Abstract Biohybrid artificial muscle produced by integrating living muscle cells and their scaffolds with free movement in vivo is promising for advanced biomedical applications, including cell-based microrobotic systems and therapeutic drug delivery systems. Herein, we provide a biohybrid artificial muscle constructed by integrating living muscle cells and their scaffolds, inspired by bundled myofilaments in skeletal muscle. First, a bundled biohybrid artificial muscle was fabricated by the integration of skeletal muscle cells and hydrophilic polyurethane (HPU)/carbon nanotube (CNT) nanofibers into a fiber shape similar to that of natural skeletal muscle. The HPU/CNT nanofibers provided a stretchable basic backbone of the 3-dimensional fib...
Generating skeletal muscle tissue which mimics the cellular alignment, maturation and function of na...
<p>Skeletal muscle is a scalable actuator system used throughout nature from the millimeter to meter...
Programming materials with tunable physical and chemical interactions among its components pave the ...
The engineering of skeletal muscle requires platforms that facilitate the proliferation and maintena...
Designing scaffolds that can mimic native skeletal muscle tissue and induce 3D cellular alignment an...
Skeletal muscles are considered to date the best existing actuator in nature thanks to their hierarc...
Recreating native microenvironment and providing appropriate guidance cues are instrumental in the d...
Combining biological components, such as cells and tissues, with soft robotics can enable the fabric...
Tissue engineering of skeletal muscle has been proposed as a potential regenerative treatment for ex...
The development of new, viable, and functional engineered tissue is a complex and challenging task. ...
To create life-like movements, living muscle actuator technologies have borrowed inspiration from bi...
Nowadays, one of the most ambitious challenges in soft robotics is the development of actuators capa...
Artificial muscle fiber mimicking myofibril is fabricated using electrospun nanofibers of high stren...
Advancements in the fields of tissue engineering, biomaterials, additive manufacturing, synthetic an...
The development of new, viable, and functional engineered tissue is a complex and challenging task. ...
Generating skeletal muscle tissue which mimics the cellular alignment, maturation and function of na...
<p>Skeletal muscle is a scalable actuator system used throughout nature from the millimeter to meter...
Programming materials with tunable physical and chemical interactions among its components pave the ...
The engineering of skeletal muscle requires platforms that facilitate the proliferation and maintena...
Designing scaffolds that can mimic native skeletal muscle tissue and induce 3D cellular alignment an...
Skeletal muscles are considered to date the best existing actuator in nature thanks to their hierarc...
Recreating native microenvironment and providing appropriate guidance cues are instrumental in the d...
Combining biological components, such as cells and tissues, with soft robotics can enable the fabric...
Tissue engineering of skeletal muscle has been proposed as a potential regenerative treatment for ex...
The development of new, viable, and functional engineered tissue is a complex and challenging task. ...
To create life-like movements, living muscle actuator technologies have borrowed inspiration from bi...
Nowadays, one of the most ambitious challenges in soft robotics is the development of actuators capa...
Artificial muscle fiber mimicking myofibril is fabricated using electrospun nanofibers of high stren...
Advancements in the fields of tissue engineering, biomaterials, additive manufacturing, synthetic an...
The development of new, viable, and functional engineered tissue is a complex and challenging task. ...
Generating skeletal muscle tissue which mimics the cellular alignment, maturation and function of na...
<p>Skeletal muscle is a scalable actuator system used throughout nature from the millimeter to meter...
Programming materials with tunable physical and chemical interactions among its components pave the ...