Take a look at Claudia's latest work, which deciphers the interactions between functionalized silica nanoparticles and intestinal barrier components!
Small Science - Wiley Online Library https://t.co/N8Gs6TY70Q
See our most recent work on sugar-modified silica particles!
MANNosylation of Mesoporous Silica Nanoparticles Modifies TLR4 Localization and NF‐κB Translocation in T24 Bladder Cancer Cells - Hohagen - Advanced Healthcare Materials - Wiley Online Library https://t.co/xw6rwYFZxz
Recently we were interviewed on our research with nanoporous silica. You can read all about this fascinating and versatile material, its relevance for the world and how it's utilized in our research in the article below (in German).
https://t.co/n7yY7eVUzG
The latest issue of Nano Letters is live! On the cover: "Morphology-Dependent Interaction of Silica Nanoparticles with Intestinal Cells: Connecting Shape to Barrier Function"
Learn more: https://t.co/vnbS4vmhJD
Simply silica, when structured adequately, can be an excellent sorbent for efficient recovery of Scandium!
Powdered Hierarchically Porous Silica Monoliths for the Selective Extraction of Scandium | ACS Sustainable Chemistry & Engineering https://t.co/VS2VNi5s8u
Final version on-line since 23rd of August, if you missed it. With a nice cover artwork! Some new insight into the interactions between mesoporous silica nanocarriers and intestinal barrier components, as a function of particle size and shape.
https://t.co/tFDqy1690j
Our latest work on mesoporous silica nanoparticles! It took some time, but it is finally out in Nano Letters!
Morphology-Dependent Interaction of Silica Nanoparticles with Intestinal Cells: Connecting Shape to Barrier Function | Nano Letters https://t.co/tFDqy1690j