Publications
2020
Cellular locomotion using environmental topography
Reversat, A., Gaertner, F., Merrin, J., Stopp, J., Tasciyan, S., Aguilera, J., . . . Sixt, M. (2020). Cellular locomotion using environmental topography. NATURE, 582(7813), 582-+. doi:10.1038/s41586-020-2283-z
2019
Adhesion-free cell migration by topography-based force transduction
Modeling adhesion-independent cell migration
Jankowiak, G., Peurichard, D., Reversat, A., Schmeiser, C., & Sixt, M. (2020). Modeling adhesion-independent cell migration. MATHEMATICAL MODELS & METHODS IN APPLIED SCIENCES, 30(3), 513-537. doi:10.1142/S021820252050013X
Modelling adhesion-independent cell migration
2018
IgM's exit route
Reversat, A., & Sixt, M. (2018). IgM's exit route. JOURNAL OF EXPERIMENTAL MEDICINE, 215(12), 2959-2961. doi:10.1084/jem.20181934
Micro-engineered "pillar forests" to study cell migration in complex but controlled 3D environments
Renkawitz, J., Reversat, A., Leithner, A., Merrin, J., & Sixt, M. (2018). Micro-engineered "pillar forests" to study cell migration in complex but controlled 3D environments. In MICROFLUIDICS IN CELL BIOLOGY, PT B: MICROFLUIDICS IN SINGLE CELLS (Vol. 147, pp. 79-91). doi:10.1016/bs.mcb.2018.07.004
2017
Cytokinesis in vertebrate cells initiates by contraction of an equatorial actomyosin network composed of randomly oriented filaments
Spira, F., Cuylen-Haering, S., Mehta, S., Samwer, M., Reversat, A., Verma, A., . . . Gerlich, D. W. (2017). Cytokinesis in vertebrate cells initiates by contraction of an equatorial actomyosin network composed of randomly oriented filaments. ELIFE, 6. doi:10.7554/eLife.30867
Dendritic Cells Interpret Haptotactic Chemokine Gradients in a Manner Governed by Signal-to-Noise Ratio and Dependent on GRK6
Schwarz, J., Bierbaum, V., Vaahtomeri, K., Hauschild, R., Brown, M., de Vries, I., . . . Sixt, M. (2017). Dendritic Cells Interpret Haptotactic Chemokine Gradients in a Manner Governed by Signal-to-Noise Ratio and Dependent on GRK6. CURRENT BIOLOGY, 27(9), 1314-1325. doi:10.1016/j.cub.2017.04.004
2016
Diversified actin protrusions promote environmental exploration but are dispensable for locomotion of leukocytes
Leithner, A., Eichner, A., Mueller, J., Reversat, A., Brown, M., Schwarz, J., . . . Sixt, M. (2016). Diversified actin protrusions promote environmental exploration but are dispensable for locomotion of leukocytes. NATURE CELL BIOLOGY, 18(11), 1253-+. doi:10.1038/ncb3426
Geometrically complex microfluidic devices for the study of cell migration
Leithner, A., Leithner, A., Merrin, J., Reversat, A., & Sixt, M. (n.d.). Geometrically complex microfluidic devices for the study of cell migration. Protocol Exchange. doi:10.1038/protex.2016.063
2015
Polarity protein Par3 controls B-cell receptor dynamics and antigen extraction at the immune synapse
Reversat, A., Yuseff, M. -I., Lankar, D., Malbec, O., Obino, D., Maurin, M., . . . Lennon-Dumenil, A. -M. (2015). Polarity protein Par3 controls B-cell receptor dynamics and antigen extraction at the immune synapse. MOLECULAR BIOLOGY OF THE CELL, 26(7), 1273-1285. doi:10.1091/mbc.E14-09-1373
2014
Morphodynamic analysis of T lymphocyte migration in confined microenvironments.
Reversat, A., Buggenthin, F., Merrin, J., Leithner, A., de Vries, I., Theis, F., . . . Sixt, M. (2014). Morphodynamic analysis of T lymphocyte migration in confined microenvironments.. Poster session presented at the meeting of Unknown Conference. Retrieved from https://www.webofscience.com/
2013
How B cells capture, process and present antigens: a crucial role for cell polarity
Yuseff, M. -I., Pierobon, P., Reversat, A., & Lennon-Dumenil, A. -M. (2013). How B cells capture, process and present antigens: a crucial role for cell polarity. NATURE REVIEWS IMMUNOLOGY, 13(7), 475-486. doi:10.1038/nri3469
2011
Polarized Secretion of Lysosomes at the B Cell Synapse Couples Antigen Extraction to Processing and Presentation
Yuseff, M. -I., Reversat, A., Lankar, D., Diaz, J., Fanget, I., Pierobon, P., . . . Lennon-Dumenil, A. -M. (2011). Polarized Secretion of Lysosomes at the B Cell Synapse Couples Antigen Extraction to Processing and Presentation. IMMUNITY, 35(3), 361-374. doi:10.1016/j.immuni.2011.07.008