94 resultados para Vasari, Giorgio, 1511-1574


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An 88 years old woman was admitted for muscular pain and weakness. She was under a treatment of simvastatin and was recently prescribed clarithromycin for a lung infection. The diagnosis of statin induced rhabdomyolysis by drug interaction was made. The evolution is good with eviction of the statin and aggressive hydratation. This case shows how important it is to know the risks factors and drug interactions predisposing to statin-induced myopathy.

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Polarization is a fundamental cellular property, which is essential for the function of numerous cell types. Over the past three to four decades, research using the best-established yeast systems in cell biological research, Saccharomyces cerevisiae (or budding yeast) and Schizosaccharomyces pombe (or fission yeast), has brought to light fundamental principles governing the establishment and maintenance of a polarized, asymmetric state. These two organisms, though both ascomycetes, are evolutionarily very distant and exhibit distinct shapes and modes of growth. In this review, we compare and contrast the two systems. We first highlight common cell polarization pathways, detailing the contribution of Rho GTPases, the cytoskeleton, membrane trafficking, lipids, and protein scaffolds. We then contrast the major differences between the two organisms, describing their distinct strategies in growth site selection and growth zone dimensions and compartmentalization, which may be the basis for their distinct shapes.

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La tesi di Dottorato, condotta in accordo di colutela tra l'Università di Roma Tor Vergata e l'UNIL di Losanna, ha affrontato l'analisi di un gruppo di undici disegni custodia presso la National Gallery of Scotland di Edimburgo, copie di alcuni dei più significativi mosaici medioevali delle chiese di Roma, ricostruendone la genesi, quindi le vicende legate alla committenza, e il percorso collezionistico. I disegni scozzesi, oggetto di un importante articolo di Julian Gardner pubblicato sul Burlington Magatine nel 1973, furono commissionati intorno agli anni Settanta del XVII secolo dall'antiquario romano Giovanni Giustino Ciampini (1633-1698) in connessione alla stesura della sua opera di erudizione più avvertita e famosa: i Vetera Mommenta in' quibus praecipue Musiva Opera, sacrarum, profanan,mque, Aedìum structura, ac nonnulli antiqui ritus dissertationibus iconìbusque illustrantur. La composizione dei Vetera Mommenta - un'opera riccamente illustrata che nasce per rispondere alle esigenze della ideologia della Chiesa di Roma in un momento di rinnovata crisi del sistema - impone a Ciampini di porsi da un lato nella prospettiva della più alta tradizione antiquaria cinque e seicentesca, di cui recupera i metodi di lettura e di analisi applicati allo studio delle monete e dei monumenti antichi interpretati quali prove per la ricostruzione storica, e dall'altra, come è emerso dalle mie ricerche, lo pone immediatamente in contatto con gli avamposti del più moderno metodo di indagine storica e filologica applicato alle fonti e ai documenti della storia ecclesiastica, inaugurato dall'ambiente bollandista e inaurino. I monumenti paleocristiani e medioevali assumono in quest'ottica lo status di 'fatti incontestabili', le fonti primarie attraverso le quali Ciampini ricuce le tappe salienti della storia della Chiesa, da Costantino fino al XV secolo. Nel 1700 le copie di Edimburgo arrivano nelle mani del mercante e connoisseur milanese il padre oratoriano Sebastiano Resta (1635-1714), di stanza a Roma presso la Chiesa Nuova della Vallicella dal 1660, che decide di rilegarle tutte insieme in un volume da donare al suo maggiore acquirente e patrono, il vescovo di Arezzo Giovanni Matteo Marchetti. Come spiega Resta in alcune sue lettere, il presente avrebbe dovuto costituire insieme una curiosità ed offrire un confronto: infatti «le copie delli mosaici di Roma che erano di Monsignor Ciampini» - afferma Resta - avrebbero mostrato al Marchetti «le maniere di que' tempi gottici, barbari e divoti de cristiani e [fatto] spiccare i secoli seguenti». Questa indagine infatti ha fatto riemergere aspetti della precoce attenzione di Sebastiano Resta per l'arte dei "secoli bassi", mai debitamente affrontata dagli studi. E' infatti sulla scorta di una profonda conoscenza dei testi della letteratura artistica, e in connessione alla esplosione vivacissima della controversia Malvasia/Baldinucci sul primato del risorgere delle arti in Toscana, che Sebastiano a partire dagli anni Ottanta del Seicento comincia a meditare sul Medioevo artistico con il fine di spiegare l'evoluzione del linguaggio tecnico e formale che ha condotto alla perfezione dell'atte moderna. In questa prospettiva ι disegni del XIV e XV secolo che egli riuscì ad intercettare sul mercato valgono quali testimonianze delle maniere degli artefici più antichi e sono imbastiti nei molteplici album che Resta compone nel rispetto della successione cronologica dei presunti autori, e ordinati in base alle scuole pittoriche di pertinenza. La tesi permette perciò di descrivere nelle loro diverse specificità: da un lato il modo dei conoscitori come Resta, interessati nell'opera al dato stilistico, con immediate e sensibili ricadute sul mercato, e disposti anche con passione a ricercare i documenti relativi all'opera in quanto pressati dall'urgenza di collocarla nella sequenza cronologica dello sviluppo del linguaggio formale e tecnico; dall'altro gli antiquari come Ciampini e come Bianchini, per i quali le opere del passato valgono come prove irrefutabili della ricostruzione storica, e divengono quindi esse stesse, anche nel loro statuto di copia, documento della stona. Sono due approcci che si manifestano nel Seicento, e talvolta in una medesima persona, come mostra il caso anche per questo cruciale di Giovati Pietro Bellori, ma che hanno radici cinquecentesche, di cui i protagonisti di queste vicende sono ben consapevoli: e se dietro Resta c'è palesemente Vasari, dietro Ciampini e soprattutto Bianchini c'è la più alta tradizione antiquaria del XVI secolo, da Antonio Augustin a Fulvio Orsini.

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Abstract The plasmid pME6863, carrying the aiiA gene from the soil bacterium Bacillus sp. A24 that encodes a lactonase enzyme able to degrade N-acyl-homoserine lactones (AHLs), was introduced into the rhizosphere isolate Pseudomonas fluorescens P3. This strain is not an effective biological control agent against plant pathogens. The transformant P. fluorescens P3/pME6863 acquired the ability to degrade AHLs. In planta, P. fluorescens P3/pME6863 significantly reduced potato soft rot caused by Erwinia carotovora and crown gall of tomato caused by Agrobacterium tumefaciens to a similar level as Bacillus sp. A24. Little or no disease reduction was observed for the wild-type strain P3 carrying the vector plasmid without aiiA. Suppression of potato soft rot was observed even when the AHL-degrading P. fluorescens P3/pME6863 was applied to tubers 2 days after the pathogen, indicating that biocontrol was not only preventive but also curative. When antagonists were applied individually with the bacterial plant pathogens, biocontrol activity of the AHL degraders was greater than that observed with several Pseudomonas 2,4-diacetylphloroglucinol-producing strains and with Pseudomonas chlororaphis PCL1391, which relies on production of phenazine antibiotic for disease suppression. Phenazine production by this well characterized biological control strain P. chlororaphis PCL1391 is regulated by AHL-mediated quorum sensing. When P. chlororaphis PCL1391 was co-inoculated with P. fluorescens P3/pME6863 in a strain mixture, the AHL degrader interfered with the normally excellent ability of the antibiotic producer to suppress tomato vascular wilt caused by Fusarium oxysporum f. sp. lycopersici. Our results demonstrate AHL degradation as a novel biocontrol mechanism, but also demonstrate the potential for non-target interactions that can interfere with the biocontrol efficacy of other strains.

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Endosymbiosis is a mutualistic, parasitic or commensal symbiosis in which one symbiont is living within the body of another organism. Such symbiotic relationship with free-living amoebae and arthropods has been reported with a large biodiversity of microorganisms, encompassing various bacterial clades and to a lesser extent some fungi and viruses. By contrast, current knowledge on symbionts of nematodes is still mainly restricted to Wolbachia and its interaction with filarial worms that lead to increased pathogenicity of the infected nematode. In this review article, we aim to highlight the main characteristics of symbionts in term of their ecology, host cell interactions, parasitism and co-evolution, in order to stimulate future research in a field that remains largely unexplored despite the availability of modern tools.

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The oxalate-carbonate pathway (OCP) leads to a potential carbon sink in terrestrial environments. This process is linked to the activity of oxalotrophic bacteria. Although isolation and molecular characterizations are used to study oxalotrophic bacteria, these approaches do not give information on the active oxalotrophs present in soil undergoing the OCP. The aim of this study was to assess the diversity of active oxalotrophic bacteria in soil microcosms using the Bromodeoxyuridine (BrdU) DNA labeling technique. Soil was collected near an oxalogenic tree (Milicia excelsa). Different concentrations of calcium oxalate (0.5%, 1%, and 4% w/w) were added to the soil microcosms and compared with an untreated control. After 12days of incubation, a maximal pH of 7.7 was measured for microcosms with oxalate (initial pH 6.4). At this time point, a DGGE profile of the frc gene was performed from BrdU-labeled soil DNA and unlabeled soil DNA. Actinobacteria (Streptomyces- and Kribbella-like sequences), Gammaproteobacteria and Betaproteobacteria were found as the main active oxalotrophic bacterial groups. This study highlights the relevance of Actinobacteria as members of the active bacterial community and the identification of novel uncultured oxalotrophic groups (i.e. Kribbella) active in soils.

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AIMS/HYPOTHESIS: The molecular mechanisms of obesity-related insulin resistance are incompletely understood. Macrophages accumulate in adipose tissue of obese individuals. In obesity, monocyte chemoattractant protein-1 (MCP-1), a key chemokine in the process of macrophage accumulation, is overexpressed in adipose tissue. MCP-1 is an insulin-responsive gene that continues to respond to exogenous insulin in insulin-resistant adipocytes and mice. MCP-1 decreases insulin-stimulated glucose uptake into adipocytes. The A-2518G polymorphism in the distal regulatory region of MCP-1 may regulate gene expression. The aim of this study was to investigate the impact of this gene polymorphism on insulin resistance. METHODS: We genotyped the Ludwigshafen Risk and Cardiovascular Health (LURIC) cohort ( n=3307). Insulin resistance, estimated by homeostasis model assessment, and Type 2 diabetes were diagnosed in 803 and 635 patients respectively. RESULTS: Univariate analysis revealed that plasma MCP-1 levels were significantly and positively correlated with WHR ( p=0.011), insulin resistance ( p=0.0097) and diabetes ( p<0.0001). Presence of the MCP-1 G-2518 allele was associated with decreased plasma MCP-1 ( p=0.017), a decreased prevalence of insulin resistance (odds ratio [OR]=0.82, 95% CI: 0.70-0.97, p=0.021) and a decreased prevalence of diabetes (OR=0.80, 95% CI: 0.67-0.96, p=0.014). In multivariate analysis, the G allele retained statistical significance as a negative predictor of insulin resistance (OR=0.78, 95% CI: 0.65-0.93, p=0.0060) and diabetes (OR=0.80, 95% CI: 0.66-0.96, p=0.018). CONCLUSIONS/INTERPRETATION: In a large cohort of Caucasians, the MCP-1 G-2518 gene variant was significantly and negatively correlated with plasma MCP-1 levels and the prevalence of insulin resistance and Type 2 diabetes. These results add to recent evidence supporting a role for MCP-1 in pathologies associated with hyperinsulinaemia.

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To explore the discriminatory power of matrix-assisted laser desorption ionization-time of flight mass spectrometry (MALDI-TOF MS) for detecting subtle differences in isogenic isolates, we tested isogenic strains of Staphylococcus aureus differing in their expression of resistance to methicillin or teicoplanin. More important changes in MALDI-TOF MS spectra were found with strains differing in methicillin than in teicoplanin resistance. In comparison, very minor or no changes were recorded in pulsed-field gel electrophoresis profiles or peptidoglycan muropeptide digest patterns of these strains, respectively. MALDI-TOF MS might be useful to detect subtle strain-specific differences in ionizable components released from bacterial surfaces and not from their peptidoglycan network.

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We evaluated the accuracy of skinfold thicknesses, BMI and waist circumference for the prediction of percentage body fat (PBF) in a representative sample of 372 Swiss children aged 6-13 years. PBF was measured using dual-energy X-ray absorptiometry. On the basis of a preliminary bootstrap selection of predictors, seven regression models were evaluated. All models included sex, age and pubertal stage plus one of the following predictors: (1) log-transformed triceps skinfold (logTSF); (2) logTSF and waist circumference; (3) log-transformed sum of triceps and subscapular skinfolds (logSF2); (4) log-transformed sum of triceps, biceps, subscapular and supra-iliac skinfolds (logSF4); (5) BMI; (6) waist circumference; (7) BMI and waist circumference. The adjusted determination coefficient (R² adj) and the root mean squared error (RMSE; kg) were calculated for each model. LogSF4 (R² adj 0.85; RMSE 2.35) and logSF2 (R² adj 0.82; RMSE 2.54) were similarly accurate at predicting PBF and superior to logTSF (R² adj 0.75; RMSE 3.02), logTSF combined with waist circumference (R² adj 0.78; RMSE 2.85), BMI (R² adj 0.62; RMSE 3.73), waist circumference (R² adj 0.58; RMSE 3.89), and BMI combined with waist circumference (R² adj 0.63; RMSE 3.66) (P < 0.001 for all values of R² adj). The finding that logSF4 was only modestly superior to logSF2 and that logTSF was better than BMI and waist circumference at predicting PBF has important implications for paediatric epidemiological studies aimed at disentangling the effect of body fat on health outcomes.

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Polyhydroxyalkanoates (PHAs) are polyesters naturally produced by bacteria that have properties of biodegradable plastics and elastomers. A PHA synthase from Pseudomonas aeruginosa modified at the carboxy-end for peroxisomal targeting was transformed in Pichia pastoris. The PHA synthase was expressed under the control of the promoter of the P. pastoris acyl-CoA oxidase gene. Synthesis of up to 1% medium-chain-length PHA per g dry weight was dependent on both the expression of the PHA synthase and the presence of oleic acid in the medium. PHA accumulated as inclusions within the peroxisomes. P. pastoris could be used as a model system to study how peroxisomal metabolism needs to be modified to increase PHA production in other eukaryotes, such as plants.

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Nucleotide composition analyses of bacterial genomes such as cumulative GC skew highlight the atypical, strongly asymmetric architecture of the recently published chromosome of Idiomarina loihiensis L2TR, suggesting that an inversion of a 600-kb chromosomal segment occurred. The presence of 3.4-kb inverted repeated sequences at the borders of the putative rearrangement supports this hypothesis. Reverting in silico this segment restores (1) a symmetric chromosome architecture; (2) the co-orientation of transcription of all rRNA operons with DNA replication; and (3) a better conservation of gene order between this chromosome and other gamma-proteobacterial ones. Finally, long-range PCRs encompassing the ends of the 600-kb segment reveal the existence of the reverted configuration but not of the published one. This demonstrates how cumulative nucleotide-skew analyses can validate genome assemblies.