TY - JOUR A1 - Moench, Romana A1 - Grimmig, Tanja A1 - Kannen, Vinicius A1 - Tripathi, Sudipta A1 - Faber, Marc A1 - Moll, Eva-Maria A1 - Chandraker, Anil A1 - Lissner, Reinhard A1 - Germer, Christoph-Thomas A1 - Waaga-Gasser, Ana Maria A1 - Gasser, Martin T1 - Exclusive inhibition of PI3K/Akt/mTOR signaling is not sufficient to prevent PDGF-mediated effects on glycolysis and proliferation in colorectal cancer JF - Oncotarget N2 - Platelet-derived growth factor (PDGF) and signaling via its receptors plays a crucial role in tumor cell proliferation and thus may represent an attractive target besides VEGF/EGFR-based antibody therapies. In this study we analyzed the influence of PDGF in colorectal cancer. PDGF was expressed intensively in early and even more intensively in late stage primary CRCs. Like VEGF, PDGF enhanced human colon cancer proliferation, and increased oxidative glycolytic activity, and activated HIF1α and c-Myc in vitro. PDGF activated the PI3K/Akt/mTOR pathway while leaving MAPK signaling untouched. Further dissection showed that inhibition of Akt strongly impeded cancer cell growth while inhibition of PI3K did not. MAPK analysis suggested an inhibitory crosstalk between both pathways, thus explaining the different effects of the Akt and PI3K inhibitors on cancer cell proliferation. PDGF stimulates colon cancer cell proliferation, and prevents inhibitor induced apoptosis, resulting in tumor growth. Therefore inhibition of PDGF signaling seems to be a promising target in colorectal cancer therapy. However, due to the multifaceted nature of the intracellular PDGF signaling, careful intervention strategies are needed when looking into specific signaling pathways like PI3K/Akt/mTOR and MAPK. KW - PDGF KW - colorectal cancer KW - MAPK pathway KW - glucose metabolism KW - PI3K/Akt/mTOR Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-176910 VL - 7 IS - 42 ER - TY - THES A1 - Grimmig, Tanja Maria T1 - Immunity, Inflammation and Cancer: The role of Foxp3, TLR7 and TLR8 in gastrointestinal cancer T1 - Immunsystem, Entzündung und Krebs: die Rolle von Foxp3, TLR7 und TLR8 in gastrointestinalen Tumorerkrankungen N2 - Regulatory T cells (Treg) expressing the transcription factor forkhead box protein P3 (Foxp3) have been demonstrated to mediate evasion from anti-tumor immune responses during tumor progression. Moreover, Foxp3 expression by tumor cells themselves may allow them to counteract effector T cell responses, resulting in a survival benefit of the tumor. For gastrointestinal cancers, in particular pancreatic and colorectal cancer (CRC), the clinical relevance of Foxp3 is not clear to date. Therefore the aim of this study was to analyze its impact in CRC and pancreatic cancer. To determine the relevance of Foxp3 for tumor progression and patient survival, gene and protein analysis of human pancreatic and colon cancer cell lines as well as tumor tissues from patients with CRC was performed. The results derived from the patients with CRC were correlated with clinicopathological parameters and patients’ overall survival. Cancer cell mediated Foxp3 expression in vitro was demonstrated in human pancreatic cancer cell lines PANC1, PaCa DD 135, PaCa DD 159 and PaCa DD 185 as well as in human colon cancer cell lines SW480 and SW620. Additionally, Foxp3 expressing cancer cells were found in ex vivo tumor tissue samples of patients with CRC. The percentage of Foxp3+ cancer cells increased from stages UICC I/II to UICC III/IV compared to normal tissue. Moreover, high tumor cell mediated Foxp3 expression was associated with poor prognosis compared to patients with low Foxp3 expression. In contrast, low and high Foxp3 level in tumor infiltrating Treg cells demonstrated no significant differences in patients’ overall survival. Correlation analysis demonstrated a significant association of Foxp3 cancer cell expression with the expression of immunosuppressive cytokines IL-10 and TGF-β. These findings suggest that Immunosuppressive cytokines such as IL-10 and TGF-β released by rather Foxp3+ cancer cells than Foxp3+ Treg cells may inhibit the activation of naive T cells, hence limiting antitumor immune responses and favoring tumorigenesis and progression. Chronic inflammation has been shown to be an important epigenetic and environmental factor in numerous tumor entities. Recent data suggest that tumorigenesis and tumor progression may be associated with inflammation-triggered activation of Toll-like receptors (TLR). In this study, the specific impact of both TLR7 and TLR8 expression and signaling on tumor cell proliferation and chemoresistance is analyzed in inflammation linked CRC and pancreatic cancer. By gene and protein expression analysis of human pancreatic and colon cancer cell lines TLR7 and TLR8 expression was determined in vitro. Additionally, expression of TLR7/TLR8 in UICC stage I-IV pancreatic cancer, chronic pancreatitis and normal pancreatic tissue was examined. For in vitro/in vivo studies TLR7/TLR8 overexpressing PANC1 cell lines were generated and analyzed for effects of TLR expression and stimulation on tumor cell proliferation and chemoresistance. Cancer cell mediated TLR7 and TLR8 expression in vitro was demonstrated in human colon cancer cell lines SW480, SW620 and HT-29 as well as in primary pancreatic cancer cell lines PaCa DD 135, PaCa DD 159 and PaCa DD 185. Additionally, TLR7 and TLR8 expressing tumor cells were found in ex vivo tissue samples of patients with pancreatic cancer and chronic pancreatitis. Significantly elevated expression levels of TLR7 and TLR8 were found in advanced tumor stages (UICC III) compared to early tumor stages (UICC II) and chronic pancreatitis. No or occasionally low expression was detected in normal pancreatic tissue. In contrast to the tissues from patients with pancreatic cancer or chronic pancreatitis, established pancreatic tumor cell lines express only very low levels of TLR7 and TLR8. Therefore, for in vitro and xenograft studies TLR7 or TLR8 overexpressing PANC1 cells were generated. Proliferation promoting effects of TLR7 and TLR8 expression and stimulation with R848 were detected in vitro. Additionally, increased tumor growth of TLR expressing PANC1 cells was demonstrated in subcutaneously injected Balb/c nude mice. Interestingly, activation of TLR7 or TLR8 induced not only an increase in tumor cell proliferation but also a strong chemoresistance of PANC1 cells against 5-fluorouracil (5-FU). Moreover, treatment with R848 resulted in elevated expression levels of NF-κB, COX-2 and inflammatory cytokines IL-1β, IL-8 and TNF-α, suggesting TLR7/8 signaling to contribute to an inflammatory, anti-apoptotic and proliferation promoting tumor microenvironment. These findings emphasize the particular role of TLR7 and TLR8 in inflammation related cancers and their relevance as potential targets for cancer therapy.   N2 - In jüngerer Vergangenheit wurde regulatorischen T-Zellen, die den Transkriptionsfaktor forkhead-box protein P3 (Foxp3) exprimieren, wiederholt die Fähigkeit zugesprochen, Antitumorimmunreaktionen während der Tumorentwicklung und –progression abzuschwächen. Daneben sind Tumorzellen selbst befähigt Foxp3 zu exprimieren. Sie können damit der Effektor-T-Zell-Antwort entgegen wirken und so Tumorwachstum begünstigen. Die klinische Bedeutung der Foxp3-Expression in gastrointestinalen Tumoren, insbesondere im Pankreaskarzinom und kolorektalen Karzinom, ist zum heutigen Stand noch unklar. Daher war es das Ziel dieser Arbeit, die Bedeutung von Foxp3 im Pankreaskarzinom und kolorektalen Karzinom weiter aufzuklären. Um seine prognostische Relevanz hinsichtlich der Tumorprogression sowie das Patienten-Überleben zu untersuchen, wurden Gen- und Proteinexpressionsanalysen in Tumorgeweben aus Patientenkohorten mit kolorektalem Karzinom durchgeführt. Die Ergebnisse aus den Tumorgeweben wurden mit klinikopathologischen Parametern und dem Gesamtüberleben der Patienten korreliert. Sowohl in den humanen Pankreaskarzinomzelllinien PANC1, PaCa DD 135, PaCa DD 159 und PaCa DD 185 als auch in den humanen Kolonkarzinomzelllinien SW480 und SW620 konnte tumorzellvermittelte Foxp3 Expression nachgewiesen werden. Zusätzlich wurden auch in den ex vivo Gewebeproben Foxp3-exprimierende Tumorzellen vorgefunden. Dabei nahm der Anteil an Foxp3-positiven Tumorzellen stadienabhängig von frühen zu fortgeschrittenen Tumorstadien (UICC I/II zu UICC III/IV) zu. Zudem waren Patienten mit einer starken Expression von Foxp3 im Vergleich zu Patienten mit niedrigem Foxp3-Expressionsprofil in den Tumorzellen von einer schlechten klinischen Prognose gekennzeichnet. Hohe bzw. niedrige Foxp3-Expressionen in tumorinfiltrierenden T-Zellen zeigten dagegen keinen signifikanten Einfluss auf das Gesamtüberleben der Patienten. In der Korrelationsanalyse ergab sich außerdem eine signifikante Verknüpfung von Foxp3-Expression mit der Expression der immunsuppressiven Zytokine IL-10 und TGF-β in den Tumorzellen. Diese Beobachtungen lassen vermuten, dass Foxp3-positive Tumorzellen durch die Sekretion von immunsuppressiven Zytokinen wie IL-10 und TGF-β im Tumormikromilieu die Aktivierung naiver T-Zellen inhibieren. Damit würden Antitumorimmunreaktionen unterdrückt und das Tumorwachstum begünstigt. Chronische Entzündungsreaktionen sind wichtige epigenetische Faktoren in verschiedenen Tumorentitäten. Neuere Daten deuten darauf hin, dass Karzinogenese und Tumorprogression in Verbindung mit inflammationsinduzierter Aktivierung von Toll-like Rezeptoren (TLR) stehen. In dieser Arbeit wurde insbesondere der Einfluss der beiden Rezeptoren TLR7 und TLR8 auf die Tumorzellproliferation und Chemotherapieresistenz von gastrointestinalen Tumoren wie das kolorektale Karzinom und das Pankreaskarzinom untersucht. Mit Hilfe von Gen- und Proteinexpressionsanalysen wurde die tumorzellvermittelte Expression von TLR7 und TLR8 in vitro in verschiedenen humanen Kolon- als auch Pankreaskarzinomzelllinien nachgewiesen. Zusätzlich wurde verstärkte TLR7 und TLR8 Expression in Tumorgewebeproben aus Patienten mit Pankreaskarzinom als auch bei chronischer Pankreatitis vorgefunden, wobei die Expression in fortgeschrittenen Tumorstadien (UICC III) gegenüber früheren Stadien (UICC II) und chronischer Pankreatitis signifikant erhöht war. In vitro und in vivo Untersuchungen im xenogenen Tumormodell mit humanem Pankreaskarzinom zeigten für TLR7- und TLR8-exprimierende PANC1-Pankreaskarzinome signifikant gesteigerte Tumorproliferationen. Zusätzlich wurde durch die gezielte TLR7/8 Stimulation mit der Substanz R848 eine ausgeprägte Chemotherapieresistenz gegenüber 5-Fluorouracil (5-FU) induziert. Die Aktivierung von TLR7 und TLR8 führte darüber hinaus zu einer verstärkten Expression von NF-kB, COX-2, sowie den proinflammatorischen Zytokinen IL-1β, IL-8 und TNF-α. Diese Beobachtungen legen nahe, dass die TLR7/8 Signalgebung zu inflammatorischen, antiapoptotischen und proliferationsfördernden Prozessen im Tumormikromilieu beiträgt und unterstreichen die Bedeutung der Toll like Rezeptoren 7 und 8 als potentielle therapeutische Zielstrukturen in inflammationsassoziierten Tumorerkrankungen. KW - Bauchspeicheldrüsenkrebs KW - Foxp3 KW - TLR7 KW - TLR8 KW - Tumorerkrankungen KW - gastrointestinal cancer KW - Dickdarmkrebs KW - Toll-like-Rezeptoren KW - Regulatorischer T-Lymphozyt Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-125248 ER - TY - JOUR A1 - Kim, Mia A1 - Grimmig, Tanja A1 - Grimm, Martin A1 - Lazariotou, Maria A1 - Meier, Eva A1 - Rosenwald, Andreas A1 - Tsaur, Igor A1 - Blaheta, Roman A1 - Heemann, Uwe A1 - Germer, Christoph-Thomas A1 - Waaga-Gasser, Ana Maria A1 - Gasser, Martin T1 - Expression of Foxp3 in Colorectal Cancer but Not in Treg Cells Correlates with Disease Progression in Patients with Colorectal Cancer JF - PLoS ONE N2 - Background Measles virus (MV) causes T cell suppression by interference with phosphatidylinositol-3-kinase (PI3K) activation. We previously found that this interference affected the activity of splice regulatory proteins and a T cell inhibitory protein isoform was produced from an alternatively spliced pre-mRNA. Hypothesis Differentially regulated and alternatively splice variant transcripts accumulating in response to PI3K abrogation in T cells potentially encode proteins involved in T cell silencing. Methods To test this hypothesis at the cellular level, we performed a Human Exon 1.0 ST Array on RNAs isolated from T cells stimulated only or stimulated after PI3K inhibition. We developed a simple algorithm based on a splicing index to detect genes that undergo alternative splicing (AS) or are differentially regulated (RG) upon T cell suppression. Results Applying our algorithm to the data, 9% of the genes were assigned as AS, while only 3% were attributed to RG. Though there are overlaps, AS and RG genes differed with regard to functional regulation, and were found to be enriched in different functional groups. AS genes targeted extracellular matrix (ECM)-receptor interaction and focal adhesion pathways, while RG genes were mainly enriched in cytokine-receptor interaction and Jak-STAT. When combined, AS/RG dependent alterations targeted pathways essential for T cell receptor signaling, cytoskeletal dynamics and cell cycle entry. Conclusions PI3K abrogation interferes with key T cell activation processes through both differential expression and alternative splicing, which together actively contribute to T cell suppression. KW - T cells KW - gene regulation KW - alternative splicing KW - measles virus KW - T cell receptors KW - reverse transcriptase-polymerase chain reaction KW - TCR signaling cascade KW - cell cycle and cell division Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-130340 VL - 8 IS - 1 ER - TY - JOUR A1 - Grimmig, Tanja A1 - Moench, Romana A1 - Kreckel, Jennifer A1 - Haack, Stephanie A1 - Rueckert, Felix A1 - Rehder, Roberta A1 - Tripathi, Sudipta A1 - Ribas, Carmen A1 - Chandraker, Anil A1 - Germer, Christoph T. A1 - Gasser, Martin A1 - Waaga-Gasser, Ana Maria T1 - Toll Like Receptor 2, 4, and 9 Signaling Promotes Autoregulative Tumor Cell Growth and VEGF/PDGF Expression in Human Pancreatic Cancer JF - International Journal of Molecular Sciences N2 - Toll like receptor (TLR) signaling has been suggested to play an important role in the inflammatory microenvironment of solid tumors and through this inflammation-mediated tumor growth. Here, we studied the role of tumor cells in their process of self-maintaining TLR expression independent of inflammatory cells and cytokine milieu for autoregulative tumor growth signaling in pancreatic cancer. We analyzed the expression of TLR2, -4, and -9 in primary human cancers and their impact on tumor growth via induced activation in several established pancreatic cancers. TLR-stimulated pancreatic cancer cells were specifically investigated for activated signaling pathways of VEGF/PDGF and anti-apoptotic Bcl-xL expression as well as tumor cell growth. The primary pancreatic cancers and cell lines expressed TLR2, -4, and -9. TLR-specific stimulation resulted in activated MAP-kinase signaling, most likely via autoregulative stimulation of demonstrated TLR-induced VEGF and PDGF expression. Moreover, TLR activation prompted the expression of Bcl-xL and has been demonstrated for the first time to induce tumor cell proliferation in pancreatic cancer. These findings strongly suggest that pancreatic cancer cells use specific Toll like receptor signaling to promote tumor cell proliferation and emphasize the particular role of TLR2, -4, and -9 in this autoregulative process of tumor cell activation and proliferation in pancreatic cancer. KW - tumor growth KW - TLR2 KW - TLR4 KW - TLR9 KW - pancreatic cancer KW - inflammation Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-165743 VL - 17 IS - 12 ER -