18 research outputs found

    Dichiarazione ICRP sulle reazioni tissutali ed effetti immediati e tardivi delle radiazioni nei tessuti e negli organi normali - Dosi soglia per le reazioni tissutali nell’ambito della radioprotezione

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    La pubblicazione ICRP 118 riesamina gli effetti precoci e tardivi delle radiazioni ionizzanti nei diversi organi ed apparati e fornisce stime aggiornate sulle dosi soglia per l'induzione delle numerose reazioni tissutali analizzate. In particolare, a seguito dei progressi nelle conoscenze radiobiologiche e cliniche, pubblicati in numerosi testi specialistici, vengono dettagliatamente presentate le evidenze che hanno condotto alle modificazioni, rispetto alle Raccomandazioni ICRP 103/2007, nella individuazione delle dosi soglia per la induzione della cataratta e delle patologie del sistema circolatorio da parte delle radiazioni ionizzanti. A queste rilevanti considerazioni si affiancano gli approfonditi aggiornamenti sulle conoscenze radiobiologiche e cliniche e le integrazioni delle dosi soglia, individuate in modo più articolato rispetto alle precedenti pubblicazioni, per tutte le altre reazioni tissutali, che rendono questo documento un indispensabile strumento di lavoro e di analisi per tutti coloro che si occupano di radioprotezione, con particolare riferimento agli specialisti di radioprotezione medica. La traduzione in italiano dell’intero testo vuole facilitare la diffusione delle peculiari informazioni contenute nella pubblicazione e motivare una sempre più approfondita ricerca in questo settore che indubbiamente contribuisce a ridurre i rischi derivanti dall’esposizione alle radiazioni ionizzanti. La realizzazione della versione italiana di questa pubblicazione ha richiesto un notevole impegno qualitativo e quantitativo ed è stata possibile per il considerevole e qualificante contributo dei medici dell’AIRM e dei membri del Comitato Internazionale dell'AIRP. A tutti coloro che hanno collaborato alla sua traduzione, revisione e pubblicazione con notevole spirito di sacrificio, è rivolto l'apprezzamento e la riconoscenza delle nostre Associazioni, che riuniscono gli operatori attivi nei vari settori di interesse della radioprotezione

    Who Needs Microtubules? Myogenic Reorganization of MTOC, Golgi Complex and ER Exit Sites Persists Despite Lack of Normal Microtubule Tracks

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    A wave of structural reorganization involving centrosomes, microtubules, Golgi complex and ER exit sites takes place early during skeletal muscle differentiation and completely remodels the secretory pathway. The mechanism of these changes and their functional implications are still poorly understood, in large part because all changes occur seemingly simultaneously. In an effort to uncouple the reorganizations, we have used taxol, nocodazole, and the specific GSK3-β inhibitor DW12, to disrupt the dynamic microtubule network of differentiating cultures of the mouse skeletal muscle cell line C2. Despite strong effects on microtubules, cell shape and cell fusion, none of the treatments prevented early differentiation. Redistribution of centrosomal proteins, conditional on differentiation, was in fact increased by taxol and nocodazole and normal in DW12. Redistributions of Golgi complex and ER exit sites were incomplete but remained tightly linked under all circumstances, and conditional on centrosomal reorganization. We were therefore able to uncouple microtubule reorganization from the other events and to determine that centrosomal proteins lead the reorganization hierarchy. In addition, we have gained new insight into structural and functional aspects of the reorganization of microtubule nucleation during myogenesis

    Functional annotation of human long noncoding RNAs via molecular phenotyping

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    Long noncoding RNAs (lncRNAs) constitute the majority of transcripts in the mammalian genomes, and yet, their functions remain largely unknown. As part of the FANTOM6 project, we systematically knocked down the expression of 285 lncRNAs in human dermal fibroblasts and quantified cellular growth, morphological changes, and transcriptomic responses using Capped Analysis of Gene Expression (CAGE). Antisense oligonucleotides targeting the same lncRNAs exhibited global concordance, and the molecular phenotype, measured by CAGE, recapitulated the observed cellular phenotypes while providing additional insights on the affected genes and pathways. Here, we disseminate the largest-todate lncRNA knockdown data set with molecular phenotyping (over 1000 CAGE deep-sequencing libraries) for further exploration and highlight functional roles for ZNF213-AS1 and lnc-KHDC3L-2.Peer reviewe

    La directive 96/29/Euratom et ses novations

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    Florentine Normative Values for Physical Fitness in Adolescents Aged 14–15 Years

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    Physical fitness during youth is linked to the health of today’s young people and future adults. Therefore, fitness evaluation can direct any physical exercise interventions and verify improvements. The study aims to provide normative values of the physical fitness of the Florentine adolescent population. This cross-sectional study enrolled 1915 subjects aged 14 and 15 from the first and second high school classes. Tests were performed to assess cardiovascular endurance, upper and lower limb strength, running speed and agility, and lower limb muscle flexibility. Sex and age-related percentiles were elaborated. The study included 1028 subjects in the first class (aged 14.3 ± 0.8 years; 54.5% females) and 887 in the second class (aged 15.3 ± 0.7 years; 53.4% females). Males showed higher values than females except for flexibility. Furthermore, both genders show increased results in transitioning from the first to the second class, except for muscle flexibility and running speed. The percentiles of the present study provide normative values of the physical fitness of the 14–15-year-old Florentine adolescent population. These results, characterized by a sociocultural specificity linked to the territory from which they were collected, can contribute to the assessment and improvement of the physical status of young people, promoting current and future health
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