44 resultados para Bis(oxazoline) ligands


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Alteration of the surface glycosylation pattern on malignant cells potentially affects tumor immunity by directly influencing interactions with glycan-binding proteins (lectins) on the surface of immunomodulatory cells. The sialic acid-binding Ig-like lectins Siglec-7 and -9 are MHC class I-independent inhibitory receptors on human NK cells that recognize sialic acid-containing carbohydrates. Here, we found that the presence of Siglec-9 defined a subset of cytotoxic NK cells with a mature phenotype and enhanced chemotactic potential. Interestingly, this Siglec-9+ NK cell population was reduced in the peripheral blood of cancer patients. Broad analysis of primary tumor samples revealed that ligands of Siglec-7 and -9 were expressed on human cancer cells of different histological types. Expression of Siglec-7 and -9 ligands was associated with susceptibility of NK cell-sensitive tumor cells and, unexpectedly, of presumably NK cell-resistant tumor cells to NK cell-mediated cytotoxicity. Together, these observations have direct implications for NK cell-based therapies and highlight the requirement to consider both MHC class I haplotype and tumor-specific glycosylation.

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Résumé :Introduction : La mitoxantrone est un anthracénédione cytostatique aux ef¬fets immunosuppresseurs et -modulateurs qui est administré entre autre dans les évolutions graves de la sclérose en plaques (SEP). Peu d'études concernant l'efficacité et la tolérance de la mitoxantrone ont été publiées. Un travail de re¬cherche statistique s'imposait en raison du nombre de patients souffrant de SEP traités par ce médicament dans le service de neurologie de l'hôpital cantonal d'Aarau.Méthode : Au total, 66 patients souffrant de SEP ont été traités par la mi¬toxantrone dans la période 07/2000-06/2007. 48 d'entre eux avaient reçu préa¬lablement une autre substance modifiant l'évolution de la maladie (« prétrai¬tement » : interféron bêta-la/b, glatirameracétate, azathioprine). Dans cette étude rétrospective, nous avons comparé l'effet de la mitoxantrone par rapport au prétraitement mentionné ci-dessus. Les paramètres appliqués concernaient l'évolution de l'expanded disability status scale (EDSS) et le nombre annuel de poussées pendant la durée du traitement. Une influence du type de SEP, de l'âge au début du traitement par la mitoxantrone, du sexe, de la durée de la théra¬pie et de la maladie ainsi que de la dose cumulative de la mitoxantrone a été recherchée. Nous avons également discuté des éventuels effets indésirables surve¬nus. Nous n'avons pas différencié les substances du prétraitement, étant donné qu'elles avaient été appliquées dans des combinaisons multiples. L'évaluation sta¬tistique a été effectuée en respectant les indications du test de Mann-Whitney ainsi que du Wilcoxon signed-rank test.Résultats : En moyenne, l'EDSS s'est stabilisée (-0,05/année chez tous les 66 patients) tandis que la maladie avait progressé de 0,32/année sous le pré¬traitement (la différence est significative avec p=0,0004 au Wilcoxon signed- rank test bilatéral). Sous le prétraitement, les patients avaient subi en moyenne 1,72 poussées par année, sous la mitoxantrone 0,26 (différence significative avec p<0,0001). La thérapie a dû être arrêtée à cause d'effets indésirables chez quatre patients sous la mitoxantrone (deux avec une granulocytopénie, deux avec une diminution de la fraction d'éjection cardiaque).Discussion : La mitoxantrone s'est avéré une substance particulièrement ef¬ficace même dans les situations dans lesquelles le décours de la maladie n'a pas pu être influencé par d'autres médicaments. Ses effets indésirables doivent être pondérés par rapport à la progression de la maladie et aux effets indési¬rables des autres substances. Les schémas d'application varient beaucoup dans la littérature et doivent être mieux définis.Zusammenfassung :Einleitung: Mitoxantron ist ein zytostatisches Anthracenedion mit immunsup- pressiven und -modulatorischen Eigenschaften, das unter anderem bei schwe¬ren Verläufen der Multiplen Sklerose eingesetzt wird. Bisher befassten sich nur wenige randomisierte und plazebokontrollierte Studien mit Wirksamkeit und Tolerabilität des Medikamentes.Methoden: 66 MS-Patienten der neurologischen Klinik des Kantonsspitals Aar- au wurden zwischen Juli 2000 und Juni 2007 mit Mitoxantron behandelt. 48 davon erhielten zuvor eine MS-spezifische Behandlung mit Interferon ß-1 a oder b, Glatirameracetat oder Azathioprin. Anhand der Veränderung der Expanded Disability Status Scale (EDSS) und der jährlichen Schubrate und mit Hilfe von MRI-Aufnahmen zeichneten wir retrospektiv die Wirksamkeit der Behandlung nach und stellten sie in Beziehung zu einer eventuell erfolgten Vorbehandlung. Des weiteren wurde die Effektivität in Verhältnis zu den Faktoren Verlaufsform, Alter bei Behandlungsbeginn, Behandlungszeit sowie weiteren Parametern ge¬bracht. Wir verglichen die Wirkung von Mitoxantron bei den noch laufenden Behandlungen mit der bei den bereits abgeschlossenen und wir diskutierten die Veränderung von MRI-Aufnahmen des ZNS unter der Therapie mit Mitoxan¬tron. Nebenwirkungen wurden erwähnt.Resultate: Im Durchschnitt wurde der EDSS-Wert stabilisiert (-0, 05/Jahr bei allen 66 Patienten), während die Krankheit unter der verlaufsmodifizierenden Vorbehandlung um durchschnittlich 0,32/Jahr fortschritt (Unterschied signifi¬kant mit p=0,0004 im zweiseitigen Wilcoxon signed-rank test). Die Schubrate betrug 0,26 unter Mitoxantron gegenüber 1,72/Jahr unter Vorbehandlung (Un¬terschied signifikant mit p<0,0001). Bei vier Patienten musste die Therapie auf¬grund von Nebenwirkungen abgebrochen werden (zweimal Granulozytopenie, zweimal verminderte kardiale Auswurffraktion).Diskussion: Mitoxantron ist offensichtlich selbst dann eine äusserst effektive verlaufsmodifizierende Substanz, wenn die Krankheit durch andere Medikamen¬te nicht zu beeinflussen ist. Die Risiken des Medikamentes müssen gegen das Krankheitsfortschreiten und die Nachteile anderer verlaufsmodifizierender Sub¬stanzen abgewogen werden. Die Anwendungsalgorithmen für Mitoxantron vari¬ieren in der Literatur sehr und müssen besser definiert werden.

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Most odors in natural environments are mixtures of several compounds. Perceptually, these can blend into a new "perfume," or some components may dominate as elements of the mixture. In order to understand such mixture interactions, it is necessary to study the events at the olfactory periphery, down to the level of single-odorant receptor cells. Does a strong ligand present at a low concentration outweigh the effect of weak ligands present at high concentrations? We used the fruit fly receptor dOr22a and a banana-like odor mixture as a model system. We show that an intermediate ligand at an intermediate concentration alone elicits the neuron's blend response, despite the presence of both weaker ligands at higher concentration, and of better ligands at lower concentration in the mixture. Because all of these components, when given alone, elicited significant responses, this reveals specific mixture processing already at the periphery. By measuring complete dose-response curves we show that these mixture effects can be fully explained by a model of syntopic interaction at a single-receptor binding site. Our data have important implications for how odor mixtures are processed in general, and what preprocessing occurs before the information reaches the brain.

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The bias of αβ T cells for MHC ligands has been proposed to be intrinsic to the T-cell receptor (TCR). Equally, the CD4 and CD8 coreceptors contribute to ligand restriction by colocalizing Lck with the TCR when MHC ligands are engaged. To determine the importance of intrinsic ligand bias, the germ-line TCR complementarity determining regions were extensively diversified in vivo. We show that engagement with MHC ligands during thymocyte selection and peripheral T-cell activation imposes remarkably little constraint over TCR structure. Such versatility is more consistent with an opportunist, rather than a predetermined, mode of interface formation. This hypothesis was experimentally confirmed by expressing a hybrid TCR containing TCR-γ chain germ-line complementarity determining regions, which engaged efficiently with MHC ligands.

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Pheromones form an essential chemical language of intraspecific communication in many animals. How olfactory systems recognize pheromonal signals with both sensitivity and specificity is not well understood. An important in vivo paradigm for this process is the detection mechanism of the sex pheromone (Z)-11-octadecenyl acetate (cis-vaccenyl acetate [cVA]) in Drosophila melanogaster. cVA-evoked neuronal activation requires a secreted odorant binding protein, LUSH, the CD36-related transmembrane protein SNMP, and the odorant receptor OR67d. Crystallographic analysis has revealed that cVA-bound LUSH is conformationally distinct from apo (unliganded) LUSH. Recombinantly expressed mutant versions of LUSH predicted to enhance or diminish these structural changes produce corresponding alterations in spontaneous and/or cVA-evoked activity when infused into olfactory sensilla, leading to a model in which the ligand for pheromone receptors is not free cVA, but LUSH that is "conformationally activated" upon cVA binding. Here we present evidence that contradicts this model. First, we demonstrate that the same LUSH mutants expressed transgenically affect neither basal nor pheromone-evoked activity. Second, we compare the structures of apo LUSH, cVA/LUSH, and complexes of LUSH with non-pheromonal ligands and find no conformational property of cVA/LUSH that can explain its proposed unique activated state. Finally, we show that high concentrations of cVA can induce neuronal activity in the absence of LUSH, but not SNMP or OR67d. Our findings are not consistent with the model that the cVA/LUSH complex acts as the pheromone ligand, and suggest that pheromone molecules alone directly activate neuronal receptors.

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Retinoic acid-the active metabolite of vitamin A-influences biological processes by activating the retinoic acid receptor (RAR). In this issue, Schug et al. (2007) demonstrate that retinoic acid also activates the peroxisome proliferator-activated receptor beta/delta (PPARbeta/delta). Remarkably, retinoic acid signaling through RAR or PPARbeta/delta-which depends on cytoplasmic retinoic acid transporters-commits the cell to opposite fates, apoptosis or survival, respectively.

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Optimal vaccine strategies must be identified for improving T-cell vaccination against infectious and malignant diseases. MelQbG10 is a virus-like nano-particle loaded with A-type CpG-oligonucleotides (CpG-ODN) and coupled to peptide(16-35) derived from Melan-A/MART-1. In this phase IIa clinical study, four groups of stage III-IV melanoma patients were vaccinated with MelQbG10, given (i) with IFA (Montanide) s.c.; (ii) with IFA s.c. and topical Imiquimod; (iii) i.d. with topical Imiquimod; or (iv) as intralymph node injection. In total, 16/21 (76%) patients generated ex vivo detectable Melan-A/MART-1-specific T-cell responses. T-cell frequencies were significantly higher when IFA was used as adjuvant, resulting in detectable T-cell responses in all (11/11) patients, with predominant generation of effector-memory-phenotype cells. In turn, Imiquimod induced higher proportions of central-memory-phenotype cells and increased percentages of CD127(+) (IL-7R) T cells. Direct injection of MelQbG10 into lymph nodes resulted in lower T-cell frequencies, associated with lower proportions of memory and effector-phenotype T cells. Swelling of vaccine site draining lymph nodes, and increased glucose uptake at PET/CT was observed in 13/15 (87%) of evaluable patients, reflecting vaccine triggered immune reactions in lymph nodes. We conclude that the simultaneous use of both Imiquimod and CpG-ODN induced combined memory and effector CD8(+) T-cell responses.

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Different anchoring groups have been studied with the aim of covalently binding organic linkers to the surface of alumina ceramic foams. The results suggested that a higher degree of functionalization was achieved with a pyrogallol derivative - as compared to its catechol analogue - based on the XPS analysis of the ceramic surface. The conjugation of organic ligands to the surface of these alumina materials was corroborated by DNP-MAS NMR measurements.

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Adjuvants enhance immunogenicity of vaccines through either targeted antigen delivery or stimulation of immune receptors. Three cationic nanoparticle formulations were evaluated for their potential as carriers for a DNA vaccine, and muramyl dipeptide (MDP) as immunostimulatory agent, to induce and increase immunogenicity of Mycobacterium tuberculosis antigen encoding plasmid DNA (pDNA). The formulations included (1) trimethyl chitosan (TMC) nanoparticles, (2) a squalene-in-water nanoemulsion, and (3) a mineral oil-in-water nanoemulsion. The adjuvant effect of the pDNA-nanocomplexes was evaluated by serum antibody analysis in immunized mice. All three carriers display a strong adjuvant effect, however, only TMC nanoparticles were capable to bias immune responses towards Th1. pDNA naturally contains immunostimulatory unmethylated CpG motifs that are recognized by Toll-like receptor 9 (TLR-9). In mechanistic in vitro studies, activation of TLR-9 and the ability to enhance immunogenicity by simultaneously targeting TLR-9 and NOD-like receptor 2 (NLR-2) was determined by proinflammatory cytokine release in RAW264.7 macrophages. pDNA in combination with MDP was shown to significantly increase proinflammatory cytokine release in a synergistic manner, dependent on NLR-2 activation. In summary, novel pDNA-Ag85A loaded nanoparticle formulations, which induce antigen specific immune responses in mice were developed, taking advantage of the synergistic combinations of TLR and NLR agonists to increase the adjuvanticity of the carriers used.