Wissenschaftler*innen der #UniStuttgart haben eine synthetisch-biologische Toolbox für die Manipulation von #Zellen entwickelt, die den Transport von großen therapeutischen Molekülen in einzelne Zellen ermöglicht.
👉 https://www.uni-stuttgart.de/universitaet/aktuelles/meldungen/Neues-Werkzeug-fuer-die-synthetische-Biologie/
#Biologie
#NatureMaterials

Neues Werkzeug für die synthetische Biologie | News | 13.01.2025 | Universität Stuttgart
DNA-Nanoroboter, die künstliche Zellen verändern können
2-dimensional monopole research:
Revealing emergent magnetic charge in an antiferromagnet with diamond quantum magnetometry; Anthony K. C. Tan et al, 2023 Dec 5
https://www.nature.com/articles/s41563-023-01737-4
#naturematerials #monopole

Revealing emergent magnetic charge in an antiferromagnet with diamond quantum magnetometry - Nature Materials
Diamond quantum magnetometry is utilized to directly read the vorticity of antiferromagnetic spin textures through coupled multi-polar emergent magnetic charge distributions.
NatureMy latest for UChicago Pritzer School of #MolecularEngineering: A "mix and match" design platform points toward new combos of self-assembling #polymers for #semiconductor #lithography-- a critical step in shrinking #transistors. #NatureMaterials
“We developed a platform where we can mix and match different components of these #materials to give us the properties we want for specific applications. I think this will have a tremendous impact in this field...” -Paul Nealey
https://pme.uchicago.edu/news/mix-and-match-lithography-paves-way-new-semiconductor-materials

‘Mix and match’ lithography paves the way for new semiconductor materials
A high-throughput research platform lets researchers screen the properties of different combinations of self-assembling block polymers.