The biosensor community has long focused on achieving the lowest possible detection limits, with specificity (the ability to differentiate between closely similar target molecules) and sensitivity (the ability to differentiate between closely similar target concentrations) largely being relegated to secondary considerations and solved by the inclusion of cumbersome washing and dilution steps or via careful control experimental conditions. Nature, in contrast, cannot afford the luxury of washing and dilution steps, nor can she arbitrarily change the conditions (temperature, pH, ionic strength) under which binding occurs in the homeostatically maintained environment within the cell. This forces evolution to focus at least as much effort on ac...
Our ability to recreate complex biochemical mechanisms in designed, artificial systems provides a st...
The population-shift mechanism can be used for rational re-engineering of structure-switching biosen...
Control over the sensitivity with which biomolecular receptors respond to small changes in the conce...
The biosensor community has long focused on achieving the lowest possible detection limits, with sp...
Biomolecular recognition has long been an important theme in artificial sensing technologies. A curr...
Biomolecular recognition has long been an important theme in artificial sensing technologies. A curr...
Allosteric cooperativity, which nature uses to improve the sensitivity with which biomolecular recep...
To ensure maximum specificity (i.e., minimize cross -reactivity with structurally similar analogues ...
Because the ability to effectively detect and respond to subtle chemical cues is so crucial to biolo...
Allosteric cooperativity, which nature uses to improve the sensitivity with which biomolecular recep...
Allosteric cooperativity, which nature uses to improve the sensitivity with which biomolecular recep...
Our ability to recreate complex biochemical mechanisms in designed, artificial systems provides a st...
The population-shift mechanism can be used for rational re-engineering of structure-switching biosen...
Control over the sensitivity with which biomolecular receptors respond to small changes in the conce...
The biosensor community has long focused on achieving the lowest possible detection limits, with sp...
Biomolecular recognition has long been an important theme in artificial sensing technologies. A curr...
Biomolecular recognition has long been an important theme in artificial sensing technologies. A curr...
Allosteric cooperativity, which nature uses to improve the sensitivity with which biomolecular recep...
To ensure maximum specificity (i.e., minimize cross -reactivity with structurally similar analogues ...
Because the ability to effectively detect and respond to subtle chemical cues is so crucial to biolo...
Allosteric cooperativity, which nature uses to improve the sensitivity with which biomolecular recep...
Allosteric cooperativity, which nature uses to improve the sensitivity with which biomolecular recep...
Our ability to recreate complex biochemical mechanisms in designed, artificial systems provides a st...
The population-shift mechanism can be used for rational re-engineering of structure-switching biosen...
Control over the sensitivity with which biomolecular receptors respond to small changes in the conce...