| Tiny Organisms, Big Advantages: Exploring Membrane Damage Responses Using Dictyostelium discoideum in High-Throughput Single-Cell Analyses | Live Biological Imaging Across Scales |  | | 2026 | 15 | 0 |
|
| Photocatalytic Microenvironment Proteomics of Thiol-Mediated Uptake | JACS Au |  | | 2025 | 34 | 33 |
|
| Discovery of anti-infective compounds against Mycobacterium marinum after biotransformation of simple natural stilbene scaffolds by a fungal secretome | Frontiers |  | | 2024 | 123 | 66 |
|
| Discovery of anti-infective compounds against Mycobacterium marinum after biotransformation of simple natural stilbene scaffolds by a fungal secretome | |  | | 2024 | 18 | 130 |
|
| Inclusive Pattern Generation Protocols to Decode Thiol-Mediated Uptake | ACS central science |  | | 2024 | 160 | 148 |
|
| Antibody against apolipoprotein-A1, Metabolic-Associated Fatty Liver Diseaseand cardiovascular risk : a translational study | ESC (European Society of Cardiology) Congress 2023 | | | 2023 | 11 | 0 |
|
| Antibody against apolipoprotein-A1, non-alcoholic fatty liver disease and cardiovascular risk: a translational study | Journal of translational medicine |  | | 2023 | 147 | 178 |
|
| Toward a Traceless Tag for the Thiol‐Mediated Uptake of Proteins | ChemistryEurope |  | | 2023 | 168 | 204 |
|
| Inhibition of Cell Motility by Cell-Penetrating Dynamic Covalent Cascade Exchangers: Integrins Participate in Thiol-Mediated Uptake | JACS Au |  | | 2023 | 138 | 47 |
|
| Dynamic Covalent Michael Acceptors to Penetrate Cells: Thiol‐Mediated Uptake with Tetrel‐Centered Exchange Cascades, Assisted by Halogen‐Bonding Switches | Angewandte Chemie |  | | 2022 | 243 | 185 |
|
| Cyclic Thiosulfonates for Thiol-Mediated Uptake: Cascade Exchangers, Transporters, Inhibitors | JACS Au |  | | 2022 | 347 | 261 |
|
| Optochemical Control of Therapeutic Agents through Photocatalyzed Isomerization | Angewandte Chemie. International edition in English |  | | 2022 | 288 | 312 |
|
| Chemo‐ and Regioselective Multiple C(sp2)−H Insertions of Malonate Metal Carbenes for Late‐Stage Functionalizations of Azahelicenes | Angewandte Chemie. International edition in English |  | | 2022 | 261 | 378 |
|
| Oligonucleotide Phosphorothioates Enter Cells by Thiol‐Mediated Uptake | Angewandte Chemie: International Edition |  | | 2021 | 309 | 989 |
|
| Inhibition of Thiol‐Mediated Uptake with Irreversible Covalent Inhibitors | Helvetica Chimica Acta |  | | 2021 | 273 | 473 |
|
| Dithiolane quartets: thiol-mediated uptake enables cytosolic delivery in deep tissue | Chemical science |  | | 2021 | 266 | 189 |
|
| Inhibitors of thiol-mediated uptake | Chemical Science |  | | 2021 | 393 | 312 |
|
| Automated high-content imaging for cellular uptake, from the Schmuck cation to the latest cyclic oligochalcogenides | Beilstein Journal of Organic Chemistry |  | | 2020 | 545 | 175 |
|
| Cell-Penetrating Streptavidin: A General Tool for Bifunctional Delivery with Spatiotemporal Control, Mediated by Transport Systems Such as Adaptive Benzopolysulfane Networks | Journal of the American Chemical Society |  | | 2020 | 499 | 4 |
|
| Strain-Promoted Thiol-Mediated Cellular Uptake of Giant Substrates: Liposomes and Polymersomes | Angewandte Chemie |  | | 2017 | 597 | 440 |
|
| [4]Helicene-Squalene Fluorescent Nanoassemblies for Specific Targeting of Mitochondria in Live-Cell Imaging | Advanced Functional Materials |  | | 2017 | 626 | 921 |
|
| Selective Imaging of Late Endosomes with a pH-Sensitive Diazaoxatriangulene Fluorescent Probe | Journal of the American Chemical Society |  | | 2016 | 1,020 | 464 |
|