Enzymes regulate complex functions and active behavior in natural systems and have shown increasing prospect for developing self-regulating soft matter systems. Striving for advanced autonomous hydrogel materials with fully programmable, self-regulated life cycles, we combine two enzymes with an antagonistic pH-modulating effect in a feedback-controlled biocatalytic reaction network (BRN) and couple it to pH-responsive DNA hydrogels to realize hydrogel systems with distinct preprogrammable lag times and lifetimes in closed systems. The BRN enables precise and orthogonal internal temporal control of the “ON” and “OFF” switching times of the temporary gel state by modulation of programmable, nonlinear pH changes. The time scales are tunable b...
It remains challenging to program soft materials to show dynamic, tunable time-dependent properties....
It remains challenging to program soft materials to show dynamic, tunable time-dependent properties....
The circadian rhythm generates out-of-equilibrium metabolite oscillations controlled by feedback loo...
Enzymes regulate complex functions and active behavior in natural systems and have shown increasing ...
The forthcoming generation of soft materials will be designed to autonomously adapt to their environ...
Naturally occurring systems have the ability to self-regulate, which plays a key role in their struc...
Naturally occurring systems have the ability to self-regulate, which plays a key role in their struc...
Here we present the development of self-regulated “breathing” polymersome nanoreactors that show tem...
Here we present the development of self-regulated “breathing” polymersome nanoreactors that show tem...
Naturally occurring systems have the ability to self-regulate, which plays a key role in their struc...
Naturally occurring systems have the ability to self-regulate, which plays a key role in their struc...
Here we present the development of self-regulated “breathing” polymersome nanoreactors that show tem...
Here we present the development of self-regulated “breathing” polymersome nanoreactors that show tem...
Naturally occurring systems have the ability to self-regulate, which plays a key role in their struc...
\u3cbr/\u3e\u3cbr/\u3eHere we present the development of self-regulated “breathing” polymersome nano...
It remains challenging to program soft materials to show dynamic, tunable time-dependent properties....
It remains challenging to program soft materials to show dynamic, tunable time-dependent properties....
The circadian rhythm generates out-of-equilibrium metabolite oscillations controlled by feedback loo...
Enzymes regulate complex functions and active behavior in natural systems and have shown increasing ...
The forthcoming generation of soft materials will be designed to autonomously adapt to their environ...
Naturally occurring systems have the ability to self-regulate, which plays a key role in their struc...
Naturally occurring systems have the ability to self-regulate, which plays a key role in their struc...
Here we present the development of self-regulated “breathing” polymersome nanoreactors that show tem...
Here we present the development of self-regulated “breathing” polymersome nanoreactors that show tem...
Naturally occurring systems have the ability to self-regulate, which plays a key role in their struc...
Naturally occurring systems have the ability to self-regulate, which plays a key role in their struc...
Here we present the development of self-regulated “breathing” polymersome nanoreactors that show tem...
Here we present the development of self-regulated “breathing” polymersome nanoreactors that show tem...
Naturally occurring systems have the ability to self-regulate, which plays a key role in their struc...
\u3cbr/\u3e\u3cbr/\u3eHere we present the development of self-regulated “breathing” polymersome nano...
It remains challenging to program soft materials to show dynamic, tunable time-dependent properties....
It remains challenging to program soft materials to show dynamic, tunable time-dependent properties....
The circadian rhythm generates out-of-equilibrium metabolite oscillations controlled by feedback loo...