5 resultados para Lucifer, Bishop of Cagliari, -approximately 370.

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


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This Thesis is devoted to the study of the optical companions of Millisecond Pulsars in Galactic Globular Clusters (GCs) as a part of a large project started at the Department of Astronomy of the Bologna University, in collaboration with other institutions (Astronomical Observatory of Cagliari and Bologna, University of Virginia), specifically dedicated to the study of the environmental effects on passive stellar evolution in galactic GCs. Globular Clusters are very efficient “Kilns” for generating exotic object, such as Millisecond Pulsars (MSP), low mass X-ray binaries(LMXB) or Blue Straggler Stars (BSS). In particular MSPs are formed in binary systems containing a Neutron Star which is spun up through mass accretion from the evolving companion (e.g. Bhattacharia & van den Heuvel 1991). The final stage of this recycling process is either the core of a peeled star (generally an Helium white dwarf) or a very light almos exhausted star, orbiting a very fast rotating Neutron Star (a MSP). Despite the large difference in total mass between the disk of the Galaxy and the Galactic GC system (up a factor 103), the percentage of fast rotating pulsar in binary systems found in the latter is very higher. MSPs in GCs show spin periods in the range 1.3 ÷ 30ms, slowdown rates ˙P 1019 s/s and a lower magnetic field, respect to ”normal” radio pulsars, B 108 gauss . The high probability of disruption of a binary systems after a supernova explosion, explain why we expect only a low percentage of recycled millisecond pulsars respect to the whole pulsar population. In fact only the 10% of the known 1800 radio pulsars are radio MSPs. Is not surprising, that MSP are overabundant in GCs respect to Galactic field, since in the Galactic Disk, MSPs can only form through the evolution of primordial binaries, and only if the binary survives to the supernova explosion which lead to the neutron star formation. On the other hand, the extremely high stellar density in the core of GCs, relative to most of the rest of the Galaxy, favors the formation of several different binary systems, suitable for the recycling of NSs (Davies at al. 1998). In this thesis we will present the properties two millisecond pulsars companions discovered in two globular clusters, the Helium white dwarf orbiting the MSP PSR 1911-5958A in NGC 6752 and the second case of a tidally deformed star orbiting an eclipsing millisecond pulsar, PSR J1701-3006B in NGC6266

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Pharmaceuticals are useful tools to prevent and treat human and animal diseases. Following administration, a significant fraction of pharmaceuticals is excreted unaltered into faeces and urine and may enter the aquatic ecosystem and agricultural soil through irrigation with recycled water, constituting a significant source of emerging contaminants into the environment. Understanding major factors influencing their environmental fate is consequently needed to value the risk, reduce contamination, and set up bioremediation technologies. The antiviral drug Tamiflu (oseltamivir carboxylate, OC) has received recent attention due to the potential use as a first line defence against H5N1 and H1N1 influenza viruses. Research has shown that OC is not removed during conventional wastewater treatments, thus having the potential to enter surface water bodies. A series of laboratory experiments investigated the fate and the removal of OC in surface water systems in Italy and Japan and in a municipal wastewater treatment plant. A preliminary laboratory study investigated the persistence of the active antiviral drug in water samples from an irrigation canal in northern Italy (Canale Emiliano Romagnolo). After an initial rapid decrease, OC concentration slowly decreased during the remaining incubation period. Approximately 65% of the initial OC amount remained in water at the end of the 36-day incubation period. A negligible amount of OC was lost both from sterilized water and from sterilized water/sediment samples, suggesting a significant role of microbial degradation. Stimulating microbial processes by the addition of sediments resulted in reduced OC persistence. Presence of OC (1.5 μg mL-1) did not significantly affect the metabolic potential of the water microbial population, that was estimated by glyphosate and metolachlor mineralization. In contrast, OC caused an initial transient decrease in the size of the indigenous microbial population of water samples. A second laboratory study focused on basic processes governing the environmental fate of OC in surface water from two contrasting aquatic ecosystems of northern Italy, the River Po and the Venice Lagoon. Results of this study confirmed the potential of OC to persist in surface water. However, the addition of 5% of sediments resulted in rapid OC degradation. The estimated half-life of OC in water/sediment of the River Po was 15 days. After three weeks of incubation at 20 °C, more than 8% of 14C-OC evolved as 14CO2 from water/sediment samples of the River Po and Venice Lagoon. OC was moderately retained onto coarse sediments from the two sites. In water/sediment samples of the River Po and Venice Lagoon treated with 14C-OC, more than 30% of the 14C-residues remained water-extractable after three weeks of incubation. The low affinity of OC to sediments suggests that the presence of sediments would not reduce its bioavailability to microbial degradation. Another series of laboratory experiments investigated the fate and the removal of OC in two surface water ecosystems of Japan and in the municipal wastewater treatment plant of the city of Bologna, in Northern Italy. The persistence of OC in surface water ranged from non-detectable degradation to a half-life of 53 days. After 40 days, less than 3% of radiolabeled OC evolved as 14CO2. The presence of sediments (5%) led to a significant increase of OC degradation and of mineralization rates. A more intense mineralization was observed in samples of the wastewater treatment plant when applying a long incubation period (40 days). More precisely, 76% and 37% of the initial radioactivity applied as 14C-OC was recovered as 14CO2 from samples of the biological tank and effluent water, respectively. Two bacterial strains growing on OC as sole carbon source were isolated and used for its removal from synthetic medium and environmental samples, including surface water and wastewater. Inoculation of water and wastewater samples with the two OC-degrading strains showed that mineralization of OC was significantly higher in both inoculated water and wastewater, than in uninoculated controls. Denaturing gradient gel electrophoresis and quantitative PCR analysis showed that OC would not affect the microbial population of surface water and wastewater. The capacity of the ligninolytic fungus Phanerochaete chrysosporium to degrade a wide variety of environmentally persistent xenobiotics has been largely reported in literature. In a series of laboratory experiments, the efficiency of a formulation using P. chrysosporium was evaluated for the removal of selected pharmaceuticals from wastewater samples. Addition of the fungus to samples of the wastewater treatment plant of Bologna significantly increased (P < 0.05) the removal of OC and three antibiotics, erythromycin, sulfamethoxazole, and ciprofloxacin. Similar effects were also observed in effluent water. OC was the most persistent of the four pharmaceuticals. After 30 days of incubation, approximately two times more OC was removed in bioremediated samples than in controls. The highest removal efficiency of the formulation was observed with the antibiotic ciprofloxacin. The studies included environmental aspects of soil contamination with two emerging veterinary contaminants, such as doramectin and oxibendazole, wich are common parasitic treatments in cattle farms.

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The human DMD locus encodes dystrophin protein. Absence or reduced levels of dystrophin (DMD or BMD phenotype, respectively) lead to progressive muscle wasting. Little is known about the complex coordination of dystrophin expression and its transcriptional regulation is a field of intense interest. In this work we found that DMD locus harbours multiple long non coding RNAs which orchestrate and control transcription of muscle dystrophin mRNA isoforms. These lncRNAs are tissue-specific and highly expressed during myogenesis, suggesting a possible role in tissue-specific expression of DMD gene isoforms. Their forced ectopic expression in human muscle and neuronal cells leads to a specific and negative regulation of endogenous dystrophin full lenght isoforms. An intriguing aspect regarding the transcription of the DMD locus is the gene size (2.4Mb). The mechanism that ensures the complete synthesis of the primary transcript and the coordinated splicing of 79 exons is still completely unknown. By ChIP-on-chip analyses, we discovered novel regions never been involved before in the transcription regulation of the DMD locus. Specifically, we observed enrichments for Pol II, P-Ser2, P-Ser5, Ac-H3 and 2Me-H3K4 in an intronic region of 3Kb (approximately 21Kb) downstream of the end of DMD exon 52 and in a region of 4Kb spanning the DMD exon 62. Interestingly, this latter region and the TSS of Dp71 are strongly marked by 3Me-H3K36, an histone modification associated with the regulation of splicing process. Furthermore, we also observed strong presence of open chromatin marks (Ac-H3 and 2Me-H3K4) around intron 34 and the exon 45 without presence of RNA pol II. We speculate that these two regions may exert an enhancer-like function on Dp427m promoter, although further investigations are necessary. Finally, we investigated the nuclear-cytoplasmic compartmentalization of the muscular dystrophin mRNA and, specifically, we verified whether the exon skipping therapy could influence its cellular distribution.

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Utilizzando fonti della più diversa tipologia (liturgiche, agiografiche, storiche, letterarie, archeologiche ed epigrafiche), lo studio condotto sulla Passio s. Prisci e sulla Vita s. Castrensis, entrambe con ogni probabilità composte da monaci benedettini a Capua tra X e XI secolo, si concentra innanzitutto sulle vicende che in quell'arco di tempo resero possibile la permanenza delle comunità di Montecassino e di S. Vincenzo al Volturno nel centro campano e sul riflesso che la loro presenza ebbe sulla vita politica e culturale della città. La Passio s. Prisci acquista una valenza non solo religiosa ma anche politica se messa in relazione con la quasi contemporanea istituzione della metropolia capuana; la Vita s. Castrensis, per la netta prevalenza dell'elemento fantastico e soprannaturale che la caratterizza, appare meno legata alle contingenze storico-politiche e più vicina ai topoi della tradizione agiografica e popolare. I capitoli centrali della tesi sono dedicati alla figura di Quodvultdeus, vescovo cartaginese esiliato dai Vandali nel V secolo, la cui vicenda, narrata da Vittore di Vita nell'Historia persecutionis africanae provinciae ha funto da modello per le agigrafie campane. La ricerca prende dunque in considerazione le fonti letterarie, i ritrovamenti archeologici e le testimonianze epigrafiche che confermerebbero la testimonianza di Vittore, riflettendo inoltre sui rapporti di natura commerciale che nel V secolo intercorsero tra Africa e Campania e sul forte legame esistente, già a partire dal secolo precedente, tra le Chiese delle due regioni, fattori che potrebbero aver facilitato l'arrivo degli esuli cartaginesi a Napoli. L'ultima parte del lavoro è volta a rintracciare le ragioni storiche e letterarie che possono aver spinto gli autori dei testi a trasformare due santi di sicura origine campana in vescovi africani venuti dal mare, favorendo la diffusione del topos nell'agiografia campana medievale.

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Obiettivo: Lo scopo principale di questo studio è analizzare lo sviluppo di complicanze cardiovascolari (CV) nei pazienti con neoplasia e malattia moderata-severa da COVID-19 e valutare differenze di genere per il rischio di mortalità intraospedaliera o di complicanze CV. Materiali e Metodi. Popolazione oggetto di studio. Pazienti inclusi nel registro ISACS-COVID 19 (ClinicalTrials.gov: NCT05188612), dati raccolti a partire da Febbraio 2020 a Luglio 2022. I pazienti arruolati sono stati reclutati da centri ospedalieri di cinque paesi: Italia, Croazia, Macedonia, Serbia e Romania. Le caratteristiche d’inclusione comprendono: età >18 anni, essere ospedalizzati e avere diagnosi certa d’infezione da SARS-CoV2. Gli endpoint analizzati sono stati: mortalità intraospedaliera e lo sviluppo di scompenso cardiaco acuto (SCA) nei pazienti con neoplasia. Risultati. La popolazione finale oggetto dello studio era di 4,014 pazienti ospedalizzati per malattia da COVID-19. Di questi circa l’8% risultava affetto da neoplasia. I pazienti con neoplasia risultavano essere più frequentemente donne (49% vs 40%, p=0.004), con un’età media più alta (68.3±12.95 vs 65.2±15.6, p<0.001) ma con profilo di rischio CV simile ai pazienti liberi da neoplasia. A seguito di analisi logistica di regressione multivariata, le donne non risultavano avere un incremento del rischio di mortalità intraospedaliera (OR 0.83;95%CI 0.66-2.45), mentre la presenza di tumore era significativamente associata ad incremento di mortalità (OR 1.68;95%CI 1.16-2.45). Restringendo le analisi di regressione logistica ai pazienti oncologici, le donne presentavano un incremento del rischio di sviluppo di SC acuto (OR3.07;95%CI 1.14 – 8.30) così come lo era la presenza di tumore al seno (OR 2.26; 95%CI 1.38 – 12.1). Conclusioni. La presenza di neoplasia rappresenta una condizione che incrementa il rischio di mortalità intraospedaliera nei pazienti ricoverati con COVID-19, mentre il genere femminile no. Le donne sembrano avere un rischio aumentato di sviluppo di SC acuto soprattutto se presentano un tumore al seno