Medizinische Universität Graz Austria/Österreich - Forschungsportal - Medical University of Graz

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Publikationen

Suchbegriffe: EPITHELIAL-MESENCHYMAL TRANSITION, . Treffer: 31

2019

Dahlem, C; Barghash, A; Puchas, P; Haybaeck, J; Kessler, SM The Insulin-Like Growth Factor 2 mRNA Binding Protein IMP2/IGF2BP2 is Overexpressed and Correlates with Poor Survival in Pancreatic Cancer.
Int J Mol Sci. 2019; 20(13): [OPEN ACCESS]
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Kunc, M; Gabrych, A; Rekawiecki, B; Gorczynski, A; Franke, S; Haybaeck, J; Biernat, W; Czapiewski, P MLH1 promoter hypermethylation in uterine carcinosarcoma rarely coexists with TP53 mutation.
Contemp Oncol (Pozn). 2019; 23(4): 202-207. [OPEN ACCESS]
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Pichler, R; Compérat, E; Klatte, T; Pichler, M; Loidl, W; Lusuardi, L; Schmidinger, M Renal Cell Carcinoma with Sarcomatoid Features: Finally New Therapeutic Hope?
Cancers (Basel). 2019; 11(3): 422 [OPEN ACCESS]
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2018

Matak, A; Lahiri, P; Ford, E; Pabst, D; Kashofer, K; Stellas, D; Thanos, D; Zatloukal, K Stochastic phenotype switching leads to intratumor heterogeneity in human liver cancer.
Hepatology. 2018; 68(3):933-948 [OPEN ACCESS]
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Ostojić, J; Brčić, L; Hrabač, P; Seiwerth, S Expression of Nedd9 in Transbronchial Biopsies of Lung Adenocarcinoma.
Acta Clin Croat. 2018; 57(2): 251-256. [OPEN ACCESS]
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Schelch, K; Wagner, C; Hager, S; Pirker, C; Siess, K; Lang, E; Lin, R; Kirschner, MB; Mohr, T; Brcic, L; Marian, B; Holzmann, K; Grasl-Kraupp, B; Krupitza, G; Laszlo, V; Klikovits, T; Dome, B; Hegedus, B; Garay, T; Reid, G; van Zandwijk, N; Klepetko, W; Berger, W; Grusch, M; Hoda, MA FGF2 and EGF induce epithelial-mesenchymal transition in malignant pleural mesothelioma cells via a MAPKinase/MMP1 signal.
Carcinogenesis. 2018; 39(4): 534-545. [OPEN ACCESS]
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2017

Mehta, AK; Hua, K; Whipple, W; Nguyen, MT; Liu, CT; Haybaeck, J; Weidhaas, J; Settleman, J; Singh, A Regulation of autophagy, NF-κB signaling, and cell viability by miR-124 in KRAS mutant mesenchymal-like NSCLC cells.
Sci Signal. 2017; 10(496): [OPEN ACCESS]
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2016

Bonyadi Rad, E; Hammerlindl, H; Wels, C; Popper, U; Ravindran Menon, D; Breiteneder, H; Kitzwoegerer, M; Hafner, C; Herlyn, M; Bergler, H; Schaider, H Notch4 Signaling Induces a Mesenchymal-Epithelial-like Transition in Melanoma Cells to Suppress Malignant Behaviors.
CANCER RES. 2016; 76(7): 1690-1697. [OPEN ACCESS]
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Jagadeeshan, S; Subramanian, A; Tentu, S; Beesetti, S; Singhal, M; Raghavan, S; Surabhi, RP; Mavuluri, J; Bhoopalan, H; Biswal, J; Pitani, RS; Chidambaram, S; Sundaram, S; Malathi, R; Jeyaraman, J; Nair, AS; Venkatraman, G; Rayala, SK P21-activated kinase 1 (Pak1) signaling influences therapeutic outcome in pancreatic cancer.
Ann Oncol. 2016; 27(8):1546-1556
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Max, N; Harbaum, L; Pollheimer, MJ; Lindtner, RA; Kornprat, P; Langner, C Tumour budding with and without admixed inflammation: two different sides of the same coin?
Br J Cancer. 2016; 114(4):368-371 [OPEN ACCESS]
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Popper, HH Progression and metastasis of lung cancer.
Cancer Metastasis Rev. 2016; 35(1):75-91 [OPEN ACCESS]
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Yang, Y; Liu, Y; He, JC; Wang, JM; Schemmer, P; Ma, CQ; Qian, YW; Yao, W; Zhang, J; Qi, WP; Fu, Y; Feng, W; Yang, T 14-3-3ζ and aPKC-ι synergistically facilitate epithelial-mesenchymal transition of cholangiocarcinoma via GSK-3β/Snail signaling pathway.
Oncotarget. 2016; 7(34):55191-55210 [OPEN ACCESS]
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2015

Ress, AL; Stiegelbauer, V; Winter, E; Schwarzenbacher, D; Kiesslich, T; Lax, S; Jahn, S; Deutsch, A; Bauernhofer, T; Ling, H; Samonigg, H; Gerger, A; Hoefler, G; Pichler, M MiR-96-5p influences cellular growth and is associated with poor survival in colorectal cancer patients.
Mol Carcinog. 2015; 54(11):1442-1450
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2014

Fabro, AT; Minatel, IO; Rangel, MP; Halbwedl, I; Parra, ER; Capelozzi, VL; Popper, H Usual interstitial pneumonia and smoking-related interstitial fibrosis display epithelial to mesenchymal transition in fibroblastic foci.
Respir Med. 2014; 108(9):1377-1386 [OPEN ACCESS]
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Liu, L; Salnikov, AV; Bauer, N; Aleksandrowicz, E; Labsch, S; Nwaeburu, C; Mattern, J; Gladkich, J; Schemmer, P; Werner, J; Herr, I Triptolide reverses hypoxia-induced epithelial-mesenchymal transition and stem-like features in pancreatic cancer by NF-κB downregulation.
Int J Cancer. 2014; 134(10):2489-2503 [OPEN ACCESS]
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Pichler, M; Ress, AL; Winter, E; Stiegelbauer, V; Karbiener, M; Schwarzenbacher, D; Scheideler, M; Ivan, C; Jahn, SW; Kiesslich, T; Gerger, A; Bauernhofer, T; Calin, GA; Hoefler, G MiR-200a regulates epithelial to mesenchymal transition-related gene expression and determines prognosis in colorectal cancer patients.
Br J Cancer. 2014; 110(6):1614-1621 [OPEN ACCESS]
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Smolle, E; Taucher, V; Petru, E; Haybaeck, J Targeted treatment of ovarian cancer--the multiple - kinase - inhibitor sorafenib as a potential option.
Anticancer Res. 2014; 34(4):1519-1530
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2013

Wygrecka, M; Didiasova, M; Berscheid, S; Piskulak, K; Taborski, B; Zakrzewicz, D; Kwapiszewska, G; Preissner, KT; Markart, P Protease-activated receptors (PAR)-1 and -3 drive epithelial-mesenchymal transition of alveolar epithelial cells - potential role in lung fibrosis.
Thromb Haemost. 2013; 110(2):295-307
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2012

Balic, M; Lin, H; Williams, A; Datar, RH; Cote, RJ Progress in circulating tumor cell capture and analysis: implications for cancer management.
Expert Rev Mol Diagn. 2012; 12(3):303-312 [OPEN ACCESS]
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Salnikov, AV; Liu, L; Platen, M; Gladkich, J; Salnikova, O; Ryschich, E; Mattern, J; Moldenhauer, G; Werner, J; Schemmer, P; Büchler, MW; Herr, I Hypoxia induces EMT in low and highly aggressive pancreatic tumor cells but only cells with cancer stem cell characteristics acquire pronounced migratory potential.
PLoS One. 2012; 7(9):e46391-e46391 [OPEN ACCESS]
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Todenhöfer, T; Hennenlotter, J; Feyerabend, S; Aufderklamm, S; Mischinger, J; Kühs, U; Gerber, V; Fetisch, J; Schilling, D; Hauch, S; Stenzl, A; Schwentner, C Preliminary experience on the use of the Adnatest® system for detection of circulating tumor cells in prostate cancer patients.
Anticancer Res. 2012; 32(8):3507-3513
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2011

Wels, C; Joshi, S; Koefinger, P; Bergler, H; Schaider, H Transcriptional Activation of ZEB1 by Slug Leads to Cooperative Regulation of the Epithelial-Mesenchymal Transition-Like Phenotype in Melanoma
J INVEST DERMATOL. 2011; 131(9): 1877-1885. [OPEN ACCESS]
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2010

Georgiadis, A; Tschernutter, M; Bainbridge, JW; Balaggan, KS; Mowat, F; West, EL; Munro, PM; Thrasher, AJ; Matter, K; Balda, MS; Ali, RR The tight junction associated signalling proteins ZO-1 and ZONAB regulate retinal pigment epithelium homeostasis in mice.
PLoS One. 2010; 5(12): e15730-e15730. [OPEN ACCESS]
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Rausch, V; Liu, L; Kallifatidis, G; Baumann, B; Mattern, J; Gladkich, J; Wirth, T; Schemmer, P; Büchler, MW; Zöller, M; Salnikov, AV; Herr, I Synergistic activity of sorafenib and sulforaphane abolishes pancreatic cancer stem cell characteristics.
Cancer Res. 2010; 70(12):5004-5013 [OPEN ACCESS]
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Santibáñez, JF; Kocić, J; Fabra, A; Cano, A; Quintanilla, M Rac1 modulates TGF-beta1-mediated epithelial cell plasticity and MMP9 production in transformed keratinocytes.
FEBS Lett. 2010; 584(11): 2305-2310.
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Shin, SY; Rath, O; Zebisch, A; Choo, SM; Kolch, W; Cho, KH Functional roles of multiple feedback loops in extracellular signal-regulated kinase and Wnt signaling pathways that regulate epithelial-mesenchymal transition.
Cancer Res. 2010; 70(17): 6715-6724. [OPEN ACCESS]
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Villar, V; Kocić, J; Santibanez, JF Spred2 inhibits TGF-beta1-induced urokinase type plasminogen activator expression, cell motility and epithelial mesenchymal transition.
Int J Cancer. 2010; 127(1): 77-85.
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Villar, V; Kocic, J; Bugarski, D; Jovcic, G; Santibanez, JF SKIP is required for TGF-β1-induced epithelial mesenchymal transition and migration in transformed keratinocytes.
FEBS Lett. 2010; 584(22):4586-4592
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2006

Blaukovitsch, M; Halbwedl, I; Kothmaier, H; Gogg-Kammerer, M; Popper, HH Sarcomatoid carcinomas of the lung--are these histogenetically heterogeneous tumors?
Virchows Arch. 2006; 449(4):455-461 [Oral Communication]
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2003

Schramek, H; Feifel, E; Marschitz, I; Golochtchapova, N; Gstraunthaler, G; Montesano, R Loss of active MEK1-ERK1/2 restores epithelial phenotype and morphogenesis in transdifferentiated MDCK cells.
Am J Physiol Cell Physiol. 2003; 285(3): C652-C661. [OPEN ACCESS]
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2001

Dandachi, N; Hauser-Kronberger, C; Moré, E; Wiesener, B; Hacker, GW; Dietze, O; Wirl, G Co-expression of tenascin-C and vimentin in human breast cancer cells indicates phenotypic transdifferentiation during tumour progression: correlation with histopathological parameters, hormone receptors, and oncoproteins.
J Pathol. 2001; 193(2):181-189
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