Single cell force spectroscopy of T cells recognizing a myelin-derived peptide on antigen presenting cells.
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Joachim P Spatz | M. Hecker | J. Spatz | Y. Samstag | G. Hämmerling | G. Wabnitz | N. Garbi | Markus Hecker | Ilia Louban | Guido H Wabnitz | Yvonne Samstag | Ilia Louban | Günter J Hämmerling | Natalio Garbi | Sabrina Hoffmann | Babak H Hosseini | Nadja Bulbuc | S. Hoffmann | N. Bulbuc | B. H. Hosseini
[1] Michael Loran Dustin,et al. Force as a facilitator of integrin conformational changes during leukocyte arrest on blood vessels and antigen-presenting cells. , 2007, Immunity.
[2] D. Kioussis,et al. Low avidity recognition of self-antigen by T cells permits escape from central tolerance. , 1995, Immunity.
[3] G. Hämmerling,et al. Downmodulation of antigen presentation by H2‐O in B cell lines and primary B lymphocytes , 2003, European journal of immunology.
[4] V. Moy,et al. Force spectroscopy of the leukocyte function-associated antigen-1/intercellular adhesion molecule-1 interaction. , 2002, Biophysical journal.
[5] Cheng Zhu,et al. The kinetics of two dimensional TCR and pMHC interactions determine T cell responsiveness , 2010, Nature.
[6] Jens Friedrichs,et al. Revealing Early Steps of α2β1 Integrin-mediated Adhesion to Collagen Type I by Using Single-Cell Force Spectroscopy , 2007 .
[7] Judy Lieberman,et al. Numbers matter: quantitative and dynamic analysis of the formation of an immunological synapse using imaging flow cytometry. , 2009, Journal of immunological methods.
[8] D. Wraith,et al. Cross-reactive antigen recognition by an encephalitogenic T cell receptor. Implications for T cell biology and autoimmunity. , 1992, Journal of immunology.
[9] Daniel J. Muller,et al. Single-cell force spectroscopy , 2008, Journal of Cell Science.
[10] T. Springer,et al. Integrin structures and conformational signaling. , 2006, Current opinion in cell biology.
[11] D. Wraith,et al. Fine specificity of the myelin-reactive T cell repertoire: implications for TCR antagonism in autoimmunity. , 1998, Journal of immunology.
[12] M. Cahalan,et al. Close encounters of the first and second kind: T-DC and T-B interactions in the lymph node. , 2005, Seminars in immunology.
[13] Peter Friedl,et al. A spectrum of biophysical interaction modes between T cells and different antigen-presenting cells during priming in 3-D collagen and in vivo. , 2004, Blood.
[14] Daniel J. Muller,et al. A new technical approach to quantify cell-cell adhesion forces by AFM. , 2006, Ultramicroscopy.
[15] Y. Samstag,et al. Actin cytoskeletal dynamics in T lymphocyte activation and migration , 2003, Journal of leukocyte biology.
[16] Jason G. Cyster,et al. Imaging of Germinal Center Selection Events During Affinity Maturation , 2007, Science.
[17] Ulrich H. von Andrian,et al. Homing and cellular traffic in lymph nodes , 2003, Nature Reviews Immunology.
[18] Evan W. Newell,et al. TCR–peptide–MHC interactions in situ show accelerated kinetics and increased affinity , 2010, Nature.
[19] E. Evans,et al. Long-lived, high-strength states of ICAM-1 bonds to beta2 integrin, I: lifetimes of bonds to recombinant alphaLbeta2 under force. , 2010, Biophysical journal.
[20] Daniel J. Muller,et al. Studying Integrin-Mediated Cell Adhesion at the Single-Molecule Level Using AFM Force Spectroscopy , 2007, Science's STKE.
[21] K. McGrath,et al. Multispectral imaging of hematopoietic cells: where flow meets morphology. , 2008, Journal of immunological methods.
[22] Y. Samstag,et al. Dendritic cells control T cell tonic signaling required for responsiveness to foreign antigen , 2010, Proceedings of the National Academy of Sciences.
[23] Y. Samstag,et al. Sustained LFA‐1 cluster formation in the immune synapse requires the combined activities of L‐plastin and calmodulin , 2010, European journal of immunology.
[24] Daniel J. Muller,et al. Measuring cell adhesion forces of primary gastrulating cells from zebrafish using atomic force microscopy , 2005, Journal of Cell Science.
[25] R. Germain,et al. Information transfer at the immunological synapse , 2000, Current Biology.
[26] Long-lived, high-strength states of ICAM-1 bonds to beta2 integrin, II: lifetimes of LFA-1 bonds under force in leukocyte signaling. , 2010, Biophysical journal.
[27] Michael Loran Dustin,et al. Functional anatomy of T cell activation and synapse formation. , 2010, Annual review of immunology.
[28] Hermann E. Gaub,et al. Discrete interactions in cell adhesion measured by single-molecule force spectroscopy , 2000, Nature Cell Biology.
[29] S. Bromley,et al. The immunological synapse: a molecular machine controlling T cell activation. , 1999, Science.
[30] Lawrence Steinman,et al. Antigen recognition in autoimmune encephalomyelitis and the potential for peptide-mediated immunotherapy , 1989, Cell.
[31] Midhat H Abdulreda,et al. Force spectroscopy of LFA-1 and its ligands, ICAM-1 and ICAM-2. , 2006, Biomacromolecules.