Nanocellulose Composites as Smart Devices With Chassis, Light-Directed DNA Storage, Engineered Electronic Properties, and Chip Integration

Author:

Bencurova Elena,Shityakov Sergey,Schaack Dominik,Kaltdorf Martin,Sarukhanyan Edita,Hilgarth Alexander,Rath Christin,Montenegro Sergio,Roth Günter,Lopez Daniel,Dandekar Thomas

Abstract

The rapid development of green and sustainable materials opens up new possibilities in the field of applied research. Such materials include nanocellulose composites that can integrate many components into composites and provide a good chassis for smart devices. In our study, we evaluate four approaches for turning a nanocellulose composite into an information storage or processing device: 1) nanocellulose can be a suitable carrier material and protect information stored in DNA. 2) Nucleotide-processing enzymes (polymerase and exonuclease) can be controlled by light after fusing them with light-gating domains; nucleotide substrate specificity can be changed by mutation or pH change (read-in and read-out of the information). 3) Semiconductors and electronic capabilities can be achieved: we show that nanocellulose is rendered electronic by iodine treatment replacing silicon including microstructures. Nanocellulose semiconductor properties are measured, and the resulting potential including single-electron transistors (SET) and their properties are modeled. Electric current can also be transported by DNA through G-quadruplex DNA molecules; these as well as classical silicon semiconductors can easily be integrated into the nanocellulose composite. 4) To elaborate upon miniaturization and integration for a smart nanocellulose chip device, we demonstrate pH-sensitive dyes in nanocellulose, nanopore creation, and kinase micropatterning on bacterial membranes as well as digital PCR micro-wells. Future application potential includes nano-3D printing and fast molecular processors (e.g., SETs) integrated with DNA storage and conventional electronics. This would also lead to environment-friendly nanocellulose chips for information processing as well as smart nanocellulose composites for biomedical applications and nano-factories.

Funder

Bayerisches Staatsministerium für Wissenschaft, Forschung und Kunst

Publisher

Frontiers Media SA

Subject

Biomedical Engineering,Histology,Bioengineering,Biotechnology

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1. How to make DNA data storage more applicable;Trends in Biotechnology;2024-01

2. Printing flexible thin-film transistors;Applied Physics Reviews;2023-09-01

3. Role of Nanocellulose in Light Harvesting and Artificial Photosynthesis;Catalysts;2023-06-08

4. DNA storage—from natural biology to synthetic biology;Computational and Structural Biotechnology Journal;2023

5. PRO-Simat: Protein network simulation and design tool;Computational and Structural Biotechnology Journal;2023

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