169 resultados para Interaction Techniques
Resumo:
Robust Huber type regression and testing of linear hypotheses are adapted to statistical analysis of parallel line and slope ratio assays. They are applied in the evaluation of results of several experiments carried out in order to compare and validate alternatives to animal experimentation based on embryo and cell cultures. Computational procedures necessary for the application of robust methods of analysis used the conversational statistical package ROBSYS. Special commands for the analysis of parallel line and slope ratio assays have been added to ROBSYS.
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This article presents a new theory that separates the levels of communication and relates them circularly, namely, by separating time from space/meaning variables. Documenting this proposition requires sequential microdescriptions--a far-out project in the field of family therapy. In an extensive study of clinical and nonclinical families, starting with available microanalytic data on nonverbal parent-infant dialogue, distinct time organizations have been found to modify the degree of circularity between the levels of interaction according to the observed types of engagement, that is, consensual, conflictual, and paradoxical. The double description of the dyad as a totality versus the dyad as a framing/developing organization imparts crucial information on how development proceeds in dyadic, co-evolutive systems, and presumably in larger ones too. In this perspective, a model is elaborated and then applied to a case description in our therapeutic consultation.
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Amoebae are unicellular protozoan present worldwide in several environments mainly feeding on bacteria. Some of them, the amoebae-resistant bacteria (ARBs), have evolved mechanisms to survive and replicate inside amoebal species. These mainly include legionella, mycobacteria and Chlamydia-related bacteria. Amoebae can provide a replicative niche, can act as reservoir for bacteria whereas the cystic form can protect the internalized bacteria. Moreover, the amoebae represent a Trojan horse for ARBs to infect animals. The long interaction between amoebae and bacteria has likely selected for bacterial virulence traits leading to the adaptation towards an intracellular lifestyle, and some ARBs have acquired the ability to infect mammals. This review intends to highlight the important uses of amoebae in several fields in microbiology by describing the main tools developed using amoebal cells. First, amoebae such as Acanthamoeba are used to isolate and discover new intracellular bacterial species by two main techniques: the amoebal co-culture and the amoebal enrichment. In the second part, taking Waddlia chondrophila as example, we summarize some important recent applications of amoebae to discover new bacterial virulence factors, in particular thanks to the amoebal plaque assay. Finally, the genetically tractable Dictyostelium discoideum is used as a model organism to study host-pathogen interactions, in particular with the development of several approaches to manipulate its genome that allowed the creation of a wide range of mutated strains largely shared within the Dictyostelium community.
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Members of the leucine-rich repeat protein family are involved in diverse functions including protein phosphatase 2-inhibition, cell cycle regulation, gene regulation and signalling pathways. A novel Schistosoma mansoni gene, called SmLANP, presenting homology to various genes coding for proteins that belong to the super family of leucine-rich repeat proteins, was characterized here. SmLANP was 1184bp in length as determined from cDNA and genomic sequences and encoded a 296 amino acid open reading frame that spanning from 6 to 894bp. The predicted amino acid sequence had a calculated molecular weight of 32kDa. Analysis of the predicted sequence indicated the presence of 3 leucine-rich domains (LRR) located in the N-terminal region and an aspartic acid rich region in the C-terminal end. SmLANP transcript is expressed in all stages of the S. mansoni life cycle analyzed, exhibiting the highest expression level in males. The SmLANP protein was expressed in a GST expression system and antibodies raised in mice against the recombinant protein. By immunolocalization assay, using adult worms, it was shown that the protein is mainly present in the cell nucleus through the whole body and strongly expressed along the tegument cell body nuclei of adult worms. As members of this family are usually involved in protein-protein interaction, a yeast two hybrid assay was conducted to identify putative binding partners for SmLANP. Thirty-six possible partners were identified, and a protein ATP synthase subunit alpha was confirmed by pull down assays, as a binding partner of the SmLANP protein.
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Cette étude porte sur la recherche biomédicale en Suisse dans une perspective interprétative. Elle s'intéresse à l'usage que font les acteurs scientifiques et institutionnels de la catégorie «biomédical», à la signification qu'ils en donnent et aux processus de structuration de la recherche biomédicale autour de ces enjeux de catégorisation. Nous avons formulé l'hypothèse que le «biomédical» pouvait être considéré comme un label, à savoir une stratégie discursive de positionnement des acteurs, ou pouvait constituer un champ, à savoir un espace social de recherche fortement structuré. Pour pouvoir vérifier la validité de ces hypothèses, trois perspectives analytiques ont été retenues: topographie, discours et pratiques. Dans un premier temps, nous avons établi une topographie de la recherche biomédicale en repérant les acteurs (et leur appartenance disciplinaire) et les institutions qui s'associent au terme «biomédical», que ce soit pour décrire des institutions ou des projets de recherche. Les résultats de cette analyse offrent une première approximation d'un espace de la recherche en donnant une image d'un domaine peu unifié. Ainsi, l'usage de la catégorie «biomédical» dans les projets des chercheurs n'est pas le fait des seuls médecins et biologistes, mais également de représentants d'autres disciplines. La physique, la chimie et les sciences de l'ingénieur occupent ainsi également une place très importante dans cet espace de recherche. Puis, dans une perspective discursive, nous avons analysé le «biomédical» non seulement comme un label, mais également comme un objet-frontière permettant d'articuler différentes significations, de produire du sens là où des univers de recherche pourraient s'opposer, ou à coordonner des politiques qui ne l'étaient pas. L'analyse des différentes définitions du «biomédical» nous a confirmé l'existence d'un espace social marqué par une grande diversité disciplinaire, toutefois articulé autour d'un coeur médical et, plus particulièrement, d'une application médicale (potentielle ou actuelle). De plus, il ne semble pas y avoir de profondes luttes pour l'établissement de limites claires au «biomédical». Finalement, nous avons étudié les différentes activités de la production des savoirs (carrières, financement, collaboration, publication, etc.). Cette analyse a permis de comprendre que la diversité des définitions et des significations que les acteurs attribuent à la catégorie «biomédical» a aussi un ancrage dans la matérialité des réseaux sociotechniques dans lesquels les chercheurs s'inscrivent. Ces éléments confirment l'idée d'une fragmentation et d'une hétérogénéité de l'espace de la recherche biomédicale. En dépit de cette fragmentation, nous avons également montré que différentes mesures et instruments d'action publique visant à organiser et réguler les pratiques des chercheurs sont mis en oeuvre. Néanmoins et paradoxalement, la recherche biomédicale ne constitue pas pour autant un objet de politique scientifique abordé par les autorités politiques, en tous les cas pas sous l'angle de la catégorie «biomédical». Ces différents niveaux d'analyse ont permis d'arriver à la conclusion que la catégorie «biomédical» n'est pas suffisamment institutionnalisée et que le degré d'interaction entre l'ensemble des chercheurs qui en font usage est trop faible pour que l'on puisse considérer le «biomédical» comme un espace social fortement organisé et structuré, à savoir un champ de la recherche biomédicale. Cela est principalement lié au fait que les acteurs ne partagent pas les mêmes définitions de ce qu'est (ou devrait être) le «biomédical», que leurs pratiques de recherche s'inscrivent dans des univers relativement séparés, et que cette diversité ne donne pas lieu à de fortes luttes pour l'imposition d'une définition légitime ou de normes d'excellence scientifiques dominantes. Par contre, les analyses ont permis de confirmer la validité du «biomédical» comme label, puisque les acteurs se servent de cette catégorie pour valoriser leurs pratiques de recherche et se positionner, même si d'autres notions ont émergé ces dernières années («translationnel», «biotech», «medtech», médecine personnalisée, etc.). On peut, in fine, considérer le «biomédical» comme un probable langage commun («objet-frontière») reposant tant sur la scientificisation du médical que sur la médicalisation des sciences («de base» et «techniques »), visant à améliorer les conditions de possibilité d'un dialogue fructueux entre chercheurs fondamentaux et cliniciens.
A key role of TRPC channels in the regulation of electromechanical activity of the developing heart.
Resumo:
Aims It is well established that dysfunction of voltage-dependent ion channels results in arrhythmias and conduction disturbances in the foetal and adult heart. However, the involvement of voltage-insensitive cationic TRPC (transient receptor potential canonical) channels remains unclear. We assessed the hypothesis that TRPC channels play a crucial role in the spontaneous activity of the developing heart.Methods and results TRPC isoforms were investigated in isolated hearts obtained from 4-day-old chick embryos. Using RT-PCR, western blotting and co-immunoprecipitation, we report for the first time that TRPC1, 3, 4, 5, 6, and 7 isoforms are expressed at the mRNA and protein levels and that they can form a macromolecular complex with the alpha 1C subunit of the L-type voltage-gated calcium channel (Cav1.2) in atria and ventricle. Using ex vivo electrocardiograms, electrograms of isolated atria and ventricle and ventricular mechanograms, we found that inhibition of TRPC channels by SKF-96365 leads to negative chrono-, dromo-, and inotropic effects, prolongs the QT interval, and provokes first-and second-degree atrioventricular blocks. Pyr3, a specific antagonist of TRPC3, affected essentially atrioventricular conduction. On the other hand, specific blockade of the L-type calcium channel with nifedipine rapidly stopped ventricular contractile activity without affecting rhythmic electrical activity.Conclusions These results give new insights into the key role that TRPC channels, via interaction with the Cav1.2 channel, play in regulation of cardiac pacemaking, conduction, ventricular activity, and contractility during cardiogenesis.
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A methodology of exploratory data analysis investigating the phenomenon of orographic precipitation enhancement is proposed. The precipitation observations obtained from three Swiss Doppler weather radars are analysed for the major precipitation event of August 2005 in the Alps. Image processing techniques are used to detect significant precipitation cells/pixels from radar images while filtering out spurious effects due to ground clutter. The contribution of topography to precipitation patterns is described by an extensive set of topographical descriptors computed from the digital elevation model at multiple spatial scales. Additionally, the motion vector field is derived from subsequent radar images and integrated into a set of topographic features to highlight the slopes exposed to main flows. Following the exploratory data analysis with a recent algorithm of spectral clustering, it is shown that orographic precipitation cells are generated under specific flow and topographic conditions. Repeatability of precipitation patterns in particular spatial locations is found to be linked to specific local terrain shapes, e.g. at the top of hills and on the upwind side of the mountains. This methodology and our empirical findings for the Alpine region provide a basis for building computational data-driven models of orographic enhancement and triggering of precipitation. Copyright (C) 2011 Royal Meteorological Society .
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The BTAF1 transcription factor interacts with TATA-binding protein (TBP) to form the B-TFIID complex, which is involved in RNA polymerase II transcription. Here, we present an extensive mapping study of TBP residues involved in BTAF1 interaction. This shows that residues in the concave, DNA-binding surface of TBP are important for BTAF1 binding. In addition, BTAF1 interacts with residues in helix 2 on the convex side of TBP as assayed in protein-protein and in DNA-binding assays. BTAF1 drastically changes the TATA-box binding specificity of TBP, as it is able to recruit DNA-binding defective TBP mutants to both TATA-containing and TATA-less DNA. Interestingly, other helix 2 interacting factors, such as TFIIA and NC2, can also stabilize mutant TBP binding to DNA. In contrast, TFIIB which interacts with a distinct surface of TBP does not display this activity. Since many proteins contact helix 2 of TBP, this provides a molecular basis for mutually exclusive TBP interactions and stresses the importance of this structural element for eukaryotic transcription.