Here we show a general approach to achieve dissipative control over toehold-mediated strand-displacement, the most widely employed reaction in the field of DNA nanotechnology. The approach relies on rationally re-engineering the classic strand displacement reaction such that the high-energy invader strand (fuel) is converted into a low-energy waste product through an energy-dissipating reaction allowing the spontaneous return to the original state over time. We show that such dissipative control over the toehold-mediated strand displacement process is reversible (up to 10 cycles), highly controllable and enables unique temporal activation of DNA systems. We show here two possible applications of this strategy: the transient labelling of DNA...
DNA nanotechnology has emerged as a powerful tool to precisely design and control molecular circuits...
DNA nanotechnology has emerged as a powerful tool to precisely design and control molecular circuits...
Here, we demonstrate a strategy to rationally program a delayed onset of toehold-mediated DNA strand...
Here we show a general approach to achieve dissipative control over toehold-mediated strand-displace...
Here we show a general approach to achieve dissipative control over toehold-mediated strand-displace...
Here we show a general approach to achieve dissipative control over toehold-mediated strand-displace...
DNA nanotechnology has emerged as a powerful tool to precisely design and control molecular circuits...
DNA nanotechnology has emerged as a powerful tool to precisely design and control molecular circuits...
DNA nanotechnology has emerged as a powerful tool to precisely design and control molecular circuits...
Dynamic DNA nanotechnology, a subfield of DNA nanotechnology, is concerned with the study and applic...
Dynamic DNA nanotechnology, a subfield of DNA nanotechnology, is concerned with the study and applic...
DNA is increasingly being used as the engineering material of choice for the construction of nanosca...
Synthetic DNA has emerged as a powerful self-assembled material for the engineering of nanoscale sup...
Synthetic DNA has emerged as a powerful selfassembled material for the engineering of nanoscale supr...
The ability to finely tune reaction rates and binding energies between components has made DNA stran...
DNA nanotechnology has emerged as a powerful tool to precisely design and control molecular circuits...
DNA nanotechnology has emerged as a powerful tool to precisely design and control molecular circuits...
Here, we demonstrate a strategy to rationally program a delayed onset of toehold-mediated DNA strand...
Here we show a general approach to achieve dissipative control over toehold-mediated strand-displace...
Here we show a general approach to achieve dissipative control over toehold-mediated strand-displace...
Here we show a general approach to achieve dissipative control over toehold-mediated strand-displace...
DNA nanotechnology has emerged as a powerful tool to precisely design and control molecular circuits...
DNA nanotechnology has emerged as a powerful tool to precisely design and control molecular circuits...
DNA nanotechnology has emerged as a powerful tool to precisely design and control molecular circuits...
Dynamic DNA nanotechnology, a subfield of DNA nanotechnology, is concerned with the study and applic...
Dynamic DNA nanotechnology, a subfield of DNA nanotechnology, is concerned with the study and applic...
DNA is increasingly being used as the engineering material of choice for the construction of nanosca...
Synthetic DNA has emerged as a powerful self-assembled material for the engineering of nanoscale sup...
Synthetic DNA has emerged as a powerful selfassembled material for the engineering of nanoscale supr...
The ability to finely tune reaction rates and binding energies between components has made DNA stran...
DNA nanotechnology has emerged as a powerful tool to precisely design and control molecular circuits...
DNA nanotechnology has emerged as a powerful tool to precisely design and control molecular circuits...
Here, we demonstrate a strategy to rationally program a delayed onset of toehold-mediated DNA strand...