5 research outputs found

    Il falso dilemma pubblico-privato. L’anomalia della scuola italiana nel contesto europeo

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    Il modello organizzativo del sistema scolastico italiano in prospettiva storica e comparata nel contesto europeo; prospettive per un adeguamento della scuola italiana al “sistema medio europeo”.- Indice #4- Introduzione, Marcello Pacini #8- Nota metodologica #14- Cap.I Il modello organizzativo del sistema scolastico italiano #18- Cap.II Il sistema medio europeo. Sistemi e problemi di un'analisi comparata #54- Cap.III Verso la deburocratizzazione. Prospettive per un adeguamento della scuola italiana al “sistema medio europeo” #114- Allegato I La struttura del sistema scolastico italiano #146- Relazioni e interventi di discussione sulla ricerca #206- Intervento On. Francesco Casati, Presidente della Commissione Istruzione e Belle Arti della Camera dei Deputati #208- Intervento Sen. Luigi Covatta, Sottosegretario di Stato alla Pubblica Istruzione #212- Intervento Sen. Salvatore Valitutti, Presidente della Commissione Istruzione Pubblica e Belle Arti del Senato della Repubblica #215- Intervento Emanuele Caruso, Dirigente Generale dell'Istruzione Tecnica, Ministero della Pubblica Istruzione #219- Intervento Mario Dupuis, Responsabile Scuola del Movimento Popolare #222- Intervento On. Laura Fincato, Vicepresidente della Commissione Istruzione e Belle Arti della Camera dei Deputati #225- Intervento Aureliana Alberici, Responsabile Scuola/Università della Direzione del P.C.I. #229- Intervento Paolo Serreri, Federazione Scuola Università C.G.I.L. #237- Intervento Daniela Silvestri, Rappresentante nazionale del Sindacato Nazionale Autonomo Lavoratori Scuola SNALS #242- Intervento Paolo Martelli, Direttore di POLITEIA - Centro per la ricerca e la formazione in politica ed etica #245- Intervento Salvatore Sechi, Professore ordinario di Storia Contemporanea, Università di Bologna #252- Intervento Piero Romei, Ricercatore dell'ISGO #257- Intervento Giovanni Bechelloni, Professore ordinario di Sociologia dei processi culturali, Università di Firenze #263- Intervento Giorgio Allulli, Censis #266- Intervento Graziella Morselli, FNISM #270- Intervento Luigi Pedrazzi, Il Mulino #274- Intervento Luciano Benadusi, Responsabile Settore Università e ricerca scientifica della Direzione Socialista #277- Intervento Mario Caronna #Coordinatore scientifico del Centro Studi di Milano #282- Intervento Adriana Rosas, Ricercatore presso il CLAS #287- Intervento Giovanni Tesoro, Ricercatore presso l’ISGO #290- Considerazioni conclusive Luisa Ribolzi, CLAS #29

    Active Opto-Magnetic Biosensing with Silicon Microring Resonators

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    Integrated optical biosensors are gaining increasing attention for their exploitation in lab-on-chip platforms. The standard detection method is based on the measurement of the shift of some optical quantity induced by the immobilization of target molecules at the surface of an integrated optical element upon biomolecular recognition. However, this requires the acquisition of said quantity over the whole hybridization process, which can take hours, during which any external perturbation (e.g., temperature and mechanical instability) can seriously affect the measurement and contribute to a sizeable percentage of invalid tests. Here, we present a different assay concept, named Opto-Magnetic biosensing, allowing us to optically measure off-line (i.e., post hybridization) tiny variations of the effective refractive index seen by microring resonators upon immobilization of magnetic nanoparticles labelling target molecules. Bound magnetic nanoparticles are driven in oscillation by an external AC magnetic field and the corresponding modulation of the microring transfer function, due to the effective refractive index dependence on the position of the particles above the ring, is recorded using a lock-in technique. For a model system of DNA biomolecular recognition we reached a lowest detected concentration on the order of 10 pm, and data analysis shows an expected effective refractive index variation limit of detection of 7.5×10−9 RIU, in a measurement time of just a few seconds

    SARS-Cov-2 Natural Infection in a Symptomatic Cat: Diagnostic, Clinical and Medical Management in a One Health Vision

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    Despite the reported increase in SARS-CoV-2-infected pets, the description of the clinical features from natural infection and the medical follow up in symptomatic pets is still not sufficiently documented. This study reports the case of an indoor cat that displayed respiratory signs and a gastrointestinal syndrome, following the COVID-19 diagnosis of his owners. Thoracic radiographies were suggestive of bronchial pneumonia, while blood tests were indicative of a mild inflammatory process. Nasal and oropharyngeal swabs tested positive through RT-qPCR assays targeting SARS-CoV-2 genes 14 days after his owners tested positive for the virus. Nasal swabs persisted to be RT-qPCR positive after 31 days. Serology confirmed the presence of antibodies through ELISA, electrochemiluminescence analysis and plaque reduction neutralization test, recording a high antibody titre after 31 days. The cat improved after medical treatment and clinically recovered. This study suggests that exposure to SARS-CoV-2 could lead to a natural infection with bronchial pneumonia in cats along with a possible prolonged persistence of SARS-CoV-2 RNA in the upper airways, albeit at a low level. The cat developed neutralizing antibodies, reaching a high titre after 31 days. Further descriptions of SARS-CoV-2 naturally infected pets, their medical management and diagnostic findings would be useful to enhance knowledge about COVID-19 in susceptible animals

    Constitutive cyclic GMP accumulation in Arabidopsis thaliana compromises systemic acquired resistance induced by an avirulent pathogen by modulating local signals

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    The infection of Arabidopsis thaliana plants with avirulent pathogens causes the accumulation of cGMP with a biphasic profile downstream of nitric oxide signalling. However, plant enzymes that modulate cGMP levels have yet to be identified, so we generated transgenic A. thaliana plants expressing the rat soluble guanylate cyclase (GC) to increase genetically the level of cGMP and to study the function of cGMP in plant defence responses. Once confirmed that cGMP levels were higher in the GC transgenic lines than in wild-type controls, the GC transgenic plants were then challenged with bacterial pathogens and their defence responses were characterized. Although local resistance was similar in the GC transgenic and wild-type lines, differences in the redox state suggested potential cross-talk between cGMP and the glutathione redox system. Furthermore, large-scale transcriptomic and proteomic analysis highlighted the significant modulation of both gene expression and protein abundance at the infection site, inhibiting the establishment of systemic acquired resistance. Our data indicate that cGMP plays a key role in local responses controlling the induction of systemic acquired resistance in plants challenged with avirulent pathogens
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