@article{LueckerathLapaMalzahnetal.2014, author = {L{\"u}ckerath, Katharina and Lapa, Constantin and Malzahn, Uwe and Samnick, Samuel and Einsele, Herrmann and Buck, Andreas K. and Herrmann, Ken and Knop, Stefan}, title = {18FDG-PET/CT for prognostic stratification of patients with multiple myeloma relapse after stem cell transplantation}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-113107}, year = {2014}, abstract = {The aim of this study was to investigate the prognostic value of 18F-fluoro-deoxyglucose positron emission tomography-computed tomography (18F-FDG-PET/CT) in 37 patients with a history of multiple myeloma (MM) and suspected or confirmed recurrence after stem cell transplantation (SCT). All patients had been heavily pre-treated. Time to progression (TTP) and overall survival (OS) were correlated to a number of different PET-derived as well as clinical parameters. Impact on patient management was assessed. Absence of FDG-avid MM foci was a positive prognostic factor for both TTP and OS (p<0.01). Presence of >10 focal lesions correlated with both TTP (p<0.01) and OS (p<0.05). Interestingly, presence of >10 lesions in the appendicular skeleton proved to have the strongest association with disease progression. Intensity of glucose uptake and presence of extramedullary disease were associated with shorter TTP (p=0.037 and p=0.049, respectively). Manifestations in soft tissue structures turned out to be a strong negative predictor for both, TTP and OS (p<0.01, respectively). PET resulted in a change of management in 30\% of patients. Our data underline the prognostic value of 18F-FDG-PET/CT in MM patients also in the setting of post-SCT relapse. PET/CT has a significant impact on patient management.}, language = {en} } @phdthesis{Riedel2013, author = {Riedel, Simone Stefanie}, title = {Characterization of the fluorescence protein FP635 for in vivo imaging and establishment of a murine multiple myeloma model for non-invasive imaging of disease progression and response to therapy}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-77894}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2013}, abstract = {Optical in vivo imaging methods have advanced the fields of stem cell transplantation, graft-versus-host disease and graft-versus-tumor responses. Two well known optical methods, based on the transmission of light through the test animal are bioluminescence imaging (BLI) and fluorescence imaging (FLI). Both methods allow whole body in vivo imaging of the same animal over an extended time span where the cell distribution and proliferation can be visualized. BLI has the advantages of producing almost no unspecific background signals and no necessity for external excitation light. Hence, BLI is a highly sensitive and reliable detection method. Yet, the BLI reporter luciferase is not applicable with common microscopy techniques, therefore abolishing this method for cellular resolution imaging. FLI in turn, presents the appealing possibility to use one fluorescent reporter for whole body imaging as well as cellular resolution applying microscopy techniques. The absorption of light occurs mainly due to melanin and hemoglobin in wavelengths up to 650 nm. Therefore, the wavelength range beyond 650 nm may allow sensitive optical imaging even in deep tissues. For this reason, significant efforts are undertaken to isolate or develop genetically enhanced fluorescent proteins (FP) in this spectral range. "Katushka" also called FP635 has an emission close to this favorable spectrum and is reported as one of the brightest far-red FPs. Our experiments also clearly showed the superiority of BLI for whole body imaging over FLI. Based on these results we applied the superior BLI technique for the establishment of a pre-clinical multiple myeloma (MM) mouse model. MM is a B-cell disease, where malignant plasma cells clonally expand in the bone marrow (BM) of older people, causing significant morbidity and mortality. Chromosomal abnormalities, considered a hallmark of MM, are present in nearly all patients and may accumulate or change during disease progression. The diagnosis of MM is based on clinical symptoms, including the CRAB criteria: increased serum calcium levels, renal insufficiency, anemia, and bone lesions (osteolytic lesions or osteoporosis with compression fractures). Other clinical symptoms include hyperviscosity, amyloidosis, and recurrent bacterial infections. Additionally, patients commonly exhibit more than 30\% clonal BM plasma cells and the presence of monoclonal protein is detected in serum and/or urine. With current standard therapies, MM remains incurable and patients diagnosed with MM between 2001 and 2007 had a 5-year relative survival rate of only 41\%. Therefore, the development of new drugs or immune cell-based therapies is desirable and necessary. To this end we developed the MOPC-315 cell line based syngeneic MM mouse model. MOPC-315 cells were labeled with luciferase for in vivo detection by BLI. We validated the non-invasively obtained BLI data with histopathology, measurement of idiotype IgA serum levels and flow cytometry. All methods affirmed the reliability of the in vivo BLI data for this model. We found that this orthotopic MM model reflects several key features of the human disease. MOPC-315 cells homed efficiently to the BM compartment including subsequent proliferation. Additionally, cells disseminated to distant skeletal parts, leading to the typical multifocal MM growth. Osteolytic lesions and bone remodeling was also detected. We found evidence that the cell line had retained plasticity seen by dynamic receptor expression regulation in different compartments such as the BM and the spleen.}, subject = {Fluoreszenzproteine}, language = {en} } @article{DaViaSolimandoGaritanoTrojaolaetal.2019, author = {Da Vi{\`a}, Matteo Claudio and Solimando, Antonio Giovanni and Garitano-Trojaola, Andoni and Barrio, Santiago and Munawar, Umair and Strifler, Susanne and Haertle, Larissa and Rhodes, Nadine and Vogt, Cornelia and Lapa, Constantin and Beilhack, Andreas and Rasche, Leo and Einsele, Hermann and Kort{\"u}m, K. Martin}, title = {CIC Mutation as a Molecular Mechanism of Acquired Resistance to Combined BRAF-MEK Inhibition in Extramedullary Multiple Myeloma with Central Nervous System Involvement}, series = {The Oncologist}, volume = {25}, journal = {The Oncologist}, number = {2}, doi = {10.1634/theoncologist.2019-0356}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-219549}, pages = {112-118}, year = {2019}, abstract = {Combined MEK-BRAF inhibition is a well-established treatment strategy in BRAF-mutated cancer, most prominently in malignant melanoma with durable responses being achieved through this targeted therapy. However, a subset of patients face primary unresponsiveness despite presence of the activating mutation at position V600E, and others acquire resistance under treatment. Underlying resistance mechanisms are largely unknown, and diagnostic tests to predict tumor response to BRAF-MEK inhibitor treatment are unavailable. Multiple myeloma represents the second most common hematologic malignancy, and point mutations in BRAF are detectable in about 10\% of patients. Targeted inhibition has been successfully applied, with mixed responses observed in a substantial subset of patients mirroring the widespread spatial heterogeneity in this genomically complex disease. Central nervous system (CNS) involvement is an extremely rare, extramedullary form of multiple myeloma that can be diagnosed in less than 1\% of patients. It is considered an ultimate high-risk feature, associated with unfavorable cytogenetics, and, even with intense treatment applied, survival is short, reaching less than 12 months in most cases. Here we not only describe the first patient with an extramedullary CNS relapse responding to targeted dabrafenib and trametinib treatment, we furthermore provide evidence that a point mutation within the capicua transcriptional repressor (CIC) gene mediated the acquired resistance in this patient.}, language = {en} } @article{DotterweichSchlegelmilchKelleretal.2016, author = {Dotterweich, Julia and Schlegelmilch, Katrin and Keller, Alexander and Geyer, Beate and Schneider, Doris and Zeck, Sabine and Tower, Robert J. J. and Ebert, Regina and Jakob, Franz and Sch{\"u}tze, Norbert}, title = {Contact of myeloma cells induces a characteristic transcriptome signature in skeletal precursor cells-implications for myeloma bone disease}, series = {Bone}, volume = {93}, journal = {Bone}, doi = {10.1016/j.bone.2016.08.006}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-186688}, pages = {155-166}, year = {2016}, abstract = {Physical interaction of skeletal precursors with multiple myeloma cells has been shown to suppress their osteogenic potential while favoring their tumor-promoting features. Although several transcriptome analyses of myeloma patient-derived mesenchymal stem cells have displayed differences compared to their healthy counterparts, these analyses insufficiently reflect the signatures mediated by tumor cell contact, vary due to different methodologies, and lack results in lineage-committed precursors. To determine tumor cell contact-mediated changes on skeletal precursors, we performed transcriptome analyses of mesenchymal stem cells and osteogenic precursor cells cultured in contact with the myeloma cell line INA-6. Comparative analyses confirmed dysregulation of genes which code for known disease-relevant factors and additionally revealed upregulation of genes that are associated with plasma cell homing, adhesion, osteoclastogenesis, and angiogenesis. Osteoclast-derived coupling factors, a dysregulated adipogenic potential, and an imbalance in favor of anti-anabolic factors may play a role in the hampered osteoblast differentiation potential of mesenchymal stem cells. Angiopoietin-Like 4 (ANGPTL4) was selected from a list of differentially expressed genes as a myeloma cell contact-dependent target in skeletal precursor cells which warranted further functional analyses. Adhesion assays with full-length ANGPTL4-coated plates revealed a potential role of this protein in INA6 cell attachment. This study expands knowledge of the myeloma cell contact-induced signature in the stromal compartment of myelomatous bones and thus offers potential targets that may allow detection and treatment of myeloma bone disease at an early stage.}, language = {en} } @phdthesis{Hetterich2021, author = {Hetterich, Regina}, title = {Medikamenten-assoziierte Kiefernekrosen beim Multiplen Myelom - eine retrospektive unizentrische Analyse}, doi = {10.25972/OPUS-23975}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-239756}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2021}, abstract = {Eine ernstzunehmende Nebenwirkung der anti-resorptiven Therapie (AR-Therapie) beim Multiplem Myelom ist die Medikamenten-assoziierten Kiefernekrose. F{\"u}r die vorliegende Arbeit wurden 50 Patienten mit Medikamenten-assoziierter Kiefernekrose (MRONJ-Gruppe) einer gleich großen Kontrollgruppe ohne Medikamenten- assoziierter Kiefernekrose (KTRL-Gruppe) gegen{\"u}bergestellt. In der MRONJ-Gruppe dauerte die AR-Therapie signifikant l{\"a}nger als in der KTRL-Gruppe (p < 0,001). Die MRONJ-Patienten erhielten die AR-Therapie im Schnitt knapp 4 Jahre, die KTRL- Patienten 2,5 Jahre. Zudem wurde den MRONJ-Patienten die AR-Therapie signifikant h{\"a}ufiger im 4-w{\"o}chentlichen Intervall verabreicht als den KTRL-Patienten (n = 49 vs. n = 36, p = 0,003). Das mediane Gesamt{\"u}berleben der MRONJ-Gruppe lag signifikant {\"u}ber dem Gesamt{\"u}berleben der KTRL-Gruppe (126 vs. 86 Monate, p = 0,013). Das mediane Gesamt{\"u}berleben des gesamten Patientenkollektivs lag bei 111 Monaten. Zudem korrelierte das Gesamt{\"u}berleben aller Patienten dieser Arbeit signifikant mit der kumulativen Zoledronatdosis (p < 0,001, r = 0,557). Die Stadieneinteilung und die CRAB-Kriterien zeigten bei Erstdiagnose keine signifikanten Unterschiede zwischen den Gruppen. Die Gr{\"u}nde f{\"u}r das l{\"a}ngere Gesamt{\"u}berleben der MRONJ-Gruppe k{\"o}nnen auf die Unterschiede in der AR-Therapie zur{\"u}ckgef{\"u}hrt werden. Es bestand ein signifikanter Unterschied in der Therapiedauer, dem verabreichten Intervall und der kumulativen Zoledronatdosis zwischen den beiden Gruppen. Die Sinnhaftigkeit der Fortf{\"u}hrung der AR-Therapie muss regelm{\"a}ßig evaluiert werden und eine engmaschige Untersuchung des stomatognathen Systems ist von h{\"o}chster Relevanz, um ein l{\"a}ngeres {\"U}berleben bei guter Lebensqualit{\"a}t zu erm{\"o}glichen.}, subject = {Multiple myeloma}, language = {de} } @article{EbertDotterweichKrausetal.2014, author = {Ebert, Regina and Dotterweich, Julia and Kraus, Sabrina and Tower, Robert J. and Jakob, Franz and Sch{\"u}tze, Norbert}, title = {Mesenchymal stem cell contact promotes CCN1 splicing and transcription in myeloma cells}, doi = {10.1186/1478-811X-12-36}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-110497}, year = {2014}, abstract = {CCN family member 1 (CCN1), also known as cysteine-rich angiogenic inducer 61 (CYR61), belongs to the extracellular matrix-associated CCN protein family. The diverse functions of these proteins include regulation of cell migration, adhesion, proliferation, differentiation and survival/apoptosis, induction of angiogenesis and cellular senescence. Their functions are partly overlapping, largely non-redundant, cell-type specific, and depend on the local microenvironment. To elucidate the role of CCN1 in the crosstalk between stromal cells and myeloma cells, we performed co-culture experiments with primary mesenchymal stem cells (MSC) and the interleukin-6 (IL-6)-dependent myeloma cell line INA-6. Here we show that INA-6 cells display increased transcription and induction of splicing of intron-retaining CCN1 pre-mRNA when cultured in contact with MSC. Protein analyses confirmed that INA-6 cells co-cultured with MSC show increased levels of CCN1 protein consistent with the existence of a pre-mature stop codon in intron 1 that abolishes translation of unspliced mRNA. Addition of recombinant CCN1-Fc protein to INA-6 cells was also found to induce splicing of CCN1 pre-mRNA in a concentration-dependent manner. Only full length CCN1-Fc was able to induce mRNA splicing of all introns, whereas truncated recombinant isoforms lacking domain 4 failed to induce intron splicing. Blocking RGD-dependent integrins on INA-6 cells resulted in an inhibition of these splicing events. These findings expand knowledge on splicing of the proangiogenic, matricellular factor CCN1 in the tumor microenvironment. We propose that contact with MSC-derived CCN1 leads to splicing and enhanced transcription of CCN1 which further contributes to the translation of angiogenic factor CCN1 in myeloma cells, supporting tumor viability and myeloma bone disease.}, language = {en} } @phdthesis{Luethen2021, author = {L{\"u}then, Julia}, title = {Stellenwert des Heavy Light Chain Assays in Diagnostik und Therapiemonitoring des Multiplen Myeloms - Vergleich mit konventionellen Analysen und minimaler Resterkrankung}, doi = {10.25972/OPUS-24222}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-242223}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2021}, abstract = {Das Multiple Myelom ist eine komplexe Erkrankung, dessen Tumorbiologie noch immer nicht in G{\"a}nze verstanden ist. Mit dem Heavy Light Chain Assay (Hevylite®) war es erstmals m{\"o}glich, mit spezifischen Antik{\"o}rpern nicht nur zwischen den Klassen intakter Immunglobuline, sondern auch zwischen kappa- und lambda-Isotyp zu differenzieren. Dies ist in der Behandlung von Patient*innen mit Multiplem Myelom sehr n{\"u}tzlich, um das vom Tumor produzierte klonale Immunglobulin von den funktionalen Immunglobulinen getrennt zu quantifizieren. Dadurch sollen die Tumorlast und die einhergehende Immunsuppression genauer erfasst werden. Den zus{\"a}tzlichen Nutzen f{\"u}r Diagnostik und Therapiemonitoring des Multiplen Myeloms untersuchen wir in dieser Arbeit anhand von Daten einer multizentrischen, randomisierten Phase 3- Medikamentenstudie (DSMM XIV) mit dem Vorteil, hierdurch eine große und weitgehend einheitlich behandelte Kohorte und Zugang zu modernen Messmethoden zu haben. Wir best{\"a}tigen, dass das Heavy Light Chain Assays insbesondere zur Erkennung von IgA-Myelomen eine hohe Sensitivit{\"a}t bei negativer Serumproteinelektrophorese hat. Weiterhin zeigen wir, dass je nach Zeitpunkt in der Therapie das Heavy Light Chain Assay ein h{\"o}heres Risiko f{\"u}r einen Progress vorhersagt als bisher verwendete Methoden. Signifikante Unterschiede im progressionsfreien {\"U}berleben finden wir nicht nur je nach H{\"o}he der kappa/lambda Heavy Light Chain-Ratio des involvierten Immunglobulins, sondern auch bei Suppression der nicht involvierten Heavy Light Chain. Zudem beschreiben wir eine hohe Korrelation zwischen hoch abnormaler kappa/lambda Heavy Light Chain-Ratio des involvierten Immunglobulins und positivem Minimal Residual Disease Status in der Durchflusszytometrie. Wir empfehlen daher anhand unserer Ergebnisse, dass das Heavy Light Chain Assay einen Platz in der diagnostischen Routine erh{\"a}lt und als prognostischer Faktor zus{\"a}tzlich in die Response-Kriterien integriert wird.}, subject = {Multiples Myelom}, language = {de} } @article{DahlhoffManzSteinfattetal.2022, author = {Dahlhoff, Julia and Manz, Hannah and Steinfatt, Tim and Delgado-Tascon, Julia and Seebacher, Elena and Schneider, Theresa and Wilnit, Amy and Mokhtari, Zeinab and Tabares, Paula and B{\"o}ckle, David and Rasche, Leo and Martin Kort{\"u}m, K. and Lutz, Manfred B. and Einsele, Hermann and Brandl, Andreas and Beilhack, Andreas}, title = {Transient regulatory T-cell targeting triggers immune control of multiple myeloma and prevents disease progression}, series = {Leukemia}, volume = {36}, journal = {Leukemia}, number = {3}, issn = {1476-5551}, doi = {10.1038/s41375-021-01422-y}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-271787}, pages = {790-800}, year = {2022}, abstract = {Multiple myeloma remains a largely incurable disease of clonally expanding malignant plasma cells. The bone marrow microenvironment harbors treatment-resistant myeloma cells, which eventually lead to disease relapse in patients. In the bone marrow, CD4\(^{+}\)FoxP3\(^{+}\) regulatory T cells (Tregs) are highly abundant amongst CD4\(^{+}\) T cells providing an immune protective niche for different long-living cell populations, e.g., hematopoietic stem cells. Here, we addressed the functional role of Tregs in multiple myeloma dissemination to bone marrow compartments and disease progression. To investigate the immune regulation of multiple myeloma, we utilized syngeneic immunocompetent murine multiple myeloma models in two different genetic backgrounds. Analyzing the spatial immune architecture of multiple myeloma revealed that the bone marrow Tregs accumulated in the vicinity of malignant plasma cells and displayed an activated phenotype. In vivo Treg depletion prevented multiple myeloma dissemination in both models. Importantly, short-term in vivo depletion of Tregs in mice with established multiple myeloma evoked a potent CD8 T cell- and NK cell-mediated immune response resulting in complete and stable remission. Conclusively, this preclinical in-vivo study suggests that Tregs are an attractive target for the treatment of multiple myeloma.}, language = {en} }