Author Vockerodt, Martina
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2002 | Journal Article
An unbalanced translocation involving chromosome 14 is the probable cause for loss of potentially functional rearranged immunoglobulin heavy chain genes in the Epstein-Barr virus-positive Hodgkin's lymphoma-derived cell line L591
Vockerodt, M.; Belge, G.; Kube, D.; Irsch, J.; Siebert, R.; Tesch, H. & Diehl, V. et al. (2002)
British Journal of Haematology, 119(3) pp. 640-646. DOI: https://doi.org/10.1046/j.1365-2141.2002.03894.x
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2003 | Journal Article
Simultaneous analysis of interleukin-10 gene microsatellites and single-nucleotide polymorphisms in parallel with tumour necrosis factor and interferon-gamma short tandem repeats by fluorescence-based polymerase chain reaction
Kube, D.; Mormann, M.; Tomiuk, J.; Rieth, H.; Hua, T.-D.; Kremsner, P. G. & Vockerodt, M. (2003)
Genes and Immunity, 4(7) pp. 459-468. DOI: https://doi.org/10.1038/sj.gene.6364003
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2004 | Journal Article
Repeated clonal relapses in classical Hodgkin's lymphoma and the occurrence of a clonally unrelated diffuse large B cell non-hodgkin lymphoma in the same patient
Thomas, R. K.; Wickenhauser, C.; Kube, D.; Tesch, H.; Diehl, V.; Wolf, J. & Vockerodt, M. (2004)
Leukemia & Lymphoma, 45(5) pp. 1065-1069. DOI: https://doi.org/10.1080/10428190310001643421
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2005 | Journal Article
Endogenous MHC class II processing of a viral nuclear antigen after autophagy
Paludan, C.; Schmid, D.; Landthaler, M.; Vockerodt, M.; Kube, D. ; Tuschl, T. & Münz, C. (2005)
Science, 307(5709) pp. 593-596. DOI: https://doi.org/10.1126/science.1104904
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2005 | Journal Article
STAT3 is essential for Hodgkin lymphoma cell proliferation and is a target of tyrphostin AG17 which confers sensitization for apoptosis
Holtick, U.; Vockerodt, M.; Pinkert, D.; Schoof, N.; Sturzenhofecker, B.; Kussebi, N. & Lauber, K. et al. (2005)
Leukemia, 19(6) pp. 936-944. DOI: https://doi.org/10.1038/sj.leu.2403750
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2005 | Journal Article
The Epstein-Barr virus oncoprotein latent membrane protein 1 induces expression of the chemokine IP-10: Importance of mRNA half-life regulation
Vockerodt, M.; Pinkert, D.; Smola-Hess, S.; Michels, A.; Ransohoff, R. M.; Tesch, H. & Kube, D. (2005)
International Journal of Cancer, 114(4) pp. 598-605. DOI: https://doi.org/10.1002/ijc.20759
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2007 | Conference Abstract
The EBV-encoded latent membrane protein-1 imposes on normal human germinal center B cells, a Hodgkin/Reed-Sternberg-like gene expression signature
Vockerodt, M.; Morgan, S. L.; Kuo, M.; Wei, W.; Chukwuma, M. B.; Arrand, J. R. & Kube, D. et al. (2007)
HAEMATOLOGICA-THE HEMATOLOGY JOURNAL, 92 7th International Symposium on Hodgkin Lymphoma, Cologne, GERMANY.
Pavia: Ferrata Storti Foundation.
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2008 | Journal Article
The Epstein-Barr virus oncoprotein, latent membrane protein-1, reprograms germinal centre B cells towards a Hodgkin's Reed-Sternberg-like phenotype
Vockerodt, M.; Morgan, S. L.; Kuo, M.; Wei, W.; Chukwuma, M. B.; Arrand, J. R. & Kube, D. et al. (2008)
The Journal of Pathology, 216(1) pp. 83-92. DOI: https://doi.org/10.1002/path.2384
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2010 | Conference Abstract
A c-Myc induced gene expression signature in human germinal center B cells predicts subtypes of aggressive non-Hodgkin Lymphoma
Schrader, A.; Bentink, S.; Spang, R.; Lenze, D.; Hummel, M.; Kuo, M. & Murray, P. et al. (2010)
EJC SUPPLEMENTS, 8(5) 21st Meeting of the European-Association-for-Cancer-Research, Oslo, NORWAY.
Oxford: Pergamon-elsevier Science Ltd.
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2011 | Journal Article
Down-regulation of BLIMP1 alpha by the EBV oncogene, LMP-1, disrupts the plasma cell differentiation program and prevents viral replication in B cells: implications for the pathogenesis of EBV-associated B-cell lymphomas
Vrzalikova, K.; Vockerodt, M.; Leonard, S.; Bell, A. I.; Wei, W.; Schrader, A. & Wright, K. L. et al. (2011)
Blood, 117(22) pp. 5907-5917. DOI: https://doi.org/10.1182/blood-2010-09-307710
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2012 | Journal Article |
Global gene expression changes of in vitro stimulated human transformed germinal centre B cells as surrogate for oncogenic pathway activation in individual aggressive B cell lymphomas
Schrader, A.; Meyer, K.; von Bonin, F.; Vockerodt, M.; Walther, N.; Hand, E. & Ulrich, A. et al. (2012)
Cell Communication and Signaling, 10 art. 43. DOI: https://doi.org/10.1186/1478-811X-10-43
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2012 | Journal Article
High myc activity is an independent negative prognostic factor for diffuse large B cell lymphomas
Schrader, A.; Bentink, S.; Spang, R.; Lenze, D.; Hummel, M.; Kuo, M. & Arrand, J. R. et al. (2012)
International Journal of Cancer, 131(4) pp. E348-E361. DOI: https://doi.org/10.1002/ijc.26423
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2013 | Journal Article
Suppression of the LMP2A target gene, EGR-1, protects Hodgkin's lymphoma cells from entry to the EBV lytic cycle
Vockerodt, M.; Wei, W.; Nagy, E.; Prouzova, Z.; Schrader, A.; Kube, D. & Rowe, M. et al. (2013)
The Journal of Pathology, 230(4) pp. 399-409. DOI: https://doi.org/10.1002/path.4198
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2016 | Journal Article |
Identification of a new gene regulatory circuit involving B cell receptor activated signaling using a combined analysis of experimental, clinical and global gene expression data
Schrader, A.; Meyer, K.; Walther, N.; Stolz, A.; Feist, M. ; Hand, E. & von Bonin, F. et al. (2016)
Oncotarget, 7(30) pp. 47061-47081. DOI: https://doi.org/10.18632/oncotarget.9219
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2018 | Journal Article |
Co-Expression of the Epstein-Barr Virus-Encoded Latent Membrane Proteins and the Pathogenesis of Classic Hodgkin Lymphoma
Vrzalikova, K.; Ibrahim, M.; Nagy, E.; Vockerodt, M.; Perry, T.; Wei, W. & Woodman, C. et al. (2018)
Cancers, 10(9) pp. 285. DOI: https://doi.org/10.3390/cancers10090285
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2019 | Journal Article
Regulation of S1PR2 by the EBV oncogene LMP1 in aggressive ABC‐subtype diffuse large B‐cell lymphoma
Vockerodt, M.; Vrzalikova, K.; Ibrahim, M.; Nagy, E.; Margielewska, S.; Hollows, R. & Lupino, L. et al. (2019)
The Journal of Pathology, 248(2) pp. 142-154. DOI: https://doi.org/10.1002/path.5237
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2020 | Journal Article |
High CD206 levels in Hodgkin lymphoma‐educated macrophages are linked to matrix‐remodeling and lymphoma dissemination
Arlt, A. ; Bonin, F. ; Rehberg, T.; Perez‐Rubio, P.; Engelmann, J. C.; Limm, K. & Reinke, S. et al. (2020)
Molecular Oncology, 14(3) pp. 571-589. DOI: https://doi.org/10.1002/1878-0261.12616
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