TY - THES A1 - Alb, Miriam T1 - Tumorstroma-Immuntherapie und spontane Immunsuppression im Grm1-transgenen Melanom-Modell T1 - Tumor stroma immunotherapy and spontaneous immunosuppression in Grm1 transgenic murine melanoma N2 - 5.1 Immuntherapie mit vom Tumorstroma abgeleiteten Peptiden Tumore bestehen nicht nur aus Tumorzellen, sondern auch aus der sie umgebenden extrazellulären Matrix (EZM), und Stromazellen wie Fibroblasten (cancer-associated fibroblast; CAF) und Endothelzellen (tumor endothelial cell; TEC). Diese Stromazellen haben durch die Ausschüttung von Zytokinen, proteolytischen Enzymen, Wachstums- und Angiogenesefaktoren einen entscheidenden Einfluss auf die Tumorprogression. Sie unterscheiden sich von den Stromazellen der normalen Gewebe durch die Expression von sogenannten Tumorstroma-assoziierten Antigenen (TSAA). Damit sollten Therapien, die auf TSAA abzielen, universell einsetzbar und weniger anfällig gegenüber Resistenzentwicklungen (immune escape Mechanismen) sein, da Stromazellen im Gegensatz zu neoplastischen Zellen genetisch relativ stabil sind. Für eine Immuntherapie mit vom Tumorstroma abgeleiteten Peptiden wählten wir die TSAA Endoglin und Fap, welche während der Wundheilung und im Tumorstroma induziert werden. Dabei sollte überprüft werden, ob prophylaktische Vakzinierungen in C57Bl/6j Mäusen Peptid-reaktive T-Zellen induzieren können, und das Wachstum von transplantieren Grm1-transgenen Tumoren reduziert werden kann. In der Tat konnten wir sowohl bei Endoglin- als auch bei Fap Peptid vakzinierten Tieren in vivo Peptid-reaktive Lymphozyten im Blut und zu einem geringeren Anteil auch in der Milz nachweisen, welche Peptid-gepulste syngene Milzzellen lysieren konnten. Allerdings konnte in beiden Fällen keine Reduktion des Tumorwachstums gegenüber der Kontrollgruppe beobachtet werden. Bei der Fap-Peptid-vakzinierten Gruppe war das Tumorwachstum gegenüber der Kontrollgruppe sogar gesteigert. Dies könnte darauf hindeuten, dass die Induktion Fap-Peptid-reaktiver T-Zellen tumorpromovierend wirkt. Möglicherweise könnte aber durch eine Modifikation des Vakzinierungsprotokolls bzw. durch eine Kombination mit anderen Immuntherapeutika ein verbessertes Ansprechen auf eine Endoglin bzw. Fap basierte Immuntherapie erzielt werden. 5.2 Immunsuppressive Mechanismen im Grm1-transgenen Melanom-Modell Grm1-transgene Mäuse entwickeln spontan kutane Melanome. Dieses Modell erlaubte es uns in der vorliegenden Arbeit spontane Immunantworten im Laufe der Melanomentstehung zu untersuchen. Hierfür analysierten wir sowohl ex vivo als auch in vitro aus Milz und Lymphknoten gewonnene Lymphozyten von Mäusen, welche keine Tumorläsionen bzw. eine niedrige oder hohe Tumorlast aufwiesen. Dabei konnten wir ex vivo einen Anstieg der Frequenz aktivierter CD4+ und CD8+ Lymphozyten mit zunehmender Tumorlast zeigen. Bei tumortragenden Tieren exprimierten jedoch hauptsächlich CD4+ T-Zellen Aktivierungsmarker nach in vitro Stimulation. Interessanterweise waren diese Zellen tumortragender Tiere auch funktionell beeinträchtigt, was sich in einer verminderten Proliferationskapazität nach in vitro Stimulation zeigte. Weitere Analysen ergaben, dass die erhöhte Frequenz regulatorischer T Zellen bei tumortragenden Tieren ein frühes Ereignis im Laufe der Tumorentstehung ist. Gleichzeitig konnte auch ein starker Anstieg der immunsupprimierenden Zytokine Tgf-β1 und Il-10 sowohl in den Lymphknoten als auch im Tumorgewebe beobachtet werden. Dabei war die Tgf-β1-Expression sowohl im Tumor als auch im tumor-drainierenden Lymphknoten erhöht, während Il-10 im Tumor nur moderat exprimiert wurde, was eine komplexere Regulation der Il-10-Expression nahe legt. Dies bedeutet, dass in Grm1-transgenen Mäusen ähnlich wie auch bei Melanompatienten zelluläre und zytokinabhängige Mechanismen zur Tumorentstehung beitragen und dieses Modell daher geeignet ist, um präklinisch immunmodulierende Therapieansätze zu testen. N2 - 6.1 Immunotherapy with peptides derived from tumor stroma-associated antigens Tumors do not only comprise tumor cells but also stromal cells like fibroblasts (cancer associated fibroblast; CAF) and endothelial cells (tumor endothelial cell; TEC) and the surrounding extracellular matrix (ECM). These stromal cells impact on progression and invasion of tumors through release of cytokines, ECM-degrading enzymes, growth factors, and angiogenic factors. They differ from their normal counterparts through expression of so called tumor stroma-associated antigens (TSAA). Therefore, therapies targeting the tumor stroma should be universally applicable. Furthermore, such therapies should be less prone to resistance mechanisms as stromal cells are genetically more stable than neoplastic cells. We selected the TSAA Endoglin and Fap, which are both specifically induced during wound healing and in the tumor stroma, to test if vaccination with peptides derived from these TSAA induced peptide-reactive T cells, and could reduce the growth of transplanted Grm1 transgenic tumors in C57Bl/6j mice in a prophylactic setting. In mice vaccinated with Endoglin- and Fap-peptides, respectively, peptide-reactive lymphocytes from peripheral blood and spleen were able to lyse peptide-loaded syngeneic splenocytes in vivo. However, vaccination with Endoglin- and Fap-peptides, respectively, did not affect the growth of transplanted Grm1-transgenic tumors. In fact, tumor growth was enhanced in Fap peptide vaccinated mice compared to the control group. This suggests that Fap peptide reactive T cells promote tumor progression. Modification of the vaccination protocol or a combination with an immune-modulatory therapy could, however, increase the efficacy of an anti-Endoglin or anti-Fap therapy, respectively. 6.2 Immunosuppressive mechanisms of Grm1-transgenic murine melanoma Grm1-transgenic mice spontaneously develop cutaneous melanoma. This model allowed us to scrutinize the generic immune responses over the course of melanoma development. To this end, lymphocytes obtained from spleens, unrelated lymph nodes and tumor-draining lymph nodes of mice with no evidence of disease, low or high tumor burden were analyzed ex vivo and in vitro. Thereby, we could demonstrate an increased frequency of activated CD4+ and CD8+ T lymphocytes in the respective organs with increasing tumor burden. However, mainly CD4+ T cells, which could constitute both T helper as well as immune suppressive regulatory T cells, but not CD8+ T cells expressed activation markers upon in vitro stimulation when obtained from tumor-bearing mice. Interestingly, these cells from tumor-burdened animals were also functionally hampered in their proliferative response when subjected to strong in vitro stimulation. Further analyses revealed that the increased frequency of regulatory T cells in tumor-bearing mice is an early event present in all lymphoid organs. Additionally, expression of the immunosuppressive cytokines Tgf-β1 and Il-10 became more evident with increased tumor burden. Notably, Tgf-β1 is strongly expressed in both the tumor and the tumor-draining lymph node, whereas Il-10 expression is more pronounced in the lymph node, suggesting a more complex regulation of Il-10. Thus, similar to the situation in melanoma patients both cytokines as well as cellular immune escape mechanisms seem to contribute to the observed immune suppressed state of tumor-bearing Grm1-transgenic mice, suggesting that this model is suitable for preclinical testing of immune-modulatory therapies. KW - Stroma KW - Melanom KW - Immunsuppression KW - tumor KW - stroma KW - melanoma KW - immunosuppression KW - Tumorstroma Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-78890 ER - TY - JOUR A1 - Paudel, Rupesh A1 - Fusi, Lorenza A1 - Schmidt, Marc T1 - The MEK5/ERK5 pathway in health and disease JF - International Journal of Molecular Sciences N2 - The MEK5/ERK5 mitogen-activated protein kinases (MAPK) cascade is a unique signaling module activated by both mitogens and stress stimuli, including cytokines, fluid shear stress, high osmolarity, and oxidative stress. Physiologically, it is mainly known as a mechanoreceptive pathway in the endothelium, where it transduces the various vasoprotective effects of laminar blood flow. However, it also maintains integrity in other tissues exposed to mechanical stress, including bone, cartilage, and muscle, where it exerts a key function as a survival and differentiation pathway. Beyond its diverse physiological roles, the MEK5/ERK5 pathway has also been implicated in various diseases, including cancer, where it has recently emerged as a major escape route, sustaining tumor cell survival and proliferation under drug stress. In addition, MEK5/ERK5 dysfunction may foster cardiovascular diseases such as atherosclerosis. Here, we highlight the importance of the MEK5/ERK5 pathway in health and disease, focusing on its role as a protective cascade in mechanical stress-exposed healthy tissues and its function as a therapy resistance pathway in cancers. We discuss the perspective of targeting this cascade for cancer treatment and weigh its chances and potential risks when considering its emerging role as a protective stress response pathway. KW - atherosclerosis KW - bone KW - cartilage KW - endothelium KW - extracellular-regulated kinase 5 KW - Krüppel-like factor KW - mechanotransduction KW - mitogen-activated protein kinase KW - stress signaling KW - tumor Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-261638 SN - 1422-0067 VL - 22 IS - 14 ER - TY - JOUR A1 - Grimm, Johannes A1 - Hufnagel, Anita A1 - Wobser, Marion A1 - Borst, Andreas A1 - Haferkamp, Sebastian A1 - Houben, Roland A1 - Meierjohann, Svenja T1 - BRAF inhibition causes resilience of melanoma cell lines by inducing the secretion of FGF1 JF - Oncogenesis N2 - Approximately half of all melanoma patients harbour activating mutations in the serine/threonine kinase BRAF. This is the basis for one of the main treatment strategies for this tumor type, the targeted therapy with BRAF and MEK inhibitors. While the initial responsiveness to these drugs is high, resistance develops after several months, frequently at sites of the previously responding tumor. This indicates that tumor response is incomplete and that a certain tumor fraction survives even in drug-sensitive patients, e.g., in a therapy-induced senescence-like state. Here, we show in several melanoma cell lines that BRAF inhibition induces a secretome with stimulating effect on fibroblasts and naive melanoma cells. Several senescence-associated factors were found to be transcribed and secreted in response to BRAF or MEK inhibition, among them members of the fibroblast growth factor family. We identified the growth factor FGF1 as mediator of resilience towards BRAF inhibition, which limits the pro-apoptotic effects of the drug and activates fibroblasts to secrete HGF. FGF1 regulation was mediated by the PI3K pathway and by FRA1, a direct target gene of the MAPK pathway. When FGFR inhibitors were applied in parallel to BRAF inhibitors, resilience was broken, thus providing a rationale for combined therapeutical application. KW - melanoma KW - senescence KW - BRAF KW - tumor Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-177261 VL - 7 IS - 71 ER -