biology and nanotechnolog...
Electronic noses mimic smell and taste senses by using sensor arrays to assess complex samples and t...
Detection and monitoring of volatiles is a challenging and fascinating issue in environmental analys...
Sensor arrays allow for discrimination of analytes using a set of supramolecular hosts via different...
A strategy for peptides selection, suitable for gas sensors arrays, is presented. Peptide selection ...
This feature article offers a comprehensive account of a decade of research devoted to the combinati...
A semi-combinatorial virtual approach was used to prepare peptide-based gas sensors with binding pro...
The past decade has seen great interest concerning the development of artificial sensing devices; mo...
A strategy for peptides selection, suitable for gas sensors arrays, is presented. Peptide selection ...
Biological olfactory systems show high sensitivity and exquisite discriminatory capacity to odorants...