4 resultados para Blood donors

em ArchiMeD - Elektronische Publikationen der Universität Mainz - Alemanha


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Monoclonal antibodies have emerged as one of the most promising therapeutics in oncology over the last decades. The generation of fully human tumorantigen-specific antibodies suitable for anti-tumor therapy is laborious and difficult to achieve. Autoreactive B cells expressing those antibodies are detectable in cancer patients and represent a suitable source for human antibodies. However, the isolation and cultivation of this cell type is challenging. A novel method was established to identify antigen-specific B cells. The method is based on the conversion of the antigen independent CD40 signal into an antigen-specific one. For that, the artificial fusion proteins ABCos1 and ABCos2 (Antigen-specific B cell co-stimulator) were generated, which consist of an extracellular association-domain derived from the constant region of the human immunoglobulin (Ig) G1, a transmembrane fragment and an intracellular signal transducer domain derived of the cytoplasmic domain of the human CD40 receptor. By the association with endogenous Ig molecules the heterodimeric complex allows the antigen-specific stimulation of both the BCR and CD40. In this work the ability of the ABCos constructs to associate with endogenous IgG molecules was shown. Moreover, crosslinking of ABCos stimulates the activation of NF-κB in HEK293-lucNifty and induces proliferation in B cells. The stimulation of ABCos in transfected B cells results in an activation pattern different from that induced by the conventional CD40 signal. ABCos activated B cells show a mainly IgG isotype specific activation of memory B cells and are characterized by high proliferation and the differentiation into plasma cells. To validate the approach a model system was conducted: B cells were transfected with IVT-RNA encoding for anti-Plac1 B cell receptor (antigen-specific BCR), ABCos or both. The stimulation with the BCR specific Plac1 peptide induces proliferation only in the cotransfected B cell population. Moreover, we tested the method in human IgG+ memory B cells from CMV infected blood donors, in which the stimulation of ABCos transfected B cells with a CMV peptide induces antigen-specific expansion. These findings show that challenging ABCos transfected B cells with a specific antigen results in the activation and expansion of antigen-specific B cells and not only allows the identification but also cultivation of these B cells. The described method will help to identify antigen-specific B cells and can be used to characterize (tumor) autoantigen-specific B cells and allows the generation of fully human antibodies that can be used as diagnostic tool as well as in cancer therapy.

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Untersuchungen zur autoimmunen Genese der thrombotisch thrombozytopenischen Purpura. rnEinführung: Die idiopathische thrombotisch thrombozytopenische Purpura (TTP) ist eine lebensbedrohliche Mikroangiopathie und wird durch ein Autoantikörper-induziertes Defizit der ADAMTS13-Protease ausgelöst. Eine Assoziation zwischen Krankheitsprädisposition und Vorliegen bestimmter humaner Leukozytenantigene (HLA) wird vermutet. Untersuchungen zu diesem Zusammenhang stellen einen Teil dieser Arbeit dar. rnAutoimmunkrankheiten tendieren zum gemeinsamen Auftreten innerhalb eines Individuums. Im zweiten Teil dieser Arbeit wird untersucht, ob eine solche Kookkurrenz verschiedener Autoimmunkrankheiten auch bei Patienten mit idiopathischer TTP beobachtet werden kann.rnMethodik: Zur Untersuchung der ersten Fragestellung werden die HLA-Klasse I und II-Merkmale von 54 deutschen TTP-Patienten bestimmt. Alle Patienten weisen Autoantikörper gegen ADAMTS13 und eine Protease-Aktivität <5% vor. Die Blutproben werden mittels Sequence Specific Primer-Polymerase Chain Reaction (PCR) und Sequence Specific Oligonucleotid-PCR auf HLA-DRB1, -DRB3-5 und –DQB1 untersucht. Als Referenz dienen die Werte deutscher Knochenmark- und Blutspender, erhalten über www.allelefrequencies.net. Die statistische Auswertung erfolgt mittels zweiseitigem Binomialtest und die resultierenden p-Werte werden nach Benjamini-Hochberg korrigiert.rnZur Beantwortung der zweiten Fragestellung werden 76 deutsche TTP-Patienten anhand eines standardisierten Fragebogens nach Begleiterkrankungen befragt. Als Vergleichswerte dient die Prävalenz der jeweiligen Erkrankung in der Allgemeinbevölkerung. Die statistische Auswertung erfolgt mittels zweiseitigem Binomialtest. Da die p-Werte nicht korrigiert werden, sind die Ergebnisse nur deskriptiv zu verstehen.rnErgebnis: Der Vergleich der HLA-Frequenzen ergibt ein signifikant gehäuftes Vorkommen von HLA-DQB1*02:02 (p<0,001) und -DRB1*11 (p=0,003) innerhalb des Patientenkollektivs. 20% (DQB1*02:02) bzw. 48,1% (DRB1*11) der TTP-Patienten sind im Gegensatz zu nur 1,2% (DQB1*02:02) bzw. 23,5% (DRB1*11) innerhalb der Vergleichsgruppe für das jeweilige HLA-Merkmal positiv.rnDie Befragung der TTP-Patienten bezüglich weiterer Erkrankungen ergab im Vergleich mit der Allgemeinbevölkerung fünf auffällig häufig im Patientenkollektiv vorkommende Autoimmunkrankheiten: Hashimoto Thyreoiditis (23,5% in der Patientengruppe zu 0,7% in der Allgemeinbevölkerung; p<0,001), systemischer Lupus erythematodes (6,5% der Patienten im Gegensatz zu 0,025% in der Allgemeinbevölkerung, p<0,001), Immunthrombozytopenie (6,3% der Patienten zu 0,02% in der Allgemeinbevölkerung; p<0,001), Psoriasis (9,4% der Patienten zu 2,5% in der Allgemeinbevölkerung; p=0,005) und glutensensitive Enteropathie (3,1% der Patienten zu 0,2% in der Allgemeinbevölkerung; p=0,007). rnSchlussfolgerung: Das vermehrte Vorkommen bestimmter HLA-Merkmale im Patientenkollektiv spricht für eine prädisponierende Wirkung dieser Antigene im Krankheitsgeschehen. Eine mögliche HLA-vermittelte Assoziation zwischen TTP und den genannten Autoimmunkrankheiten wird vermutet, kann jedoch nicht in allen Fällen die beobachtete Kookkurrenz ausreichend erklären. Insgesamt bestätigt die vorliegende Arbeit die Assoziation verschiedener Autoimmunkrankheiten untereinander und spricht für eine genetische Prädisposition zur Ausbildung autoimmuner Störungen. rn

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Donor-derived CD8+ cytotoxic T lymphocytes (CTLs) eliminating host leukemic cells mediate curative graft-versus-leukemia (GVL) reactions after allogeneic hematopoietic stem cell transplantation (HSCT). The leukemia-reactive CTLs recognize hematopoiesis-restricted or broadly expressed minor histocompatibility and leukemia-associated peptide antigens that are presented by human leukocyte antigen (HLA) class I molecules on recipient cells. The development of allogeneic CTL therapy in acute myeloid leukemia (AML) is hampered by the poor efficiency of current techniques for generating leukemia-reactive CTLs from unprimed healthy donors in vitro. In this work, a novel allogeneic mini-mixed lymphocyte/leukemia culture (mini-MLLC) approach was established by stimulating CD8+ T cells isolated from peripheral blood of healthy donors at comparably low numbers (i.e. 10e4/well) with HLA class I-matched primary AML blasts in 96-well microtiter plates. Before culture, CD8+ T cells were immunomagnetically separated into CD62L(high)+ and CD62L(low)+/neg subsets enriched for naive/central memory and effector memory cells, respectively. The application of 96-well microtiter plates aimed at creating multiple different responder-stimulator cell compositions in order to provide for the growth of leukemia-reactive CTLs optimized culture conditions by chance. The culture medium was supplemented with interleukin (IL)-7, IL-12, and IL-15. On day 14, IL-12 was replaced by IL-2. In eight different related and unrelated donor/AML pairs with complete HLA class I match, numerous CTL populations were isolated that specifically lysed myeloid leukemias in association with various HLA-A, -B, or -C alleles. These CTLs recognized neither lymphoblastoid B cell lines of donor and patient origin nor primary B cell leukemias expressing the corresponding HLA restriction element. CTLs expressed T cell receptors of single V-beta chain families, indicating their clonality. The vast majority of CTL clones were obtained from mini-MLLCs initiated with CD8+ CD62L(high)+ cells. Using antigen-specific stimulation, multiple CTL populations were amplified to 10e8-10e10 cells within six to eight weeks. The capability of mini-MLLC derived AML-reactive CTL clones to inhibit the engraftment of human primary AML blasts was investigated in the immunodeficient nonobese diabetic/severe combined immune deficient IL-2 receptor common γ-chain deficient (NOD/SCID IL2Rγnull) mouse model. The leukemic engraftment in NOD/SCID IL2Rγnull was specifically prevented if inoculated AML blasts had been pre-incubated in vitro with AML-reactive CTLs, but not with anti-melanoma control CTLs. These results demonstrate that myeloid leukemia-specific CTL clones capable of preventing AML engraftment in mice can be rapidly isolated from CD8+ CD62L(high)+ T cells of healthy donors in vitro. The efficient generation and expansion of these CTLs by the newly established mini-MLLC approach opens the door for several potential applications. First, CTLs can be used within T cell-driven antigen identification strategies to extend the panel of molecularly defined AML antigens that are recognizable by T cells of healthy donors. Second, because these CTLs can be isolated from the stem cell donor by mini-MLLC prior to transplantation, they could be infused into AML patients as a part of the stem cell allograft, or early after transplantation when the leukemia burden is low. The capability of these T cells to expand and function in vivo might require the simultaneous administration of AML-reactive CD4+ T cells generated by a similar in vitro strategy or, less complex, the co-transfer of CD8-depleted donor lymphocytes. To prepare clinical testing, the mini-MLLC approach should now be translated into a protocol that is compatible with good manufacturing practice guidelines.

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Until now, therapeutic vaccination of cancer patients has mainly relied on rather few T cell epitopes processed from structurally normal shared tumor antigens and presented by frequent HLA alleles. So far the design of these studies has not addressed the individuality of tumor-host interactions, which are not only determined by the antigenic tumor phenotype or the natural HLA polymorphism, but also by the individual T cell repertoire. The procedure described herein was developed to identify the preferential targets of the individual repertoire from a panel of known shared tumor-associated antigens. Lymphocytes were isolated from the peripheral blood of cancer patients or healthy donors and stimulated twice with autologous mRNA-transfected FastDC (Dauer et al., J Immunol. 170:4069, 2003). FastDC were generated from blood monocytes and separately transfected via lipofection with in vitro transcribed mRNAs encoding the panel antigens. Responder lymphocytes were tested on day 12 in a 20-hour IFN-g ELISPOT assay for recognition of 293T cells co-transfected pairwise with plasmids encoding the stimulation antigens and the respective individual’s HLA class I alleles. In a first step, stimulation parameters were optimized for the detection of anti-HCMV pp65 responses. A maximum amplification of pp65-specific CD8+ T cell responses was obtained at a rather low IL-2 concentration (25 IU/ml) and at a minimum APC-to-effector ratio of 1:10. Addition of IL-4, IL-7 or IL-15 did not substantially improve the stimulatory potential. The test was applied to the human melanoma models D05 and MZ2, in both of which multiple T cell-defined antigens had previously been identified by expression screening. Blood lymphocytes were stimulated in parallel with autologous tumor cells and with mRNA-transfected FastDC. In D05, T cell reactivities against three out of eleven epitopes induced by stimulation with tumor cells were also found after stimulation with mRNA-transfected FastDC. Two further T cell target epitopes were identified with mRNA but not with tumor cell stimulation. In MZ2, T cell responses against five distinct epitopes were detected on day 12 after stimulation with mRNA transfectants. The same responses were detectable after stimulation with tumor cells only on day 32. mRNA stimulations against 21 tumor-associated antigens in addition to HCMV pp65 were performed in four healthy individuals. In all cases, CD8+ T cells against HCMV pp65 could be expanded. Among tumor-associated antigens, only reactivity against Melan-A/MART-1 in association with HLA-A*0201 was detectable in one of the donors. The vaccination of patients with targets a priori known to be recognized by their T cell repertoire may help to improve the outcome of therapeutic vaccination.