Here, we exploit a small biomolecule-ATP-to gain temporal control over chemical reactivity in a synthetic system composed of small self-assembling molecules and reactants. The approach relies on the capacity of ATP to template the formation of amphiphile-based assemblies. The presence of the enzyme alkaline phosphatase causes a gradual decrease in the ATP-concentration in time and, consequently, a spontaneous dissociation of the assemblies. The uptake of apolar reactants in the hydrophobic domain of the assemblies leads to an enhancement of the reaction rate. It is shown that ATP-triggered self-assembly causes the selective upregulation of one out of two hydrazone-bond formation reactions that take place concurrently in the system. This lea...
A fundamental difference exists in the way signal generation is dealt with in natural and synthetic ...
Autocatalysis has been extensively studied because it is central to the propagation of living system...
Many essential functions of living cells are performed by nanoscale protein motors. The best charact...
Here, we exploit a small biomolecule-ATP-to gain temporal control over chemical reactivity in a synt...
Nature uses self-assembly to construct structures and to carry out a variety of functions which are ...
Nature uses self-assembly to construct structures and to carry out a variety of functions which are ...
Dissipative self-assembly is exploited by nature to control important biological functions, such as ...
Precise control over specific functions in the time domain is ubiquitous in biological systems. Here...
An adenosine triphosphate (ATP)-fueled micellar system in the out-of-equilibrium state was construct...
The chemical reactivity of molecules can be significantly enhanced when they are trapped in a confin...
The forthcoming generation of soft materials will be designed to autonomously adapt to their environ...
\u3cp\u3eIn nature, dynamic processes are ubiquitous and often characterized by adaptive, transient ...
Dynamic self-assembly is of great interest in the fields of chemistry, physics and materials science...
The production of functional molecular architectures through self-assembly is commonplace in biology...
Autocatalysis has been extensively studied because it is central to the propagation of living system...
A fundamental difference exists in the way signal generation is dealt with in natural and synthetic ...
Autocatalysis has been extensively studied because it is central to the propagation of living system...
Many essential functions of living cells are performed by nanoscale protein motors. The best charact...
Here, we exploit a small biomolecule-ATP-to gain temporal control over chemical reactivity in a synt...
Nature uses self-assembly to construct structures and to carry out a variety of functions which are ...
Nature uses self-assembly to construct structures and to carry out a variety of functions which are ...
Dissipative self-assembly is exploited by nature to control important biological functions, such as ...
Precise control over specific functions in the time domain is ubiquitous in biological systems. Here...
An adenosine triphosphate (ATP)-fueled micellar system in the out-of-equilibrium state was construct...
The chemical reactivity of molecules can be significantly enhanced when they are trapped in a confin...
The forthcoming generation of soft materials will be designed to autonomously adapt to their environ...
\u3cp\u3eIn nature, dynamic processes are ubiquitous and often characterized by adaptive, transient ...
Dynamic self-assembly is of great interest in the fields of chemistry, physics and materials science...
The production of functional molecular architectures through self-assembly is commonplace in biology...
Autocatalysis has been extensively studied because it is central to the propagation of living system...
A fundamental difference exists in the way signal generation is dealt with in natural and synthetic ...
Autocatalysis has been extensively studied because it is central to the propagation of living system...
Many essential functions of living cells are performed by nanoscale protein motors. The best charact...