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Institute
- Medizinische Klinik und Poliklinik II (545) (remove)
Schriftenreihe
Sonstige beteiligte Institutionen
- Johns Hopkins School of Medicine (3)
- Center for Interdisciplinary Clinical Research, Würzburg University, Würzburg, Germany (2)
- Betriebsärztlicher Dienst der Universität Würzburg (1)
- Clinical Trial Center (CTC) / Zentrale für Klinische Studien Würzburg (ZKSW) (1)
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- Department of Medicine A, University Hospital of Münster, Münster, Germany (1)
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ResearcherID
- N-2030-2015 (1)
Die AML stellt mit einem Anteil von 80 % an den akuten Leukämien bei Erwachsenen eine bedeutende Erkrankung für die Gesellschaft dar. Aufgrund fehlender durchbrechender Erfolge in der Therapieentwicklung liegt die durchschnittliche Fünfjahresüberlebensrate dennoch nur bei etwa 25 %. Der Blick auf die Kraft des Graft-versus-Leukämie-Effekts nach allogener Stammzelltransplantation, eine Langzeitremission der AML erzielen zu können, weist jedoch auf die Immunogenität und Eignung der Erkrankung für neue immuntherapeutische Ansätze hin.
Anhand der Kartierung der in-vivo präsentierten MHC-Klasse-I-Peptidome auf
AML-Blasten sollten in dieser Arbeit potenziell geeignete Therapietargets identifiziert werden, um eine breitere Anwendung immuntherapeutischer Strategien bei AML-Patienten zu ermöglichen. Auf primären Patientenmaterialien, Zelllinien und benignen Zellen wurden hierzu über eine Immunoaffinitätschromatographie mit nachfolgenden Purifizierungsschritten
die MHC-präsentierten Peptide massenspekrometrisch-basiert
identifiziert. Zusätzlich erfolgte eine Quantifizierung der Oberflächen- und intrazellulären MHC-Klasse-I-Moleküle der verwendeten Proben durch einen indirekten Immunfluoreszenz-Assay.
Unter der Gesamtheit von 17.750 identifizierten nicht-redundanten MHC-Klasse-
I-präsentierten Peptiden konnte eine Vielzahl von 5.626 Peptiden mit Präsentationsfrequenzen bis zu 72 % als AML-exklusiv beschrieben werden. Hierunter wurden 240 kryptische Peptide vermeintlich nicht-codierenden Ursprungs identifiziert. Zudem wurden mehrere potenziell CMV-kreuzreaktive AML-Peptide erfasst, die zu der reduzierten Rezidivrate bei CMV-Infektion nach allogener Stammzelltransplantation führen könnten. Bei der MHC-Quantifizierung wiesen die AML-Blasten keine verminderte MHC-Expression auf und stellten sich somit als geeignete Target-Zellen für eine T-Zell-Immuntherapie dar.
A liquid chromatography tandem mass spectrometry method for the analysis of ten kinase inhibitors (afatinib, axitinib, bosutinib,cabozantinib, dabrafenib, lenvatinib, nilotinib, osimertinib, ruxolitinib, and trametinib) in human serum and plasma for theapplication in daily clinical routine has been developed and validated according to the US Food and Drug Administration andEuropean Medicines Agency validation guidelines for bioanalytical methods. After protein precipitation of plasma samples withacetonitrile, chromatographic separation was performed at ambient temperature using a Waters XBridge® Phenyl 3.5μm(2.1×50 mm) column. The mobile phases consisted of water-methanol (9:1, v/v) with 10 mM ammonium bicarbonate as phase A andmethanol-water (9:1, v/v) with 10 mM ammonium bicarbonate as phase B. Gradient elution was applied at a flow rate of 400μL/min. Analytes were detected and quantified using multiple reaction monitoring in electrospray ionization positive mode. Stableisotopically labeled compounds of each kinase inhibitor were used as internal standards. The acquisition time was 7.0 min perrun. All analytes and internal standards eluted within 3.0 min. The calibration curves were linear over the range of 2–500 ng/mLfor afatinib, axitinib, bosutinib, lenvatinib, ruxolitinib, and trametinib, and 6–1500 ng/mL for cabozantinib, dabrafenib, nilotinib,and osimertinib (coefficients of correlation≥0.99). Validation assays for accuracy and precision, matrix effect, recovery,carryover, and stability were appropriate according to regulatory agencies. The rapid and sensitive assay ensures high throughputand was successfully applied to monitor concentrations of kinase inhibitors in patients.
Veränderungen im intestinalen Mikrobiom bei Patienten mit akuter Leukämie im longitudinalen Verlauf
(2020)
In der vorliegenden Studie wurden Veränderungen des Darmmikrobioms anhand von Stuhlproben von Patienten mit akuter Leukämie longitudinal untersucht. Die Patienten wurden mit intensiver Chemotherapie behandelt. Die Therapie als auch die Erkrankung selbst führte zu einer erheblichen Immunsuppression der Patienten. Prophylaktisch und therapeutisch wurden intensive Antibiotikatherapien bei allen Patienten durchgeführt.
Das Mikrobiom wurde quantitativ und qualitativ analysiert. Die Bakterienmenge der Stuhlproben wurde mittels quantitativer Polymerase-Kettenreaktion und die Diversität des Mikrobioms mittels 16s rDNA Sequenzierung aufgezeigt. Zusätzlich dazu fand eine mikrobiologische Kultivierung von Bakterien in Rektalabstrichen statt, um multiresistente Keime nachzuweisen. Ebenso wurde der klinische Verlauf der Patienten dokumentiert.
Insgesamt wurde das Mikrobiom von drei verschiedenen Studiengruppen untersucht: Patienten mit akuter Leukämie, Patienten, die mit multiresistenten Keimen besiedelt waren und sich in der Nachsorge der Würzburger interdisziplinären onkologischen Tagesklinik befanden sowie gesunde Probanden.
Im Mikrobiom der Patienten mit akuter Leukämie war eine deutlich geringere Diversität sowie eine deutlich geringere Bakterienmenge im Vergleich zu beiden anderen Studiengruppen festzustellen. Das Mikrobiom änderte sich während des Therapieverlaufs erheblich und am Beispiel von einigen Patienten konnte gezeigt werden, dass einzelne Bakterien das Mikrobiom dominierten. Des Weiteren waren im Mikrobiom der Patienten mit akuter Leukämie mehr potenziell pathogene sowie weniger potenziell protektive Bakterien im Vergleich zur Kontrollgruppe vorhanden.
Zusammenfassend lässt sich sagen, dass sich das Mikrobiom der Patienten mit akuter Leukämie deutlich von dem der anderen Studiengruppen unterscheidet. Um die Daten zu validieren und einen eventuellen Einfluss des Mikrobioms auf das Überleben der Patienten zu identifizieren, sollten die Untersuchungen an einer deutlich größeren Studienpopulation wiederholt werden.
Background: There is much evidence that T cells are strongly involved in the pathogenesis of localized and systemic forms of scleroderma (SSc). A dysbalance between FoxP3+ regulatory CD4+ T cells (Tregs) and inflammatory T-helper (Th) 17 cells has been suggested. Methods: The study aimed (1) to investigate the phenotypical and functional characteristics of Th17 and Tregs in SSc patients depending on disease manifestation (limited vs. diffuse cutaneous SSc, dcSSc) and activity, and (2) the transcriptional level and methylation status of Th17- and Treg-specific transcription factors. Results: There was a concurrent accumulation of circulating peripheral IL-17-producing CCR6+ Th cells and FoxP3+ Tregs in patients with dcSSc. At the transcriptional level, Th17- and Treg-associated transcription factors were elevated in SSc. A strong association with high circulating Th17 and Tregs was seen with early, active, and severe disease presentation. However, a diminished suppressive function on autologous lymphocytes was found in SSc-derived Tregs. Significant relative hypermethylation was seen at the gene level for RORC1 and RORC2 in SSc, particularly in patients with high inflammatory activity. Conclusions: Besides the high transcriptional activity of T cells, attributed to Treg or Th17 phenotype, in active SSc disease, Tregs may be insufficient to produce high amounts of IL-10 or to control proliferative activity of effector T cells in SSc. Our results suggest a high plasticity of Tregs strongly associated with the Th17 phenotype. Future directions may focus on enhancing Treg functions and stabilization of the Treg phenotype.
TNF-like weak inducer of apoptosis (TWEAK) and inhibition of protein synthesis with cycloheximide (CHX) sensitize for poly(I:C)-induced cell death. Notably, although CHX preferentially enhanced poly(I:C)-induced apoptosis, TWEAK enhanced primarily poly(I:C)-induced necroptosis. Both sensitizers of poly(I:C)-induced cell death, however, showed no major effect on proinflammatory poly(I:C) signaling. Analysis of a panel of HeLa-RIPK3 variants lacking TRADD, RIPK1, FADD, or caspase-8 expression revealed furthermore similarities and differences in the way how poly(I:C)/TWEAK, TNF, and TRAIL utilize these molecules for signaling. RIPK1 turned out to be essential for poly(I:C)/TWEAK-induced caspase-8-mediated apoptosis but was dispensable for this response in TNF and TRAIL signaling. TRADD-RIPK1-double deficiency differentially affected poly(I:C)-triggered gene induction but abrogated gene induction by TNF completely. FADD deficiency abrogated TRAIL- but not TNF- and poly(I:C)-induced necroptosis, whereas TRADD elicited protective activity against all three death inducers. A general protective activity against poly(I:C)-, TRAIL-, and TNF-induced cell death was also observed in FLIPL and FLIPS transfectrants.
Background
International collaborative research is a mechanism for improving the development of disease-specific therapies and for improving health at the population level. However, limited data are available to assess the trends in research output related to orphan diseases.
Methods and Findings
We used bibliometric mapping and clustering methods to illustrate the level of fragmentation in myeloma research and the development of collaborative efforts. Publication data from Thomson Reuters Web of Science were retrieved for 2005-2009 and followed until 2013. We created a database of multiple myeloma publications, and we analysed impact and co-authorship density to identify scientific collaborations, developments, and international key players over time. The global annual publication volume for studies on multiple myeloma increased from 1,144 in 2005 to 1,628 in 2009, which represents a 43% increase. This increase is high compared to the 24% and 14% increases observed for lymphoma and leukaemia. The major proportion (> 90% of publications) was from the US and EU over the study period. The output and impact in terms of citations, identified several successful groups with a large number of intra-cluster collaborations in the US and EU. The US-based myeloma clusters clearly stand out as the most productive and highly cited, and the European Myeloma Network members exhibited a doubling of collaborative publications from 2005 to 2009, still increasing up to 2013.
Conclusion and Perspective
Multiple myeloma research output has increased substantially in the past decade. The fragmented European myeloma research activities based on national or regional groups are progressing, but they require a broad range of targeted research investments to improve multiple myeloma health care.
Background
International consensus criteria (ICC) have redefined borderline resectability for pancreatic ductal adenocarcinoma (PDAC) according to three dimensions: anatomical (BR-A), biological (BR-B), and conditional (BR-C). The present definition acknowledges that resectability is not just about the anatomic relationship between the tumour and vessels but that biological and conditional dimensions also are important.
Methods
Patients’ tumours were retrospectively defined borderline resectable according to ICC. The study cohort was grouped into either BR-A or BR-B and compared with patients considered primarily resectable (R). Differences in postoperative complications, pathological reports, overall (OS), and disease-free survival were assessed.
Results
A total of 345 patients underwent resection for PDAC. By applying ICC in routine preoperative assessment, 30 patients were classified as stage BR-A and 62 patients as stage BR-B. In total, 253 patients were considered R. The cohort did not contain BR-C patients. No differences in postoperative complications were detected. Median OS was significantly shorter in BR-A (15 months) and BR-B (12 months) compared with R (20 months) patients (BR-A vs. R: p = 0.09 and BR-B vs. R: p < 0.001). CA19-9, as the determining factor of BR-B patients, turned out to be an independent prognostic risk factor for OS.
Conclusions
Preoperative staging defining surgical resectability in PDAC according to ICC is crucial for patient survival. Patients with PDAC BR-B should be considered for multimodal neoadjuvant therapy even if considered anatomically resectable.
Background
Pancreatic adenocarcinoma (PDAC) patients with preoperative carbohydrate antigen 19-9 (CA19-9) serum levels higher than 500 U/ml are classified as biologically borderline resectable (BR-B). To date, the impact of cholestasis on preoperative CA19-9 serum levels in these patients has remained unquantified.
Methods
Data on 3079 oncologic pancreatic resections due to PDAC that were prospectively acquired by the German Study, Documentation and Quality (StuDoQ) registry were analyzed in relation to preoperative CA19-9 and bilirubin serum values. Preoperative CA19-9 values were adjusted according to the results of a multivariable linear regression analysis of pathologic parameters, bilirubin, and CA19-9 values.
Results
Of 1703 PDAC patients with tumor located in the pancreatic head, 420 (24.5 %) presented with a preoperative CA19-9 level higher than 500 U/ml. Although receiver operating characteristics (ROC) analysis failed to determine exact CA19-9 cut-off values for prognostic indicators (R and N status), the T, N, and G status; the UICC stage; and the number of simultaneous vein resections increased with the level of preoperative CA19-9, independently of concurrent cholestasis. After adjustment of preoperative CA19-9 values, 18.5 % of patients initially staged as BR-B showed CA19-9 values below 500 U/ml. However, the postoperative pathologic results for these patients did not change compared with the patients who had CA19-9 levels higher than 500 U/ml after bilirubin adjustment.
Conclusions
In this multicenter dataset of PDAC patients, elevation of preoperative CA19-9 correlated with well-defined prognostic pathologic parameters. Bilirubin adjustment of CA19-9 is feasible but does not affect the prognostic value of CA19-9 in jaundiced patients.
p8 ist ein erstmals im Zusammenhang mit akuter Pankreatitis beschriebenes Protein, das im exokrinen und endokrinen Pankreas mit vermehrtem Zellwachstum assoziiert ist. Bei der Analyse seiner Primärstruktur wurde ein speziesübergreifend hoch konservierter Abschnitt, eine sogenannte NLS, ausgemacht, der HMG-Y/I-Proteinen ähnelt. Da HMG-Proteine oft als Transkriptionsfaktoren wirken, wurde die Hypothese formuliert, auch p8 sei ein HMG-Y/I-Protein und wirke als Transkriptionsfaktor im Nukleus. Um die Bedeutung der rp8-NLS näher zu charakterisieren, wurde in INS-1 beta-Zellen ein rp8(NLS-)-EGFP Fusionsprotein ektopisch exprimiert, um dessen subzelluläre Lokalisation zu untersuchen. Es zeigte sich, ähnlich wie bei Kontrollzellen mit ektoper Expression von EGFP allein, eine gleichmäßige Verteilung von rp8(NLS-)-EGFP zwischen Zytoplasma und Nukleus. Da rp8(NLS-) trotz fehlender NLS dennoch in den Kern translozieren kann, scheint die NLS für diesen Vorgang nicht essentiell zu sein. Diese Annahme wird gestützt durch die Beobachtung, dass einzeln exprimiertes rp8(NLS-) seine Proliferation induzierende Wirkung nicht verliert. In Zellzählungsexperimenten zeigte sich, dass ein rp8- bzw. p8(NLS-)-EGFP Fusionsprotein keinen proliferationsfördernden Einfluss in INS-1 und hMSC-TERT Zellen hat. Bei ektoper Expression von rp8 bzw. rp8(NLS-) und hrGFP als Einzelproteine konnte jedoch eine zwischen beiden rp8-Varianten ähnliche und insgesamt signifikante Stimulation der Zellvermehrung beobachtet werden. Dies belegt, dass die Fusion von rp8 an EGFP dessen biologische Funktion inhibiert, während die Deletion der NLS keinen Einfluß darauf hat. Da der proliferative Stimulus von p8 in menschlichen hMSC-TERT Zellen unabhängig von der Herkunft von p8 aus Ratte oder Mensch ist, scheint p8 bei Säugern hoch konserviert zu sein und speziesübergreifend zu wirken. Aus der hier vorgestellten Arbeit geht hervor, dass der molekulare Mechanismus, über den p8 glukoseabhängig proliferationsinduzierend in INS-1 beta-Zellen wirkt, nicht über die NLS vermittelt wird. Weitere Untersuchungen der Wirkungsweise von p8 auf molekularer Ebene könnten in Zukunft einen Ansatz zur in vitro-Generierung ausreichender Mengen an beta-Zellen zur Zelltherapie des Diabetes mellitus bilden.
Um eine Signaltransduktion mittels agnostischer Antikörper an Rezeptoren der TNFRSF zu bewirken, ist eine vorherige Immobilisation über des Fc Anteil des Antikörpers Grundvorraussetzung. In dieser Arbeit sollte die Möglichkeit der Verankerung über eine andere Bindungsdomäne untersucht werden. Es konnte gezeigt werden, dass eine Immobilisation mittels scFv:CD70 zu einer starken Signalaktivierung führt.