Mimicking the native extracellular matrix (ECM) as a cell culture scaffold has long attracted scientists from the perspective of supramolecular chemistry for potential application in regenerative medicine. However, the development of the next-generation synthetic materials that mimic key aspects of ECM, with hierarchically oriented supramolecular structures, which are simultaneously highly dynamic and responsive to external stimuli, remains a major challenge. Herein, we present supramolecular assemblies formed by motor amphiphiles (MAs), which mimic the structural features of the hydrogel nature of the ECM and additionally show intrinsic dynamic behavior that allow amplifying molecular motions to macroscopic muscle-like actuating functions ...
Stem cell behavior is strongly influenced by the physical and chemical cues originating from the ext...
The development of stimulus-responsive polymeric materials is of great importance, especially for th...
The cooperative operation of artificial molecular motors and switches has been amplified in polymer-...
Mimicking the native extracellular matrix (ECM) as a cell culture scaffold has long attracted scient...
A striking feature of living systems is their ability to produce motility by amplification of collec...
Our research focuses on the use of skeletal muscle as a power source for soft robotic biological mac...
Three-dimensional organized unidirectionally aligned and responsive supramolecular structures have m...
Extracellular matrix (ECM) is composed of many types of fibrous structural proteins and glycosaminog...
Three-dimensional organized unidirectionally aligned and responsive supramolecular structures have m...
Many physiochemical properties of the extracellular matrix (ECM) of muscle tissues, such as nanomete...
Light responsive shape-changing polymers are able to mimic the function of biological muscles accomp...
The success of skeletal muscle reconstruction depends on finding the most effective, clinically suit...
Stem cell behavior is strongly influenced by the physical and chemical cues originating from the ext...
The development of stimulus-responsive polymeric materials is of great importance, especially for th...
The cooperative operation of artificial molecular motors and switches has been amplified in polymer-...
Mimicking the native extracellular matrix (ECM) as a cell culture scaffold has long attracted scient...
A striking feature of living systems is their ability to produce motility by amplification of collec...
Our research focuses on the use of skeletal muscle as a power source for soft robotic biological mac...
Three-dimensional organized unidirectionally aligned and responsive supramolecular structures have m...
Extracellular matrix (ECM) is composed of many types of fibrous structural proteins and glycosaminog...
Three-dimensional organized unidirectionally aligned and responsive supramolecular structures have m...
Many physiochemical properties of the extracellular matrix (ECM) of muscle tissues, such as nanomete...
Light responsive shape-changing polymers are able to mimic the function of biological muscles accomp...
The success of skeletal muscle reconstruction depends on finding the most effective, clinically suit...
Stem cell behavior is strongly influenced by the physical and chemical cues originating from the ext...
The development of stimulus-responsive polymeric materials is of great importance, especially for th...
The cooperative operation of artificial molecular motors and switches has been amplified in polymer-...