This study describes an actuated bioreactor which mimics the pulsatile contractile motion of the intestinal barrier using electro-responsive elastomers as smart materials that undergo deformation upon electrical stimulation. The device consists of an annular dielectric elastomer actuator working as a radial artificial muscle able to rhythmically contract and relax a central cell culture well. The bioreactor maintained up to 4 h of actuation at a frequency of 0.15 Hz and a strain of 8%-10%, to those of the cyclic contraction and relaxation of the small intestine. In vitro tests demonstrated that the device was biocompatible and cell-adhesive for Caco-2 cells, which formed a confluent monolayer following 21 days of culture in the central well...
Cellular biology is a promising field of application for dielectric elastomer actuators (DEAs) given...
Electroactive polymers (EAPs) consist of synthetic materials capable of changing dimensions and/or s...
The human gut microbiota (HGM) is a vast and complex community of microorganisms that inhabits the d...
This study describes an actuated bioreactor which mimics the pulsatile contractile motion of the int...
Using in vitro cell cultures to study organ-level behavior is a directly scalable and robust approac...
Physiologically relevant in vitro models of stretchable biological tissues, such as muscle, lung, ca...
We demonstrate the use of dielectric elastomer actuators (DEAs) for mechanical stimulation of cells ...
Physiologically relevant in vitro models of stretchable biological tissues, such as muscle, lung, ca...
After myocardial infarction, the implantation of stem cell seeded scaffolds on the ischemic zone rep...
We demonstrate the use of dielectric elastomer actuators (DEAs) for mechanical stimulation of cells ...
After myocardial infarction, the implantation of stem cell seeded scaffolds on the ischemic zone rep...
This paper presents a bio-inspired, dielectric elastomer (DE) based tubular pumping unit, developed ...
Cell behavior in vitro can be regulated by mechanical stimulation. Cytostretch is an Organ-on-Chip (...
Cells residing in the cardiac niche are constantly experiencing physical stimuli, including electric...
The construction of tissue-engineered parts such as heart valves and arteries requires more than jus...
Cellular biology is a promising field of application for dielectric elastomer actuators (DEAs) given...
Electroactive polymers (EAPs) consist of synthetic materials capable of changing dimensions and/or s...
The human gut microbiota (HGM) is a vast and complex community of microorganisms that inhabits the d...
This study describes an actuated bioreactor which mimics the pulsatile contractile motion of the int...
Using in vitro cell cultures to study organ-level behavior is a directly scalable and robust approac...
Physiologically relevant in vitro models of stretchable biological tissues, such as muscle, lung, ca...
We demonstrate the use of dielectric elastomer actuators (DEAs) for mechanical stimulation of cells ...
Physiologically relevant in vitro models of stretchable biological tissues, such as muscle, lung, ca...
After myocardial infarction, the implantation of stem cell seeded scaffolds on the ischemic zone rep...
We demonstrate the use of dielectric elastomer actuators (DEAs) for mechanical stimulation of cells ...
After myocardial infarction, the implantation of stem cell seeded scaffolds on the ischemic zone rep...
This paper presents a bio-inspired, dielectric elastomer (DE) based tubular pumping unit, developed ...
Cell behavior in vitro can be regulated by mechanical stimulation. Cytostretch is an Organ-on-Chip (...
Cells residing in the cardiac niche are constantly experiencing physical stimuli, including electric...
The construction of tissue-engineered parts such as heart valves and arteries requires more than jus...
Cellular biology is a promising field of application for dielectric elastomer actuators (DEAs) given...
Electroactive polymers (EAPs) consist of synthetic materials capable of changing dimensions and/or s...
The human gut microbiota (HGM) is a vast and complex community of microorganisms that inhabits the d...