8 resultados para vaccination

em AMS Tesi di Dottorato - Alm@DL - Università di Bologna


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Dendritic Cells (DCs) derived from human blood monocytes that have been nurtured in GM-CSF and IL-4, followed by maturation in a monocyte-conditioned medium, are the most potent APCs known. These DCs have many features of primary DCs, including the expression of molecules that enhance antigen capture and selective receptors that guide DCs to and from several sites in the body, where they elicit the T cell mediated immune response. For these features, immature DCs (iDC) loaded with tumor antigen and matured (mDC) with a standard cytokine cocktail, are used for therapeutic vaccination in clinical trials of different cancers. However, the efficacy of DCs in the development of immunocompetence is critically influenced by the type (whole lysate, proteins, peptides, mRNA), the amount and the time of exposure of the tumor antigens used for loading in the presentation phase. The aim of the present study was to create instruments to acquire more information about DC antigen uptake and presentation mechanisms to improve the clinical efficacy of DCbased vaccine. In particular, two different tumor antigen were studied: the monoclonal immunoglobulin (IgG or IgA) produced in Myeloma Multiple, and the whole lysate obtained from melanoma tissues. These proteins were conjugated with fluorescent probe (FITC) to evaluate the kinetic of tumor antigen capturing process and its localization into DCs, by cytofluorimetric and fluorescence microscopy analysis, respectively. iDC pulsed with 100μg of IgG-FITC/106 cells were monitored from 2 to 22 hours after loading. By the cytofluorimetric analysis it was observed that the monoclonal antibody was completely captured after 2 hours from pulsing, and was decreased into mDC in 5 hours after maturation stimulus. To monitor the lysate uptake, iDC were pulsed with 80μg of tumor lysate/106 cells, then were monitored in the 2h to 22 hours interval time after loading. Then, to reveal difference between increasing lysate concentration, iDC were loaded with 20-40-80-100-200-400μg of tumor lysate/106 cells and monitored at 2-4-8-13h from pulsing. By the cytofluorimetric analysis, it was observed that, the 20-40-80-100μg uptake, after 8 hours loading was completed reaching a plateau phase. For 200 and 400μg the mean fluorescence of cells increased until 13h from pulsing. The lysate localization into iDC was evaluated with conventional and confocal fluorescence microscopy analysis. In the 2h to 8h time interval from loading an intensive and diffuse fluorescence was observed within the cytoplasmic compartment. Moreover, after 8h, the lysate fluorescence appeared to be organized in a restricted cloudy-shaded area with a typical polarized aspect. In addition, small fluorescent spots clearly appeared with an increment in the number and fluorescence intensity. The nature of these spot-like formations and cloudy area is now being investigated detecting the colocalization of the fluorescence lysate and specific markers for lysosomes, autophagosomes, endoplasmic reticulum and MHCII positive vesicles.

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Triplex cell vaccine is a cancer immunopreventive cell vaccine that can prevent almost completely mammary tumor onset in HER-2/neu transgenic mice. A future translation of cancer immunoprevention from preclinical to clinical studies should take into account several aspects. The work reported in this thesis deals with the study of three of these aspects: vaccine schedule, activity in a therapeutic set-up and second-generation DNA vaccines. An important element in determining human acceptance and compliance of a treatment protocol is the number of vaccinations. In order to improve the vaccination schedule a minimal protocol was searched, i.e. a schedule consisting of a lower number of administrations than standard protocol but with a similar efficacy. A candidate optimal protocol was identified by the use of an in silico model, SimTriplex simulator. The in vivo test of this schedule in HER-2/neu transgenic mice only partially confirmed in silico predictions. This result shows that in silico models have the potential ability to aid in searching of optimal treatment protocols, provided that they will be further tuned on experimental data. As a further result this preclinical study highlighted that kinetic of antibody response plays a major role in determining cancer prevention, leading to the hypothesis of a threshold that must be reached rapidly and maintained lifetime. Early clinical trials would be performed in a therapeutic, rather than preventive, setting. Thus, the activity of Triplex vaccine was investigated against experimental lung metastases in HER-2/neu transgenic mice in order to evaluate if the immunopreventive Triplex vaccine could be effective also against a pre-existing tumor mass. This preclinical model of aggressive metastatic development showed that the vaccine was an efficient treatment also 4 for the cure of micrometastases. However the immune mechanisms activated against tumor mass were not antibody dependent, i.e. different from those preventing the onset of primary mammary carcinoma. DNA vaccines could be more easily used than cellular ones. A second generation of Triplex vaccine based on DNA plasmids was evaluated in an aggressive preclinical model (BALBp53neu female mice) and compared with the preventive ability of cellular Triplex vaccine. It was observed that Triplex DNA vaccine was as effective as Triplex cell vaccine, exploiting a more restricted immune stimulation.

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Animal models have been relevant to study the molecular mechanisms of cancer and to develop new antitumor agents. Anyway, the huge divergence in mouse and human evolution made difficult the translation of the gained achievements in preclinical mouse based studies. The generation of clinically relevant murine models requires their humanization both concerning the creation of transgenic models and the generation of humanized mice in which to engraft a functional human immune system, and reproduce the physiological effects and molecular mechanisms of growth and metastasization of human tumors. In particular, the availability of genotypically stable immunodepressed mice able to accept tumor injection and allow human tumor growth and metastasization would be important to develop anti-tumor and anti-metastatic strategies. Recently, Rag2-/-;gammac-/- mice, double knockout for genes involved in lymphocyte differentiation, had been developed (CIEA, Central Institute for Experimental Animals, Kawasaki, Japan). Studies of human sarcoma metastasization in Rag2-/-; gammac-/- mice (lacking B, T and NK functionality) revealed their high metastatic efficiency and allowed the expression of human metastatic phenotypes not detectable in the conventionally used nude murine model. In vitro analysis to investigate the molecular mechanisms involved in the specific pattern of human sarcomas metastasization revealed the importance of liver-produced growth and motility factors, in particular the insulin-like growth factors (IGFs). The involvement of this growth factor was then demonstrated in vivo through inhibition of IGF signalling pathway. Due to the high growth and metastatic propensity of tumor cells, Rag2-/-;gammac-/- mice were used as model to investigate the metastatic behavior of rhabdomyosarcoma cells engineered to improve the differentiation. It has been recently shown that this immunodeficient model can be reconstituted with a human immune system through the injection of human cord blood progenitor cells. The work illustrated in this thesis revealed that the injection of different human progenitor cells (CD34+ or CD133+) showed peculiar engraftment and differentiation abilities. Experiments of cell vaccination were performed to investigate the functionality of the engrafted human immune system and the induction of specific human immune responses. Results from such experiments will allow to collect informations about human immune responses activated during cell vaccination and to define the best reconstitution and experimental conditions to create a humanized model in which to study, in a preclinical setting, immunological antitumor strategies.

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Bacterial capsular polysaccharides (PS) which naturally contain zwitterionic charge motifs (ZPS) possess specific immunostimulatory activity, leading to direct activation of antigen-presenting cells (APCs) through Toll-like receptor 2 (TLR2) and of T cells in co-culture systems. When administered intraperitoneally, ZPS and bacteria expressing them are involved in the induction or regulation of T-cell dependent inflammatory processes such as intra-abdominal abscess formation. Moreover it has been published that ZPSs are processed to low molecular weight carbohydrates and presented to T cells through a pathway similar to that used for protein antigens. These findings were in contrast with the paradigm according to which polysaccharides are T-independent antigens unable to be presented in association with MHC class II molecules and unable to induce a protective immune response. For this reason in glycoconjugate vaccines polysaccharides often need to be conjugated to a carrier protein to induce protection. The aim of our work was to generate vaccine candidates with antigen and adjuvant properties in one molecule by the chemical introduction of a positive charge into naturally anionic PS from group B streptococcus (GBS). The resulting zwitterionic PS (ZPS) has the ability to activate human and mouse APCs, and in mixed co-cultures of monocytes and T cells, ZPS induce MHC II-dependent T-cell proliferation and up-regulation of activation markers. TLR2 transfectants show reporter gene transcription upon incubation with ZPS and these stimulatory qualities can be blocked by anti-TLR2 mAbs or by the destruction of the zwitterionic motif. However, in vivo, ZPS used alone as vaccine antigen failed to induce protection against GBS challenge, a result which does not confirm the above mentioned postulate that ZPS are T-cell dependent Ags by virtue of their charge motif. Thus to make ZPS visible to the immune system we have conjugated ZPS with a carrier protein. ZPS-glycoconjugates induce higher T cell and Ab responses to carrier and PS, respectively, compared to control PS-glycoconjugates made with the native polysaccharide form. Moreover, protection of mothers or neonate offspring from lethal GBS challenge is better when mothers are immunized with ZPS-conjugates compared to immunization with PS-conjugates. In TLR2 knockout mice, ZPS-conjugates lose both their increased immunogenicity and protective effect after vaccination. When ZPS are co-administered as adjuvants with unconjugated tetanus toxoid (TT), they have the ability to increase the TT-specific antibody titer. In conclusion, glycoconjugates containing ZPS are potent vaccines. They target Ag to TLR2-expressing APCs and activate these APCs, leading to better T cell priming and ultimately to higher protective Ab titers. Thus, rational chemical design can generate potent novel PS-adjuvants with wide application, including glycoconjugates and co-administration with unrelated protein Ags.

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This study focus on pathologies - caused by impoverished uranium and other heavy-metals’ nanoparticles environmental pollution - developed in international military personnel deployed in critical areas; the pathologies are then placed in a general and chronological schema. This study shows an impressive collection of data on impoverished uranium characteristics and its employment in civil and military context and a map of impoverished uranium most polluted areas. The studies on this subject commissioned by two Italian Parliamentary Court of Inquiry and by other nations are then analyzed. Further etiopathogenetic hypothesis are assessed – as multivaccination – comparing vaccination protocols adopted by different NATO nations and their possible effects. Finally the study defines the objectives and the operational protocols of an ongoing epidemiological serial prospective study (time-frame scheduled of 30 years) on military personnel deployed in critical areas for the possible presence of genotoxic agents.

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Scopo di questa tesi di dottorato è stabilire se l’obiezione di coscienza in ambito medico sia moralmente giustificabile. Esistono essenzialmente tre tipi di rifiuto motivati dall’obiezione di coscienza (1) rifiuto di informare un paziente relativamente alle opzioni terapeutiche come ad esempio l’uso di un contraccettivo di emergenza o l’interruzione volontaria di gravidanza (2) rifiuto di rinviare un paziente che chiede un particolare intervento (o terapia) presso un collega non obiettore (3) rifiuto di svolgere in prima persona una certa attività richiesta dal paziente Per rispondere a questo interrogativo si è svolta un’analisi filosofico-morale dei principali argomenti utilizzati dalla letteratura su questo tema per giustificare o per negare un diritto morale all’obiezione di coscienza degli operatori sanitari. Il diritto degli operatori sanitari all’integrità morale e a non essere complici di attività ritenute immorali dev’essere infatti confrontato con il diritto dei pazienti ad avere un’assistenza sanitaria efficiente, a poter compiere scelte autonome riguardo alla propria salute e ad essere informati relativamente a tutte le opzioni terapeutiche disponibili. Nel corso dell’intero lavoro è stato dimostrato come suddetti diritti dei pazienti sono facilmente e frequentemente violati a causa dell’incidenza dell’obiezione di coscienza in ambito medico. L’analisi condotta nel corso del lavoro di tesi si concentra fondamentalmente su quattro importanti aspetti del problema quali diritto all’integrità morale dell’ operatore sanitario, obblighi professionali, cooperazione al male e laicità dello stato. Alla fine del lavoro di analisi si è giunti alla conclusione che: le obiezioni di tipo (1) e (2) non sono mai moralmente giustificabili perché comportano sempre una violazione dei diritti fondamentali del paziente. Le obiezioni di coscienza di tipo (3) sono moralmente accettabili solo quando non impongono un peso eccessivo al paziente, vale a dire quando il rinvio presso un collega non obiettore è veloce, sicuro e agevole. Tuttavia le condizioni ideali in cui vengono rispettati i criteri minimi di ammissibilità dell’obiezione di coscienza di tipo (3) non si verificano quasi mai nella realtà dei fatti (per ragioni ampiamente spiegate nel corso del lavoro), per cui tali obiezioni risultano in pratica solo raramente accettabili da un punto d vista morale.

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The development of vaccines directed against polysaccharide capsules of S. pneumoniae, H. influenzae and N. meningitidis have been of great importance in preventing potentially fatal infections. Bacterial capsular polysaccharides are T-cell-independent antigens that induce specific antibody response characterized by IgM immunoglobulins, with a very low IgG class switched response and lack of capability of inducing a booster response. The inability of pure polysaccharides to induce sustained immune responses has required the development of vaccines containing polysaccharides conjugated to a carrier protein, with the aim to generate T cell help. It is clear that the immunogenicity of glycoconjugate vaccines can vary depending on different factors, e.g. chemical nature of the linked polysaccharide, carrier protein, age of the target population, adjuvant used. The present study analyzes the memory B cell (MBC) response to the polysaccharide and to the carrier protein following vaccination with a glycoconjugate vaccine for the prevention of Group B streptococcus (GBS) infection. Not much is known about the role of adjuvants in the development of immunological memory raised against GBS polysaccharides, as well as about the influence of having a pre-existing immunity against the carrier protein on the B cell response raised against the polysaccharide component of the vaccine. We demonstrate in the mouse model that adjuvants can increase the antibody and memory B cell response to the carrier protein and to the conjugated polysaccharide. We also demonstrate that a pre-existing immunity to the carrier protein favors the development of the antibody and memory B cell response to subsequent vaccinations with a glycoconjugate, even in absence of adjuvants. These data provide a useful insight for a better understanding of the mechanism of action of this class of vaccines and for designing the best vaccine that could result in a productive and long lasting memory response.

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La tesi è organizzata in 4 capitoli: -nel primo vengono brevemente riferite le patologie associate all’infezione da PCV2 con particolare riferimento all’iter diagnostico ed al ruolo rivestito dall’esame istologico e dalla identificazione dell’agente eziologico in situ contestualmente alle lesioni istologiche; -nel secondo viene presentato un iter diagnostico originale da applicare in condizioni di campo, qualora si voglia accertare la presenza del PCV2 nei tessuti dei prodotti di natimortalità/aborto del suino. In specifico si riferisce all’applicazione del protocollo in 2 aziende ed i risultati vengono analizzati per una revisione critica del protocollo impiegato; -nel terzo vengono presentati i risultati di un protocollo di infezione con PCV2 per via genitale tramite seme infetto. Scrofe convenzionali sono state sincronizzate per l’estro e fecondate con un’unica dose di seme PCV2 negativo alla PCR (gruppo controlli) o sperimentalmente esposto al PCV2 (gruppo infette). I risultati vengono analizzati in funzione delle ripercussioni che l’infezione precoce in gravidanza può produrre sulla scrofa (mancata gravidanza, ritorno in calore), sui feti e sugli invogli fetali. Viene stabilito il ruolo protettivo degli anticorpi circolanti al momento dell’infezione, stante l’evenienza che un basso titolo anticorpale si associa a viremia prolungata e maggiore numero di feti positivi al virus; -nel quarto viene presentato un esperimento sovrapponibile a quello riferito nel capitolo 3, però con la presenza anche di un gruppo di soggetti convenzionali vaccinati ed infettati con PCV2 durante la fecondazione artificiale usando seme sperimentalmente esposto al virus. Nella discussione dei risultati vengono enfatizzati 2 aspetti importanti nell’epidemiologia dell’infezione da PCV2: la eliminazione di virus è fortemente ridotta dalla vaccinazione, con conseguenze verosimilmente positive sulla circolazione del virus negli effettivi dell’allevamento; l’esposizione uterina è protetta dalla vaccinazione, stante la bassa percentuale di placente infette nel gruppo dei soggetti vaccinati rispetto a quelli non vaccinati e nei controlli.