3 resultados para cell injection

em ArchiMeD - Elektronische Publikationen der Universität Mainz - Alemanha


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Diese Arbeit befasst sich mit der Rolle des Fibronektins für die Entstehung und des Wachstums von Knochenmetastasen. rnrnTumorzellspezifische Faktoren bereiten entfernte Gewebe auf die Besiedelung durch disseminierte Tumorzellen vor. Dabei wird Fibronektin im Bereich der prämetastatischen Nische vermehrt gebildet. Dies führte zu der Annahme, dass Fibronektin eine wichtige Rolle bei der Entstehung von Tumoren einnimmt. Um die Bedeutung des Fibronektins bezüglich des Metastasierungsprozesses näher zu charakterisieren, wurde dieses im Bereich der vaskulären Nische über das Cre/loxP-System ausgeschaltet. Die Inaktivierung von zirkulierendem Fibronektin und Knochenmarks-Fibronektin in vivo hatte ein verlangsamtes Tumorwachstum zur Folge, welches auf eine um 22% verminderte Angiogenese zurückzuführen war. Im Gegensatz dazu beeinträchtigte die Ausschaltung des Osteoblasten-Fibronektins lediglich die frühen Entwicklungsstadien der Tumore. Diese Beobachtungen könnten einerseits mit der eingeschränkten Funktionsweise der Osteoblasten in Abwesenheit von Fibronektin erklärt werden, andererseits könnte der Einfluss auf das Fehlen osteoblastenspezifischer Fibronektin-Isoformen zurückgeführt werden, die die Metastasierung, Zelladhäsion, Proliferation und Motilität von Tumorzellen erhöhen. rnrnDie Deletion des Tumorzell-Fibronektins hatte eine durchschnittlich um 60% reduzierte Anzahl gebildeter Metastasen, ein eingeschränktes Tumorwachstum, hervorgerufen durch eine um 37% verminderte Blutgefäßanzahl, und letztendlich eine dreifache Verlängerung der mittleren Überlebensraten zur Folge. Die kombinierte Ausschaltung von lokalem Fibronektin und Tumorzell-Fibronektin vermochte den Einfluss auf die Etablierung und das Wachstum der Tumore zu verstärken. rnrnEin Drittel der Tiere, denen Metastasen induziert wurden, zeigten eine spontane Rückbildung der Tumore, ohne dass eine medizinische Intervention erfolgte. Dabei wurde zwischen einer kompletten Regression, bei der eine vollständige Rückbildung aller Tumore beobachtet werden konnte, und einer partiellen Regression, von der nur einzelne Tumore betroffen waren, unterschieden. Die spontane Regression war altersabhängig und trat 8-17 Wochen im Anschluss an die Applikation der Tumorzellen auf. Die vollständige Rückbildung der osteolytischen Knochenläsionen war mit dem Heilungsprozess des Knochengewebes verbunden, der sich in einer Verdichtung der Knochensubstanz äußerte. Erste Ergebnisse lieferten Hinweise darauf, dass die spontane Tumorregression auf eine mögliche Beteiligung von Granulozyten zurückzuführen war.rnrnZusammenfassend zeigten unsere Untersuchungen, dass sowohl Fibronektin der Mikroumgebung als auch Tumorzell-Fibronektin die Entwicklung und das Wachstum von Tumoren beeinträchtigte. Diese Arbeit lieferte erste Hinweise auf die Existenz eines sehr effektiven Mechanismus, der in Zusammenhang mit Fibronektin steht und dazu in der Lage ist, Tumorzellen selbst bei fortgeschrittenen Krebserkrankungen zu beseitigen. rn

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RNAi (RNA interference) is a powerful technology for sequence-specific targeting of mRNAs. This thesis was aimed at establishing conditions for conditional RNAi-mediated silencing first in vitro and subsequently also in transgenic mice. As a target the basic helix-loop-helix transcription factor encoding gene SCL (stem cell leukaemia also known as Tal-1 or TCL5) was used. SCL is a key regulator for haematopoietic development and ectopic expression of SCL is correlated with acute T-lymphoblastic leukaemias. Loss of SCL function studies demonstrated that ab initio deletion of SCL resulted in embryonic lethality around day E9 in gestation. To be able to conditionally inactivate SCL, RNAi technology was combined with the tetracycline-dependent regulatory system. This strategy allowed to exogenously control the induction of RNAi in a reversible fashion and consequently the generation of a completely switchable RNAi knockdown. First a suitable vector allowing for co-expression of tetracycline-controlled shRNAs (small hairpin RNAs) and constitutively active EGFP (enhanced green fluorescent protein) was generated. This novel vector, pRNAi-EGFP, was then evaluated for EGFP expression and tetracycline-mediated expression of shRNAs. Four sequences targeting different regions within the SCL mRNA were tested for their efficiency to specifically knockdown SCL. These experiments were performed in M1 murine leukaemia cells and subsequently in the HEK 293 cell line, expressing an engineered HA-tagged SCL protein. The second assay provided a solid experimental method for determining the efficiency of different SCL-siRNA knockdown constructs in tissue culture. Western blotting analyses revealed a down regulation of SCL protein for all four tested SCL-specific target sequences albeit with different knockdown efficiencies (between 25% and 100%). Furthermore, stringent tetracycline-dependent switchability of shRNA expression was confirmed by co-transfecting the SCL-specific pRNAi-EGFP vector (SCL-siRNA) together with the HA-tagged SCL expression plasmid into the HEK 293TR /T-REx cell line constitutively expressing the tetracycline repressor (TetR). These series of experiments demonstrated tight regulation of siRNA expression without background activity. To be able to control the SCL knockdown in vivo and especially to circumvent any possible embryonic lethality a transgenic mouse line with general expression of a tetracycline repressor was needed. Two alternative methods were used to generate TetR mice. The first approach was to co-inject the tetracycline-regulated RNAi vector together with a commercially available and here specifically modified T-REx expression vector (SCL-siRNA T-REx FRT LoxP mouse line). The second method involved the generation of a TetR expressor mouse line, which was then used for donating TetR-positive oocytes for pronuclear injection of the RNAi vector (SCL-siRNA T-REx mouse line). As expected, and in agreement with data from conditional Cre-controlled adult SCL knockout mice, post-transcriptional silencing of SCL by RNAi caused a shift in the maturation of red blood cell populations. This was shown in the bone marrow and peripheral blood by FACS analysis with the red blood cell-specific TER119 and CD71 markers which can be used to define erythrocyte differentiation (Lodish plot technique). In conclusion this study established conditions for effective SCL RNAi-mediated silencing in vitro and in vivo providing an important tool for further investigations into the role of SCL and, more generally, of its in vivo function in haematopoiesis and leukaemia. Most importantly, the here acquired knowledge will now allow the establishment of other completely conditional and reversible knockdown phenotypes in mice.

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Immunotherapy with T cells genetically modified by retroviral transfer of tumor-associated antigen (TAA)-specific T cell receptors (TCR) is a promising approach in targeting cancer. Therefore, using a universal TAA to target different tumor entities by only one therapeutic approach was the main criteria for our TAA-specific TCR. Here, an optimized (opt) αβ-chain p53(264-272)-specific and an opt single chain (sc) p53(264-272)-specific TCR were designed, to reduce mispairing reactions of endogenous and introduced TCR α and TCR β-chains, which might lead to off-target autoimmune reactions, similar to Graft-versus-host disease (GvHD). rnIn this study we evaluated the safety issues, which rise by the risk of p53TCR gene transfer-associated on/off-target toxicities as well as the anti-tumor response in vivo in a syngeneic HLA-A*0201 transgenic mouse model. We could successfully demonstrate that opt sc p53-specific TCR-redirected T cells prevent TCR mispairing-mediated lethal off-target autoimmunity in contrast to the parental opt αβ-chain p53-specific TCR. Since the sc p53-specific TCR proofed to be safe, all further studies were performed using sc p53-specific TCR redirected T cells only. Infusion of p53-specific TCR-redirected T cells in Human p53 knock-in (Hupki) mice after lymphodepletion-preconditioning regimen with either sublethal body irradiation (5Gy) or chemotherapy (fludarabine and cyclophosphamide) in combination with vaccination (anti-CD40, CpG1668 and p53(257-282) peptide) did not result in a depletion of hematopoietic cells. Moreover, adoptive transfer of high numbers of p53-specific TCR-redirected T cells in combination with Interleukin 2 (IL-2) also did not lead to toxic on-target reactions. The absence of host tissue damage was confirmed by histology and flow cytometry analysis. Furthermore, p53-specific TCR-redirected T cells were able to lyse p53+A2.1+ tumor cells in vitro. However, in vivo studies revealed the potent suppressive effect of the tumor microenvironment (TME) mediated by tumor-infiltrating myeloid-derived suppressor cells (MDSC). Accordingly, we could improve an insufficient anti-tumor response in vivo after injection of the sc p53-specific TCR-redirected T cells by additional depletion of immunosuppressive cells of the myeloid lineage.rnTogether, these data suggest that the optimized sc p53(264-272)-specific TCR may represent a safe and efficient approach for TCR-based gene therapy. However, combinations of immunotherapeutic strategies are needed to enhance the efficacy of adoptive cell therapy (ACT)-mediated anti-tumor responses.