Using residual stress-based self-folding, a multielectrode shell wraps around primary heart cells and functions as an electrical shell-like recording device
Using residual stress-based self-folding, a multielectrode shell wraps around primary heart cells and functions as an electrical shell-like recording device
A cooperation between research and industry successfully improves resin-based 3D printing.
Self-healing of a phase change memory device with a metallic surfactant layer opens up new pathways in storage class memory.
Science fact catches up with science fiction: by exploiting magnetic levitation, biomanufacturing – creating living 3D structures – is now possible in zero gravity. Utkan Demirci discusses how this works.
Researchers investigated whether a spider silk protein developed in the laboratory could be suitable for engineering cardiac tissue.
Researchers in Barcelona have proposed a new mechanism for bone repair. They hope that the work might pave the way for advances in self-healing prostheses.
A plasma-treated polyethylene is used as as an affordable and easy mediator to produce enzymatic glucose sensors that could be used for diabetic patients.
An integrative approach of modeling and hydrogen-deuterium exchange helps to describe the enzyme that regulates glycogen levels in muscles and liver.
All articles of the recently published first issue of Advanced Theory and Simulations are freely available for a limited time
Bacteria trapped inside porous beads function as efficient living biocatalysts and can be assembled to perform preprogrammed sequences of reactions.