logo
Loading...
2D printed multicellular devices performing digital and analogue computation

Engineering and Technology

2D printed multicellular devices performing digital and analogue computation

S. Mogas-díez, E. Gonzalez-flo, et al.

This exciting study by Sira Mogas-Díez, Eva Gonzalez-Flo, and Javier Macía reveals a groundbreaking methodology for creating printable cellular devices. These devices, constructed with innovative 2D printing techniques, utilize a biological signal to modulate circuit information, demonstrating the potential for industrial production of cellular circuits for various applications.... show more
Abstract
Much effort has been expended on building cellular computational devices for different applications. Despite the significant advances, there are still several addressable restraints to achieve the necessary technological transference. These improvements will ease the development of end-user applications working out of the lab. In this study, we propose a methodology for the construction of printable cellular devices, digital or analogue, for different purposes. These printable devices are designed to work in a 2D surface, in which the circuit information is encoded in the concentration of a biological signal, the so-called carrying signal. This signal diffuses through the 2D surface and thereby interacts with different device components. These components are distributed in a specific spatial arrangement and perform the computation by modulating the level of the carrying signal in response to external inputs, determining the final output. For experimental validation, 2D cellular circuits are printed on a paper surface by using a set of cellular inks. As a proof-of-principle, we have printed and analysed both digital and analogue circuits using the same set of cellular inks but with different spatial topologies. The proposed methodology can open the door to a feasible and reliable industrial production of cellular circuits for multiple applications.
Publisher
Nature Communications
Published On
Mar 15, 2021
Authors
Sira Mogas-Díez, Eva Gonzalez-Flo, Javier Macía
Tags
cellular devices
printable technology
biological signal
2D printing
circuit information
industrial production
analogue circuits
Listen, Learn & Level Up
Over 10,000 hours of research content in 25+ fields, available in 12+ languages.
No more digging through PDFs, just hit play and absorb the world's latest research in your language, on your time.
listen to research audio papers with researchbunny