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MACC1 regulates clathrin-mediated endocytosis and receptor recycling of transferrin receptor and EGFR in colorectal cancer.
Imbastari, F. and Dahlmann, M. and Sporbert, A. and Ciolli Mattioli, C. and Mari, T. and Scholz, F. and Timm, L. and Twamley, S. and Migotti, R. and Walther, W. and Dittmar, G. and Rehm, A. and Stein, U.
Cellular and Molecular Life Sciences 78 (7): 3525-3542. April 2021

Fast, efficient and virus-free generation of TRAC-replaced CAR T cells.
Kath, J. and Du, W. and Thommandru, B. and Turk, R. and Amini, L. and Stein, M. and Zittel, T. and Martini, S. and Ostendorf, L. and Wilhelm, A. and Akyuez, L. and Rehm, A. and Hoepken, U.E. and Pruss, A. and Kuenkele, A. and Jacobi, A.M. and Volk, H.D. and Schmueck-Henneresse, M. and Reinke, P. and Wagner, D.L.
bioRxiv : 2021.02.14.431017. 14 February 2021

CXCR5 CAR-T cells simultaneously target B cell non-Hodgkin's lymphoma and tumor-supportive follicular T helper cells.
Bunse, M. and Pfeilschifter, J. and Bluhm, J. and Zschummel, M. and Joedicke, J.J. and Wirges, A. and Stark, H. and Kretschmer, V. and Chmielewski, M. and Uckert, W. and Abken, H. and Westermann, J. and Rehm, A. and Höpken, U.E.
Nature Communications 12 (1): 240. 11 January 2021


Angiogenesis in lymph nodes is a critical regulator of immune response and lymphoma growth.
Menzel, L. and Höpken, U.E. and Rehm, A.
Frontiers in Immunology 11 : 591741. 3 December 2020

The transcription factor C/EBPβ orchestrates dendritic cell maturation and functionality under homeostatic and malignant conditions.
Scholz, F. and Grau, M. and Menzel, L. and Graband, A. and Zapukhlyak, M. and Leutz, A. and Janz, M. and Lenz, G. and Rehm, A. and Höpken, U.E.
Proceedings of the National Academy of Sciences of the United States of America 117 (42): 26328-26339. 20 October 2020

Lymphoma angiogenesis is orchestrated by noncanonical signaling pathways.
Gloger, M. and Menzel, L. and Grau, M. and Vion, A.C. and Anagnostopoulos, I. and Zapukhlyak, M. and Gerlach, K. and Kammertöns, T. and Hehlgans, T. and Zschummel, M. and Lenz, G. and Gerhardt, H. and Höpken, U.E. and Rehm, A.
Cancer Research 80 (6): 1316-1329. March 2020


Targeting the tumor microenvironment of leukemia and lymphoma.
Höpken, U.E. and Rehm, A.
Trends in Cancer 5 (6): 351-364. June 2019


CAR T cells with enhanced sensitivity to B cell maturation antigen for the targeting of B cell non-Hodgkin's lymphoma and multiple myeloma.
Bluhm, J. and Kieback, E. and Marino, S.F. and Oden, F. and Westermann, J. and Chmielewski, M. and Abken, H. and Uckert, W. and Höpken, U.E. and Rehm, A.
Molecular Therapy 26 (8): 1906-1920. 1 August 2018


The splenic marginal zone shapes the phenotype of leukemia B cells and facilitates their niche-specific retention and survival.
Stache, V. and Verlaat, L. and Gätjen, M. and Heinig, K. and Westermann, J. and Rehm, A. and Höpken, U.E.
OncoImmunology 6 (6): e1323155. 6 June 2017

Rapid eradication of colon carcinoma by Clostridium perfringens Enterotoxin suicidal gene therapy.
Pahle, J. and Menzel, L. and Niesler, N. and Kobelt, D. and Aumann, J. and Rivera, M. and Walther, W.
BMC Cancer 17 (1): 129. 13 February 2017


Splenic marginal zone granulocytes acquire an accentuated neutrophil B cell-helper phenotype in chronic lymphocytic leukemia.
Gätjen, M. and Brand, F. and Grau, M. and Gerlach, K. and Kettritz, R. and Westermann, J. and Anagnostopoulos, I. and Lenz, P. and Lenz, G. and Höpken, U.E. and Rehm, A.
Cancer Research 76 (18): 5253-5265. 15 September 2016

Dysregulated development of IL-17-and IL-21-expressing follicular helper T cells and increased germinal center formation in the absence of RORγt.
Wichner, K. and Stauss, D. and Kampfrath, B. and Krüger, K. and Müller, G. and Rehm, A. and Lipp, M. and Höpken, U.E.
FASEB Journal 30 (2): 761-774. February 2016


Access to follicular dendritic cells is a pivotal step in murine chronic lymphocytic leukemia B cell activation and proliferation.
Heinig, K. and Gätjen, M. and Grau, M. and Stache, V. and Anagnostopoulos, I. and Gerlach, K. and Niesner, R.A. and Cseresnyes, Z. and Hauser, A.E. and Lenz, P. and Hehlgans, T. and Brink, R. and Westermann, J. and Dörken, B. and Lipp, M. and Lenz, G. and Rehm, A. and Höpken, U.E.
Cancer Discovery 4 : 1448-1465. December 2014


Homeostatic chemokines guide lymphoma cells to tumor growth-promoting niches within secondary lymphoid organs.
Höpken, U.E. and Rehm, A.
Journal of Molecular Medicine 90 (11): 1237-1245. November 2012


CCR7 deficiency causes ectopic lymphoid neogenesis and disturbed mucosal tissue integrity.
Höpken, U.E. and Wengner, A.M. and Loddenkemper, C. and Stein, H. and Heimesaat, M.M. and Rehm, A. and Lipp, M.
Blood 109 (3): 886-895. 1 February 2007


The ratio between dendritic cells and T cells determines the outcome of their encounter: Proliferation versus deletion.
Höpken, U.E. and Lehmann, I. and Droese, J. and Lipp, M. and Schueler, T. and Rehm, A.
European Journal of Immunology 35 (10): 2851-2863. 23 September 2005

EBAG9 adds a new layer of control on large dense-core vesicle exocytosis via interaction with Snapin.
Rueder, C. and Reimer, T. and Delgado-Martinez, I. and Hermosilla, R. and Engelsberg, A. and Nehring, R. and Doerken, B. and Rehm, A.
Molecular Biology of the Cell 16 (3): 1245-1257. 5 January 2005

Reevaluation of the 22-1-1 antibody and its putative antigen, EBAG9/RCAS1, as a tumor marker.
Reimer, T.A. and Anagnostopoulos, I. and Erdmann, B. and Lehmann, I. and Stein, H. and Daniel, P. and Doerken, B. and Rehm, A.
BMC Cancer 5 (1): 47. 1 January 2005


HCMV-encoded chemokine receptor US28 employs multiple routes for internalization.
Droese, J. and Mokros, T. and Hermosilla, R. and Schuelein, R. and Lipp, M. and Höpken, U.E. and Rehm, A.
Biochemical and Biophysical Research Communications 322 (1): 42-49. 10 September 2004


The Golgi protein RCAS1 controls cell surface expression of tumor-associated O-linked glycan antigens.
Engelsberg, A. and Hermosilla, R. and Karsten, U. and Schuelein, R. and Doerken, B. and Rehm, A.
Journal of Biological Chemistry 278 (25): 22998-23007. 1 January 2003


Human cytomegalovirus gene products US2 and US11 differ in their ability to attack major histocompatibility class I heavy chains in dendritic cells.
Rehm, A. and Engelsberg, A. and Tortorella, D. and Körner, I.J. and Lehmann, I. and Ploegh, H.L. and Höpken, U.E.
Journal of Virology 76 (10): 5043-5050. May 2002

Surface expression and endocytosis of the human cytomegalovirus-encoded chemokine receptor US28 is regulated by agonist-independent phosphorylation.
Mokros, T. and Rehm, A. and Droese, J. and Oppermann, M. and Lipp, M. and Höpken, U.E.
Journal of Biological Chemistry 277 (47): 45122-45128. 1 January 2002

This list was generated on Thu Sep 23 02:20:48 2021 CEST.
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