Super-resolution microscopy with DNA-PAINT J Schnitzbauer, MT Strauss, T Schlichthaerle, F Schueder, R Jungmann Nature protocols 12 (6), 1198-1228, 2017 | 942 | 2017 |
The nucleolus functions as a phase-separated protein quality control compartment F Frottin, F Schueder, S Tiwary, R Gupta, R Körner, T Schlichthaerle, ... Science 365 (6451), 342-347, 2019 | 462 | 2019 |
The ALFA-tag is a highly versatile tool for nanobody-based bioscience applications H Götzke, M Kilisch, M Martínez-Carranza, S Sograte-Idrissi, A Rajavel, ... Nature communications 10 (1), 4403, 2019 | 407 | 2019 |
Polyhedra self-assembled from DNA tripods and characterized with 3D DNA-PAINT R Iinuma, Y Ke, R Jungmann, T Schlichthaerle, JB Woehrstein, P Yin science 344 (6179), 65-69, 2014 | 387 | 2014 |
Scaffolding protein functional sites using deep learning J Wang, S Lisanza, D Juergens, D Tischer, JL Watson, KM Castro, ... Science 377 (6604), 387-394, 2022 | 338 | 2022 |
Ångström-resolution fluorescence microscopy SCM Reinhardt, LA Masullo, I Baudrexel, PR Steen, R Kowalewski, ... Nature 617 (7962), 711-716, 2023 | 170 | 2023 |
Fast, background-free DNA-PAINT imaging using FRET-based probes A Auer, MT Strauss, T Schlichthaerle, R Jungmann Nano letters 17 (10), 6428-6434, 2017 | 124 | 2017 |
Direct visualization of single nuclear pore complex proteins using genetically‐encoded probes for DNA‐PAINT T Schlichthaerle, MT Strauss, F Schueder, A Auer, B Nijmeijer, ... Angewandte Chemie 131 (37), 13138-13142, 2019 | 100 | 2019 |
DNA origami demonstrate the unique stimulatory power of single pMHCs as T-cell antigens J Hellmeier, R Platzer, A Eklund, T Schlichthaerle, GJ Schuetz, ... Biophysical Journal 120 (3), 330a, 2021 | 99 | 2021 |
Universal super‐resolution multiplexing by DNA exchange F Schueder, MT Strauss, D Hoerl, J Schnitzbauer, T Schlichthaerle, ... Angewandte Chemie International Edition 56 (14), 4052-4055, 2017 | 97 | 2017 |
Circumvention of common labelling artefacts using secondary nanobodies S Sograte-Idrissi, T Schlichthaerle, CJ Duque-Afonso, M Alevra, S Strauss, ... Nanoscale 12 (18), 10226-10239, 2020 | 85 | 2020 |
Site‐specific labeling of affimers for DNA‐PAINT microscopy T Schlichthaerle, AS Eklund, F Schueder, MT Strauss, C Tiede, A Curd, ... Angewandte Chemie International Edition 57 (34), 11060-11063, 2018 | 79 | 2018 |
The centrosome protein AKNA regulates neurogenesis via microtubule organization G Camargo Ortega, S Falk, PA Johansson, E Peyre, L Broix, SK Sahu, ... Nature 567 (7746), 113-117, 2019 | 78 | 2019 |
Direct induction of microtubule branching by microtubule nucleation factor SSNA1 N Basnet, H Nedozralova, AH Crevenna, S Bodakuntla, T Schlichthaerle, ... Nature cell biology 20 (10), 1172-1180, 2018 | 73 | 2018 |
Comparison of small animal CT contrast agents JG Mannheim, T Schlichthaerle, L Kuebler, L Quintanilla‐Martinez, ... Contrast media & molecular imaging 11 (4), 272-284, 2016 | 53 | 2016 |
DNA nanotechnology and fluorescence applications T Schlichthaerle, MT Strauss, F Schueder, JB Woehrstein, R Jungmann Current opinion in biotechnology 39, 41-47, 2016 | 53 | 2016 |
Site-Specifically-Labeled Antibodies for Super-Resolution Microscopy Reveal In Situ Linkage Errors SM Früh, U Matti, PR Spycher, M Rubini, S Lickert, T Schlichthaerle, ... ACS nano 15 (7), 12161-12170, 2021 | 52 | 2021 |
Quantitative single-protein imaging reveals molecular complex formation of integrin, talin, and kindlin during cell adhesion LS Fischer, C Klingner, T Schlichthaerle, MT Strauss, R Böttcher, ... Nature communications 12 (1), 919, 2021 | 45 | 2021 |
Nanometer‐scale Multiplexed Super‐Resolution Imaging with an Economic 3D‐DNA‐PAINT Microscope A Auer, T Schlichthaerle, JB Woehrstein, F Schueder, MT Strauss, ... ChemPhysChem 19 (22), 3024-3034, 2018 | 45 | 2018 |
Super-resolution imaging and estimation of protein copy numbers at single synapses with DNA-point accumulation for imaging in nanoscale topography C Böger, AS Hafner, T Schlichthärle, MT Strauss, S Malkusch, ... Neurophotonics 6 (3), 035008-035008, 2019 | 34 | 2019 |