Researcher Portfolio

 
   

Lieberwirth, Ingo

Dept. Landfester: Physical Chemistry of Polymers, MPI for Polymer Research, Max Planck Society, MPI for Polymer Research, Max Planck Society  

 

Researcher Profile

 
Position: MPI for Polymer Research, Max Planck Society
Position: Dept. Landfester: Physical Chemistry of Polymers, MPI for Polymer Research, Max Planck Society
Researcher ID: https://pure.mpg.de/cone/persons/resource/persons48303

External references

 

Publications

 
  (1 - 25 of 58)
 : Brunner, C. M., Pietsch, L., vom Sondern, I., Röhrl, M., Popov, C., Trollmann, M. F., Taylor, R. W., Blessing, M., Holler, C., Almahayni, K., Jaeschke, S. O., Sandoghdar, V., Böckmann, R. A., Lindhorst, T. K., & Möckl, L. (2025). Bottom-up investigation of spatiotemporal glycocalyx dynamics with interferometric scattering microscopy. Journal of the American Chemical Society, 147, 32799-32808. doi:10.1021/jacs.5c08659. [PubMan] : George, B. M., Eleftheriou, M., Yankova, E., Perr, J., Chai, P., Nestola, G., Almahayni, K., Evans, S., Damaskou, A., Hemberger, H., Lebedenko, C. G., Rak, J., Yu, Q., Bapcum, E., Russell, J., Bagri, J., Volk, R. F., Spiekermann, M., Stone, R. M., Giotopoulos, G., Huntly, B. J. P., Baxter, J., Camargo, F., Liu, J., Zaro, B. W., Vassiliou, G. S., Möckl, L., de la Rosa, J., Flynn, R. A., & Tzelepis, K. (2025). Treatment of acute myeloid leukemia models by targeting a cell surface RNA-binding protein. Nature Biotechnology. doi:10.1038/s41587-025-02648-2. [PubMan] : Perr, J., Langen, A., Almahayni, K., Nestola, G., Chai, P., Lebedenko, C. G., Volk, R., Caldwell, R. M., Spiekermann, M., Hemberger, H., Bisaria, N., Aiba, T., Sánchez-Rivera, F. J., Tzelepis, K., Calo, E., Möckl, L., Zaro, B., & Flynn, R. A. (2025). RNA binding proteins and glycoRNAs form domains on the cell surface for cell penetrating peptide entry. Cell, 188, 1878-1895. doi:10.1016/j.cell.2025.01.040. [PubMan] : Fritsche, S., & Möckl, L. (2025). A framework for the simulation of individual glycan coordinates to analyze spatial relationships within the glycocalyx. Frontiers in Cell and Developmental Biology, 12. doi:10.3389/fcell.2024.1519831. [PubMan] : Rodríguez Mangues, C., Arlt, S., Möckl, L., & Krenn, M. (2024). Automated discovery of experimental designs in super-resolution microscopy with XLuminA. Nature Communications, 15: 10658. doi:10.1038/s41467-024-54696-y. [PubMan] : Almahayni, K., Bachir Salvador, J., Conti, R., Widera, A., Spiekermann, M., Wehner, D., Grützmacher, H., & Möckl, L. (2024). Tailored Bisacylphosphane Oxides for Precise Induction of Oxidative Stress-Mediated Cell Death in Biological Systems. ACS Chemical Biology, 20, 77-85. doi:10.1021/acschembio.4c00399. [PubMan] : Holler, C., Taylor, R. W., Schambony, A., Möckl, L., & Sandoghdar, V. (2024). A paintbrush for delivery of nanoparticles and molecules to live cells with precise spatiotemporal control. Nature Methods, 21, 512-520. doi:10.1038/s41592-024-02177-x. [PubMan] : Möckl, L., Almahayni, K., Bachir Salvador, J., Conti, R., Widera, A., Spiekermann, M., Wehner, D., & Grützmacher, H. (2024). A universal strategy to induce oxidative stress-mediated cell death in biological systems. Research Square 10.21203/rs.3.rs-3753893/v1. [PubMan] : Almahayni, K., Nestola, G., Spiekermann, M., & Möckl, L. (2023). Simple, Economic, and Robust Rail-Based Setup for Super-Resolution Localization Microscopy. The Journal of Physical Chemistry A, 127(20), 4553-4560. doi:10.1021/acs.jpca.3c01351. [PubMan] : Almahayni, K., & Möckl, L. (2023). Setting the stage for universal pharmacological targeting of the glycocalyx. In The Cardiovascular Glycocalyx in Health and Disease (pp. 61-88). Elsevier. [PubMan] : Roy, A. R., Wang, J., Han, M., Wang, H., Möckl, L., Zeng, L., Moerner, W. E., & Qi, L. S. (2023). Multicolor super-resolution imaging to study human coronavirus RNA during cellular infection. Biophysical Journal, 122(3): Supplement 1, 16A. doi:10.1016/j.bpj.2022.11.313. [PubMan] : Almahayni, K., Spiekermann, M., Fiore, A., Yu, G., Pedram, K., & Möckl, L. (2022). Small molecule inhibitors of mammalian glycosylation. Matrix Biology Plus, 16: 100108. doi:10.1016/j.mbplus.2022.100108. [PubMan] : Almahayni, K., Spiekermann, M., & Möckl, L. (2022). Fluorophores’ talk turns them dark. Nature Methods, 19, 932-933. doi:10.1038/s41592-022-01565-5. [PubMan] : Wang, J., Han, M., Roy, A. R., Wang, H., Möckl, L., Zeng, L., Moerner, W., & Qi, L. S. (2022). Multi-color super-resolution imaging to study human coronavirus RNA during cellular infection. Cell Reports Methods, 2(2). doi:10.1016/j.crmeth.2022.100170. [PubMan] : Yoshikawa, A. M., Rangel, A., Feagin, T., Chun, E. M., Wan, L., Li, A., Möckl, L., Wu, D., Eisenstein, M., Pitteri, S., & Soh, H. T. (2021). Discovery of indole-modified aptamers for highly specific recognition of protein glycoforms. Nature Communications, 12: 7106. doi:10.1038/s41467-021-26933-1. [PubMan] : Wisnovsky, S., Möckl, L., Malaker, S. A., Pedram, K., Hess, G. T., Riley, N. M., Gray, M. A., Smith, B. A. H., Bassik, M. C., Moerner, W. E., & Bertozzi, C. R. (2021). Genome-wide CRISPR screens reveal a specific ligand for the glycan-binding immune checkpoint receptor Siglec-7. Proceedings of the National Academy of Sciences of the United States of America, 118(5): e2015024118. doi:10.1073/pnas.2015024118. [PubMan] : Möckl, L., & Moerner, W. E. (2020). Super-resolution Microscopy with Single Molecules in Biology and Beyond–Essentials, Current Trends, and Future Challenges. Journal of the American Chemical Society, 142(42), 17828-17844. doi:10.1021/jacs.0c08178. [PubMan] : Debets, M. F., Tastan, O. Y., Wisnovsky, S. P., Malaker, S. A., Angelis, N., Möckl, L., Choi, J., Flynn, H., Wagner, L. J. S., Bineva-Todd, G., Antonopoulos, A., Cioce, A., Browne, W. M., Li, Z., Briggs, D. C., Douglas, H. L., Hess, G. T., Agbay, A. J., Roustan, C., Kjaer, S., Haslam, S. M., Snijders, A. P., Bassik, M. C., Moerner, W. E., Li, V. S. W., Bertozzi, C. R., & Schumann, B. (2020). Metabolic precision labeling enables selective probing of O-linked N-acetylgalactosamine glycosylation. Proceedings of the National Academy of Sciences of the United States of America, 117(41), 25293-25301. doi:10.1073/pnas.2007297117. [PubMan] : Evers, J., Herzog, C., & Möckl, L. (2020). From small Beginnings to steep Ascent The Fraunhofer Society. Chemie in unserer Zeit. doi:10.1002/ciuz.201900034. [PubMan] : Raddaoui, N., Croce, S., Geiger, F., Borodavka, A., Möckl, L., Stazzoni, S., Viverge, B., Braeuchle, C., Frischmuth, T., Engelke, H., & Carell, T. (2020). Supersensitive Multifluorophore RNA-FISH for Early Virus Detection and Flow-FISH by Using Click Chemistry. ChemBioChem, 21(15), 2214-2218. doi:10.1002/cbic.202000081. [PubMan] : Möckl, L. (2020). The Emerging Role of the Mammalian Glycocalyx in Functional Membrane Organization and Immune System Regulation. Frontiers in Cell and Developmental Biology, 8: 253. doi:10.3389/fcell.2020.00253. [PubMan] : Möckl, L., Roy, A. R., & Moerner, W. E. (2020). Deep learning in single-molecule microscopy: fundamentals, caveats, and recent developments [Invited]. Biomedical Optics Express, 11(3), 1633-1661. doi:10.1364/BOE.386361. [PubMan] : Möckl, L., Roy, A. R., Petrov, P. N., & Moerner, W. E. (2020). Accurate and rapid background estimation in single-molecule localization microscopy using the deep neural network BGnet. Proceedings of the National Academy of Sciences of the United States of America, 117(1), 60-67. doi:10.1073/pnas.1916219117. [PubMan] : Möckl, L., Petrov, P. N., & Moerner, W. E. (2019). Accurate phase retrieval of complex 3D point spread functions with deep residual neural networks. APPLIED PHYSICS LETTERS, 115(25): 251106. doi:10.1063/1.5125252. [PubMan] : Despras, G., Möckl, L., Heitmann, A., Stamer, I., Braeuchle, C., & Lindhorst, T. K. (2019). A Photoswitchable Trivalent Cluster Mannoside to Probe the Effects of Ligand Orientation in Bacterial Adhesion. ChemBioChem, 20(18), 2373-2382. doi:10.1002/cbic.201900269. [PubMan]