TY - JOUR A1 - El-Helou, Sabine M. A1 - Biegner, Anika-Kerstin A1 - Bode, Sebastian A1 - Ehl, Stephan R. A1 - Heeg, Maximilian A1 - Maccari, Maria E. A1 - Ritterbusch, Henrike A1 - Speckmann, Carsten A1 - Rusch, Stephan A1 - Scheible, Raphael A1 - Warnatz, Klaus A1 - Atschekzei, Faranaz A1 - Beider, Renata A1 - Ernst, Diana A1 - Gerschmann, Stev A1 - Jablonka, Alexandra A1 - Mielke, Gudrun A1 - Schmidt, Reinhold E. A1 - Schürmann, Gesine A1 - Sogkas, Georgios A1 - Baumann, Ulrich H. A1 - Klemann, Christian A1 - Viemann, Dorothee A1 - Bernuth, Horst von A1 - Krüger, Renate A1 - Hanitsch, Leif G. A1 - Scheibenbogen, Carmen M. A1 - Wittke, Kirsten A1 - Albert, Michael H. A1 - Eichinger, Anna A1 - Hauck, Fabian A1 - Klein, Christoph A1 - Rack-Hoch, Anita A1 - Sollinger, Franz M. A1 - Avila, Anne A1 - Borte, Michael A1 - Borte, Stephan A1 - Fasshauer, Maria A1 - Hauenherm, Anja A1 - Kellner, Nils A1 - Müller, Anna H. A1 - Ülzen, Anett A1 - Bader, Peter A1 - Bakhtiar, Shahrzad A1 - Lee, Jae-Yun A1 - Heß, Ursula A1 - Schubert, Ralf A1 - Wölke, Sandra A1 - Zielen, Stefan A1 - Ghosh, Sujal A1 - Laws, Hans-Juergen A1 - Neubert, Jennifer A1 - Oommen, Prasad T. A1 - Hönig, Manfred A1 - Schulz, Ansgar A1 - Steinmann, Sandra A1 - Klaus, Schwarz A1 - Dückers, Gregor A1 - Lamers, Beate A1 - Langemeyer, Vanessa A1 - Niehues, Tim A1 - Shai, Sonu A1 - Graf, Dagmar A1 - Müglich, Carmen A1 - Schmalzing, Marc T. A1 - Schwaneck, Eva C. A1 - Tony, Hans-Peter A1 - Dirks, Johannes A1 - Haase, Gabriele A1 - Liese, Johannes G. A1 - Morbach, Henner A1 - Foell, Dirk A1 - Hellige, Antje A1 - Wittkowski, Helmut A1 - Masjosthusmann, Katja A1 - Mohr, Michael A1 - Geberzahn, Linda A1 - Hedrich, Christian M. A1 - Müller, Christiane A1 - Rösen-Wolff, Angela A1 - Roesler, Joachim A1 - Zimmermann, Antje A1 - Behrends, Uta A1 - Rieber, Nikolaus A1 - Schauer, Uwe A1 - Handgretinger, Rupert A1 - Holzer, Ursula A1 - Henes, Jörg A1 - Kanz, Lothar A1 - Boesecke, Christoph A1 - Rockstroh, Jürgen K. A1 - Schwarze-Zander, Carolynne A1 - Wasmuth, Jan-Christian A1 - Dilloo, Dagmar A1 - Hülsmann, Brigitte A1 - Schönberger, Stefan A1 - Schreiber, Stefan A1 - Zeuner, Rainald A1 - Ankermann, Tobias A1 - Bismarck, Philipp von A1 - Huppertz, Hans-Iko A1 - Kaiser-Labusch, Petra A1 - Greil, Johann A1 - Jakoby, Donate A1 - Kulozik, Andreas E. A1 - Metzler, Markus A1 - Naumann-Bartsch, Nora A1 - Sobik, Bettina A1 - Graf, Norbert A1 - Heine, Sabine A1 - Kobbe, Robin A1 - Lehmberg, Kai A1 - Müller, Ingo A1 - Herrmann, Friedrich A1 - Horneff, Gerd A1 - Klein, Ariane A1 - Peitz, Joachim A1 - Schmidt, Nadine A1 - Bielack, Stefan A1 - Groß-Wieltsch, Ute A1 - Classen, Carl F. A1 - Klasen, Jessica A1 - Deutz, Peter A1 - Kamitz, Dirk A1 - Lassy, Lisa A1 - Tenbrock, Klaus A1 - Wagner, Norbert A1 - Bernbeck, Benedikt A1 - Brummel, Bastian A1 - Lara-Villacanas, Eusebia A1 - Münstermann, Esther A1 - Schneider, Dominik T. A1 - Tietsch, Nadine A1 - Westkemper, Marco A1 - Weiß, Michael A1 - Kramm, Christof A1 - Kühnle, Ingrid A1 - Kullmann, Silke A1 - Girschick, Hermann A1 - Specker, Christof A1 - Vinnemeier-Laubenthal, Elisabeth A1 - Haenicke, Henriette A1 - Schulz, Claudia A1 - Schweigerer, Lothar A1 - Müller, Thomas G. A1 - Stiefel, Martina A1 - Belohradsky, Bernd H. A1 - Soetedjo, Veronika A1 - Kindle, Gerhard A1 - Grimbacher, Bodo T1 - The German national registry of primary immunodeficiencies (2012-2017) JF - Frontiers in Immunology N2 - Introduction: The German PID-NET registry was founded in 2009, serving as the first national registry of patients with primary immunodeficiencies (PID) in Germany. It is part of the European Society for Immunodeficiencies (ESID) registry. The primary purpose of the registry is to gather data on the epidemiology, diagnostic delay, diagnosis, and treatment of PIDs. Methods: Clinical and laboratory data was collected from 2,453 patients from 36 German PID centres in an online registry. Data was analysed with the software Stata® and Excel. Results: The minimum prevalence of PID in Germany is 2.72 per 100,000 inhabitants. Among patients aged 1-25, there was a clear predominance of males. The median age of living patients ranged between 7 and 40 years, depending on the respective PID. Predominantly antibody disorders were the most prevalent group with 57% of all 2,453 PID patients (including 728 CVID patients). A gene defect was identified in 36% of patients. Familial cases were observed in 21% of patients. The age of onset for presenting symptoms ranged from birth to late adulthood (range 0-88 years). Presenting symptoms comprised infections (74%) and immune dysregulation (22%). Ninety-three patients were diagnosed without prior clinical symptoms. Regarding the general and clinical diagnostic delay, no PID had undergone a slight decrease within the last decade. However, both, SCID and hyper IgE-syndrome showed a substantial improvement in shortening the time between onset of symptoms and genetic diagnosis. Regarding treatment, 49% of all patients received immunoglobulin G (IgG) substitution (70%-subcutaneous; 29%-intravenous; 1%-unknown). Three-hundred patients underwent at least one hematopoietic stem cell transplantation (HSCT). Five patients had gene therapy. Conclusion: The German PID-NET registry is a precious tool for physicians, researchers, the pharmaceutical industry, politicians, and ultimately the patients, for whom the outcomes will eventually lead to a more timely diagnosis and better treatment. KW - registry for primary immunodeficiency KW - primary immunodeficiency (PID) KW - German PID-NET registry KW - PID prevalence KW - European Society for Immunodeficiencies (ESID) KW - IgG substitution therapy KW - CVID Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-226629 VL - 10 ER - TY - THES A1 - Schulz, Carsten T1 - Analyse des Replikationsprozesses der Maus T1 - Analysis of the murine replication process N2 - Die Initiation der DNA-Replikation ist in Eukaryonten ein hochkonservierter Prozess. Zuerst bindet der „origin recognition complex“ (ORC) an Replikationsstartpunkte chromosomaler DNA und stellt das Startsignal für die Assemblierung des präreplikativen Komplexes (pre-RC) dar. Anschließend assoziieren die Initiationsfaktoren CDC6 und CDT1 mit dem ORC. Durch die Rekrutierung des MCM-Komplexes wird der pre-RC schließlich vervollständigt. Die Aktivität der CDC7/DBF4-Kinase und die Anlagerung von CDC45 lizensiert den Origin für die DNA-Replikation. Ein Ziel dieser Arbeit war, den vollständigen murinen ORC rekombinant darzustellen. Um den gesamten Komplex durch Copräzipitation zu isolieren, wurden ORC1, 3, 4, 5 und 6 als Wildtyp-Proteine und ORC2 mit einer N-terminalen Poly-His-Domäne mit Hilfe von Baculoviren koexprimiert. Nach der Aufreinigung konnten, mit Ausnahme von ORC3, alle ORC-Untereinheiten in den Elutionsfraktionen immundetektiert werden. Eine Gelfiltration der Fraktionen ließ auf die Isolierung eines 450 kD großen Komplexes schließen, der mindestens fünf der sechs ORC-Untereinheiten enthielt. Dies zeigt, dass der murine ORC als Holokomplex rekombinant isoliert werden kann. In einem weiteren Teil dieser Arbeit sollte die Rolle des MCM-Komplexes bei der Termination der DNA-Replikation am 3'-Ende muriner rDNA-Transkriptionseinheiten untersucht werden. Durch polare Replikationsgabelbarrieren im 3'-Bereich der ribosomalen Gene wird über die Kontrahelikaseaktivität von TTF-I die Bewegungsrichtung der Replikation auf die Richtung der Transkription limitiert. In dieser Arbeit sollte festgestellt werden, ob dies auch bei der murinen MCM4/6/7-Helikase der Fall ist. Um MCM4/6/7-Hexamere zu isolieren, wurden die Untereinheiten MCM4 und 7 in Wildtyp-Form und MCM6 mit einem N-terminal fusionierten HA-Tag mittels Baculoviren koexprimiert. Zur Durchführung der Kontrahelikasestudien musste die Helikaseaktivität der isolierten Komplexe ermittelt werden. Bereits mit kurzen partiell doppelsträngigen M13-Substraten (17 nt) zeigte sich eine geringere Entwindungsfähigkeit als in der Literatur beschrieben. Bei weiteren Helikasestudien wurden DNA-Substrate (30 nt) mit einem 5'-Überhang sowie SSB bzw. RPA eingesetzt. Zwar konnte so eine Steigerung der Helikaseaktivität von MCM4/6/7 verzeichnet werden, jedoch fand diese nicht in ausreichendem Maße statt. Zudem war das entwundene Oligonukleotid einem Abbau unterworfen, dessen Ursache nicht aufgeklärt werden konnte. Aufgrund der zu geringen Helikaseaktivität im Hinblick auf die TTF-I-Kontrahelikasestudien wurden diese Arbeiten eingestellt. Ein weiterer Aspekt dieser Arbeit war der Transport von MCM-Proteinen in den Zellkern. Der MCM-Komplex ist in fast allen Organismen konstitutiv im Zellkern lokalisiert. Die Überexpression einzelner exogener MCM-Proteine zeigte allerdings, dass nur MCM2 und 3 mit Hilfe ihrer ihrer NLS-Motive in den Kern transportiert werden, während dies bei MCM4 bis 7 nicht erfolgt. Two-Hybrid-Studien unserer Arbeitsgruppe ließen auf paarweise Wechselwirkungen der MCM4 bis 7-Untereinheiten mit MCM2 bzw. MCM3 schließen. Deshalb wurden EGFP-MCM-Proteine zusammen mit Wildtyp-MCM-Proteinen in Mauszellen koexprimiert. Dabei zeigte sich, dass MCM2 die Proteine MCM4, 6 und 7 in den Kern transportiert, während MCM3 nur MCM5 in den Zellkern einschleust. Weitere Interaktionen zwischen MCM6 und 4 sowie zwischen MCM6 und 7 konnten bei MCM4/6/7-Aufreinigungen beobachtet werden. Zuletzt wurde noch die Lokalisation von CDT1 in der OBR-Region des murinen rDNA-Cistrons untersucht. Bislang wurde nur in S. cerevisiae eine sequenzspezifische ORC-Bindung an ACS-Bereiche identifiziert. In unserer Arbeitsgruppe konnte im murinen rDNA-Cluster stromaufwärts des Transkriptionsstartpunktes ein Origin charakterisiert und die Bindungstelle verschiedener Initiatorproteine um die Position -2500 eingegrenzt werden. Die Assoziation von CDT1 mit derselben Region würde die Assemblierung eines pre-RC in dem untersuchten Bereich zusätzlich bestätigen. Zur Umsetzung von ChIP-Studien wurden CDT1-Antikörper hergestellt. Um die Assemblierung von CDT1 mit dem Origin in Abhängigkeit des Zellzyklus zu untersuchen, wurden FM3A-Mauszellen in früher G1-, später G1-, G1/S-, S- und in der G2/M-Phase arretiert. Die Auswertung der ChIP-Analysen, die den zu analysierenden Bereich von -2837 bis -1820 umspannten, zeigte, dass CDT1 ausschließlich während der G1-Phase mit dem Chromatin assoziiert ist. Dies ist konsistent mit der Aktivität von CDT1 während des Zellzyklus in Säugern. Der höchste Anteil an DNA-gebundenem CDT1 konnte in dem Bereich -2519 bis -2152 festgestellt werden. Eine Sequenzanalyse des OBR der murinen rDNA lieferte keine Homologie zu anderen bekannten Origins. Jedoch wurden diverse DNA-Strukturelemente, wie z.B. HSS, DUEs oder CpG-Inseln, sowie verschiedene Protein-Bindungsstellen gefunden, die potentiellen Einfluss auf die Festlegung des murinen OBR haben könnten. N2 - The eukaryotic initiation of DNA replication is a highly conserved process. In the first step the binding of the "origin recognition complex" (ORC) to replication origins of chromosomal DNA acts as a start signal for the assembly of the pre-replicative complex (pre-RC). Subsequently the initiation factors CDC6 and CDT1 associate with ORC. The following recruitment of the MCM complex finally completes the pre-RC. The activity of the CDC7/DBF4 kinase and the binding of CDC45 license the origin and allow the initiation of DNA replication. One aim of this work was to purify a recombinant murine ORC. In order to isolate the entire complex by co-precipitation, wild-type ORC1, 3, 4, 5 and 6 and ORC2 that contained a His6 epitope tag at its N-terminus were co-expressed by means of baculoviruses. After the following purification, all ORC subunits with the exception of ORC3 were detected in the isolated fractions by immunoplotting. Analysis of the fractions after gel filtration indicated the isolation of a large complex corresponding to a molecular mass of 450 kD, which contained at least five of the six ORC subunits. Therefore, we assume that the recombinant murine ORC was isolated as a holo-complex. A further part of this work deals with the role of the MCM complex in the termination of DNA replication at the 3' end of murine rRNA transcription units. Polar replication fork barriers in the 3' region of ribosomal genes limit progression of DNA replication to the same direction as rDNA transcription by the contrahelicase activity of TTF-I. In this study it should be determined whether murine MCM4/6/7 helicase activity is impaired in the same manner. In order to isolate hexameric MCM4/6/7 complexes wild-type MCM4 and MCM7 proteins and MCM6 with an N-terminal fused HA epitope tag were coexpressed by means of baculoviruses. For contrahelicase experiments, the helicase activity of the isolated complexes had to be obtained. The unwinding activity of short partial duplex M13-substrates (17 nt) was lower than described in literature. For subsequent contrahelicase studies DNA substrates (30 nt) with a 5' tail as well as SSB or RPA were applied. Though it was possible to increase the helicase activity of MCM4/6/7 by forked DNA substrates, this was not sufficient for our studies. Moreover, the unwound oligonucleotide was subjected to degradation, the cause of which could not be explained. The work on this topic was stopped since the helicaseactivity of MCM4/6/7 was insufficient regarding further TTF-I contrahelikase studies. A further aspect of this work was the transport of MCM proteins into the nucleus. The MCM complex is constitutively located in the nucleus of almost all organisms. However, the overexpression of individual ectopically expressed MCM proteins showed that only MCM2 and 3 are transported into the nucleus due to their NLS motives, while this is not possible for MCM4 to 7. Two-hybrid studies of our group suggested pairwise interactions of MCM4, 6, 5 and 7 with MCM2 and/or MCM3. Therefore, various EGFP-MCM proteins were coexpressed together with wild-type MCM proteins in mice cells. It was shown that MCM2 directs MCM4, 6 and 7 into the nucleus, whereas MCM3 transfers only MCM5 into the nucleus. This behaviour reflects possible pairwise interactions within MCM subcomplexes. Further interactions of MCM6 with MCM4 and MCM7 were observed at MCM4/6/7 purifications described above. Further the cell cycle-dependent localization of CDT1 in the OBR region of the murine rRNA transcription unit was examined. So far only in S. cerevisiae a sequence-specific ORC assembly at the ACS region has been identified. In our group a murine OBR has been characterized upstream to the rDNA transcription start site und the binding site of various initiation factors has been localized around position -2500. The association of CDT1 within the same region would confirm the assembly of a pre-RC. For ChIP studies monospecific antibodies against CDT1 have been produced. In order to examine the cell cycle-dependent assembly of CDT1 within the initiation site, FM3A cells were arrested in early G1 phase, in late G1 phase, at the G1/S transition, in S phase and in the G2/M phase. The evaluation of the ChIP studies, which encompassed the range from -2837 to -1820 revealed, however, that CDT1 is associated with the chromatin exclusively during the G1-Phase. This is consistent with the activity of CDT1 during the cell cycle in mammalian cells. The major part of DNA-bound CDT1 was observed within the range -2519 to -2152. The sequence of the murine OBR exhibits no homology to other origins described in the literature. But sequence analysis revealed various DNA structure elements, e.g. HSS, DUEs or CpG islands, as well as several protein binding sites of potential importance for determination of the murine OBR. KW - Maus KW - Replikation KW - Replikationsursprung KW - Replikation KW - Initiation KW - ORC KW - MCM KW - CDT1 KW - replication KW - initiation KW - ORC KW - MCM KW - CDT1 Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-11199 ER - TY - JOUR A1 - Feldheim, Jonas A1 - Kessler, Almuth F. A1 - Feldheim, Julia J. A1 - Schulz, Ellina A1 - Wend, David A1 - Lazaridis, Lazaros A1 - Kleinschnitz, Christoph A1 - Glas, Martin A1 - Ernestus, Ralf-Ingo A1 - Brandner, Sebastian A1 - Monoranu, Camelia M. A1 - Löhr, Mario A1 - Hagemann, Carsten T1 - Effects of long-term temozolomide treatment on glioblastoma and astrocytoma WHO grade 4 stem-like cells JF - International Journal of Molecular Sciences N2 - Glioblastoma leads to a fatal course within two years in more than two thirds of patients. An essential cornerstone of therapy is chemotherapy with temozolomide (TMZ). The effect of TMZ is counteracted by the cellular repair enzyme O\(^6\)-methylguanine-DNA methyltransferase (MGMT). The MGMT promoter methylation, the main regulator of MGMT expression, can change from primary tumor to recurrence, and TMZ may play a significant role in this process. To identify the potential mechanisms involved, three primary stem-like cell lines (one astrocytoma with the mutation of the isocitrate dehydrogenase (IDH), CNS WHO grade 4 (HGA)), and two glioblastoma (IDH-wildtype, CNS WHO grade 4) were treated with TMZ. The MGMT promoter methylation, migration, proliferation, and TMZ-response of the tumor cells were examined at different time points. The strong effects of TMZ treatment on the MGMT methylated cells were observed. Furthermore, TMZ led to a loss of the MGMT promoter hypermethylation and induced migratory rather than proliferative behavior. Cells with the unmethylated MGMT promoter showed more aggressive behavior after treatment, while HGA cells reacted heterogenously. Our study provides further evidence to consider the potential adverse effects of TMZ chemotherapy and a rationale for investigating potential relationships between TMZ treatment and change in the MGMT promoter methylation during relapse. KW - glioblastoma KW - astrocytoma KW - IDH KW - MGMT KW - therapy KW - temozolomide KW - cancer stem cells Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-284417 SN - 1422-0067 VL - 23 IS - 9 ER - TY - JOUR A1 - Schulz, Ellina A1 - Mawamba, Viviane A1 - Löhr, Mario A1 - Hagemann, Carsten A1 - Friedrich, Alexandra A1 - Schatzschneider, Ulrich T1 - Structure–activity relations of Pd(II) and Pt(II) thiosemicarbazone complexes on different human glioblastoma cell lines JF - Zeitschrift für Anorganische und Allgemeine Chemie N2 - Ten thiosemicarbazone ligands obtained by condensation of pyridine-2-carbaldehyde, quinoline-2-carbaldehyde, 2-acetylpyridine, 2-acetylquinoline, or corresponding 2-pyridyl ketones with thiosemicarbazides RNHC(S)NHNH\(_{2}\) and R=CH\(_{3}\), C\(_{6}\)H\(_{5}\) were prepared in good yield. The reaction of [PdCl\(_{2}\)(cod)] with cod=1,5-cyclooctadiene or K\(_{2}\)[PtCl\(_{4}\)] resulted in a total of 17 Pd(II) and Pt(II) complexes isolated in excellent purity, as demonstrated by \(^{1}\)H, \(^{13}\)C, and, where applicable, \(^{195\)Pt NMR spectroscopy combined with CHNS analysis. The cytotoxicity of the title compounds was studied on four human glioblastoma cell lines (GaMG, U87, U138, and U343). The most active compound, with a Pd(II) metal centre, a 2-quinolinyl ring, and methyl groups on both the proximal C and distal N atoms exhibited an EC\(_{50}\) value of 2.1 μM on the GaMG cell lines, thus being slightly more active than cisplatin (EC\(_{50}\) 3.4 μM) and significantly more potent than temozolomide (EC\(_{50}\) 67.1 μM). Surprisingly, the EC\(_{50}\) values were inversely correlated with the lipophilicity, as determined with the “shake-flask method”, and decreased with the length of the alkyl substituents (C\(_{1}\)>C\(_{8}\)>C\(_{10}\)). Correlation with the different structural motifs showed that for the most promising anticancer activity, a maximum of two aromatic rings (either quinolinyl or pyridyl plus phenyl) combined with one methyl group are favoured and the Pd(II) complexes are slightly more potent than their Pt(II) analogues. KW - glioblastoma KW - platinum KW - palladium KW - thiosemicarbazone KW - anticancer activity Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-318281 SN - 0044-2313 VL - 648 IS - 12 ER - TY - JOUR A1 - Nickl, Vera A1 - Schulz, Ellina A1 - Salvador, Ellaine A1 - Trautmann, Laureen A1 - Diener, Leopold A1 - Kessler, Almuth F. A1 - Monoranu, Camelia M. A1 - Dehghani, Faramarz A1 - Ernestus, Ralf-Ingo A1 - Löhr, Mario A1 - Hagemann, Carsten T1 - Glioblastoma-derived three-dimensional ex vivo models to evaluate effects and efficacy of Tumor Treating Fields (TTFields) JF - Cancers N2 - Simple Summary In glioblastoma, tumor recurrence is inevitable and the prognosis of patients is poor, despite multidisciplinary treatment approaches involving surgical resection, radiotherapy and chemotherapy. Recently, Tumor Treating Fields (TTFields) have been added to the therapeutic set-up. These alternating electric fields are applied to glioblastoma at 200 kHz frequency via arrays placed on the shaved scalp of patients. Patients show varying response to this therapy. Molecular effects of TTFields have been investigated largely in cell cultures and animal models, but not in patient tissue samples. Acquisition of matched treatment-naïve and recurrent patient tissues is a challenge. Therefore, we suggest three reliable patient-derived three-dimensional ex vivo models (primary cells grown as microtumors on murine organotypic hippocampal slices, organoids and tumor slice cultures) which may facilitate prediction of patients’ treatment responses and provide important insights into clinically relevant cellular and molecular alterations under TTFields. Abstract Glioblastoma (GBM) displays a wide range of inter- and intra-tumoral heterogeneity contributing to therapeutic resistance and relapse. Although Tumor Treating Fields (TTFields) are effective for the treatment of GBM, there is a lack of ex vivo models to evaluate effects on patients’ tumor biology or to screen patients for treatment efficacy. Thus, we adapted patient-derived three-dimensional tissue culture models to be compatible with TTFields application to tissue culture. Patient-derived primary cells (PDPC) were seeded onto murine organotypic hippocampal slice cultures (OHSC), and microtumor development with and without TTFields at 200 kHz was observed. In addition, organoids were generated from acute material cultured on OHSC and treated with TTFields. Lastly, the effect of TTFields on expression of the Ki67 proliferation marker was evaluated on cultured GBM slices. Microtumors exhibited increased sensitivity towards TTFields compared to monolayer cell cultures. TTFields affected tumor growth and viability, as the size of microtumors and the percentage of Ki67-positive cells decreased after treatment. Nevertheless, variability in the extent of the response was preserved between different patient samples. Therefore, these pre-clinical GBM models could provide snapshots of the tumor to simulate patient treatment response and to investigate molecular mechanisms of response and resistance. KW - glioblastoma KW - Tumor Treating Fields (TTFields) KW - organotypic hippocampal slice cultures (OHSC) KW - organoids KW - tumor slice cultures KW - 3D ex vivo models Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-290340 SN - 2072-6694 VL - 14 IS - 21 ER - TY - JOUR A1 - Nickl, Vera A1 - Eck, Juliana A1 - Goedert, Nicolas A1 - Hübner, Julian A1 - Nerreter, Thomas A1 - Hagemann, Carsten A1 - Ernestus, Ralf-Ingo A1 - Schulz, Tim A1 - Nickl, Robert Carl A1 - Keßler, Almuth Friederike A1 - Löhr, Mario A1 - Rosenwald, Andreas A1 - Breun, Maria A1 - Monoranu, Camelia Maria T1 - Characterization and optimization of the tumor microenvironment in patient-derived organotypic slices and organoid models of glioblastoma JF - Cancers N2 - While glioblastoma (GBM) is still challenging to treat, novel immunotherapeutic approaches have shown promising effects in preclinical settings. However, their clinical breakthrough is hampered by complex interactions of GBM with the tumor microenvironment (TME). Here, we present an analysis of TME composition in a patient-derived organoid model (PDO) as well as in organotypic slice cultures (OSC). To obtain a more realistic model for immunotherapeutic testing, we introduce an enhanced PDO model. We manufactured PDOs and OSCs from fresh tissue of GBM patients and analyzed the TME. Enhanced PDOs (ePDOs) were obtained via co-culture with PBMCs (peripheral blood mononuclear cells) and compared to normal PDOs (nPDOs) and PT (primary tissue). At first, we showed that TME was not sustained in PDOs after a short time of culture. In contrast, TME was largely maintained in OSCs. Unfortunately, OSCs can only be cultured for up to 9 days. Thus, we enhanced the TME in PDOs by co-culturing PDOs and PBMCs from healthy donors. These cellular TME patterns could be preserved until day 21. The ePDO approach could mirror the interaction of GBM, TME and immunotherapeutic agents and may consequently represent a realistic model for individual immunotherapeutic drug testing in the future. KW - glioblastoma KW - organoids KW - slice culture KW - tumormicroenvironment Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-319249 SN - 2072-6694 VL - 15 IS - 10 ER -