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41.
Stefania Ruggeri Elisa De Arcangelis Altero Aguzzi Maria Cristina Messia Emanuele Marconi 《Nutrients》2022,14(18)
Folate is a fundamental vitamin for human health in prevention of many diseases; however, unfortunately its deficiency is widespread, so a greater availability of folate rich foods is desirable. The aim of this study was to design new cereal products naturally enriched in folate using barley flour from pearling as ingredient. Folate content of unfortified and fortified commercial grain-based products was considered to identify the best ingredients for new formulation and for folate content comparisons. Nineteen Italian barley cultivars were evaluated for their folate content and Natura was chosen for its highest folate levels = 69.3 μg/100 g f.w. Application of pearling gave a by-product flour with a high folate level: 221.7 ± 7.0 μg/100 g; this flour was employed to design pasta and biscuits naturally enriched in folate: 87.1 μg/100 g and 70.1 ± 3.7 μg/100 g f.w., respectively. Folate content of new products is higher than commercial samples: 39.2 μg/100 g in refined pasta, 60.4 μg/100 g in wholemeal pasta, 62.1 μg/100 g in fortified biscuits and 10.4 μg/100 g in unfortified ones. Enriched pasta had higher folate retention (68.5%) after cooking compared to the fortified one (27.8%). This research shows promising results concerning the pearling technique to design new cereal products naturally enriched in folates. 相似文献
42.
Giulia Besutti Massimo Pellegrini Marta Ottone Efrem Bonelli Filippo Monelli Roberto Farì Jovana Milic Giovanni Dolci Tommaso Fasano Simone Canovi Stefania Costi Stefania Fugazzaro Marco Massari Guido Ligabue Stefania Croci Carlo Salvarani Pierpaolo Pattacini Giovanni Guaraldi Paolo Giorgi Rossi 《Nutrients》2022,14(18)
We aimed to describe body composition changes up to 6–7 months after severe COVID-19 and to evaluate their association with COVID-19 inflammatory burden, described by the integral of the C-reactive protein (CRP) curve. The pectoral muscle area (PMA) and density (PMD), liver-to-spleen (L/S) ratio, and total, visceral, and intermuscular adipose tissue areas (TAT, VAT, and IMAT) were measured at baseline (T0), 2–3 months (T1), and 6–7 months (T2) follow-up CT scans of severe COVID-19 pneumonia survivors. Among the 208 included patients (mean age 65.6 ± 11 years, 31.3% females), decreases in PMA [mean (95%CI) −1.11 (−1.72; −0.51) cm2] and in body fat areas were observed [−3.13 (−10.79; +4.52) cm2 for TAT], larger from T0 to T1 than from T1 to T2. PMD increased only from T1 to T2 [+3.07 (+2.08; +4.06) HU]. Mean decreases were more evident for VAT [−3.55 (−4.94; −2.17) cm2] and steatosis [L/S ratio increase +0.17 (+0.13; +0.20)] than for TAT. In multivariable models adjusted by age, sex, and baseline TAT, increasing the CRP interval was associated with greater PMA reductions, smaller PMD increases, and greater VAT and steatosis decreases, but it was not associated with TAT decreases. In conclusion, muscle loss and fat loss (more apparent in visceral compartments) continue until 6–7 months after COVID-19. The inflammatory burden is associated with skeletal muscle loss and visceral/liver fat loss. 相似文献
43.
Silvia Greco Stefania Manzi Luisa Molari Andrea Saccani Gianfranco Ulian Giovanni Valdr 《Materials》2023,16(1)
One of the main concerns in using natural materials in construction, such as bamboo, regards their durability. Ultra violet (UV)irradiation is claimed as a damaging agent; therefore, it is important to study its effect. Several studies have shown that bamboo components such as lignin are subjected to photochemical degradation, but it is not well understood how this affects the mechanical properties of bamboo. The aim of this paper is to explore the correlation between photodegradation and bamboo mechanical performance. Bamboo samples were exposed to accelerated UV ageing for different times (from 6 to 360 h) and then subjected to a four-point bending test. Since one of the ways to stabilize bamboo is to thermally treat it, the tests were conducted on natural untreated bamboo and treated bamboo with a traditional flame treatment. Modifications of the chemical features of the material were analyzed with Fourier Trasform Infra Red (FTIR) spectroscopy, while modifications of the morphological features were analyzed byEnvironmental Scanning Electron Microscopy ESEM and optical microscopy observations. The results show that the bending behavior of bamboo is not compromised by UV exposure up to 360 h. In fact, although a progressive degradation of lignin is reported and cracks in the fiber walls are highlighted from micrographs, no effects were found on the fiber length. 相似文献
44.
正Neurodegenerative diseases are becoming a big challenge for modern society.Neurodegenerative disorders strongly impact on patient and their caregivers.Moreover, since the population is becoming older, these pathologies will deeply influence medical and socio-economic conditions in the next years.Therefore, efforts are needed to find new strategies devoted to define new protocols and identify novel substances able to prevent neurodegeneration or to improve the quality of life of people affected by neurodegenerative diseases(Alzheimer's Disease International, 2019). 相似文献
45.
46.
Vladan Milosevic Joanna Kopecka Iris C. Salaroglio Roberta Libener Francesca Napoli Stefania Izzo Sara Orecchia Preeta Ananthanarayanan Paolo Bironzo Federica Grosso Fabrizio Tabbò Valentina Comunanza Teodora Alexa-Stratulat Federico Bussolino Luisella Righi Silvia Novello Giorgio V. Scagliotti Chiara Riganti 《International journal of cancer. Journal international du cancer》2020,146(1):192-207
47.
Valeria Cento Claudia Alteri Valentina Mancini Milo Gatti Valentina Lepera Ernestina Mazza Maria Cristina Moioli Marco Merli Jacopo Colombo Carlo Andrea Orcese Alessandra Bielli Stefania Torri Laura Elisa Gasparini Chiara Vismara Andrea De Gasperi Paolo Brioschi Massimo Puoti Roberto Cairoli Gianluigi Lombardi Carlo Federico Perno 《Mycoses》2020,63(12):1299-1310
48.
Stefania Imperatore 《Materials》2022,15(13)
Aging and corrosion of reinforced concrete structures (RCS) is becoming a global problem, thus proper procedures for simulating the structural performance of corroded RCS should be assessed. Among the main corrosion effects, concrete cover cracking and reinforcement cross-section reduction may influence the materials’ constitutive laws, moreover the confinement contribution and the lateral instability of the longitudinal rebars can be modified. In the present paper, the predictive models available in the scientific literature to assess the materials’ mechanical properties of corroded RCS are recalled and employed into a novel model to derive the theoretical moment–curvature relationships for the cross-section of square and rectangular corroded reinforced concrete elements. The model accounts for cover spalling, buckling of longitudinal reinforcing bars, reduction in confinement pressures, reduction in concrete constitutive law due to the concrete cracking induced by rust formation and decay of mechanical properties for corroded reinforcements. The obtained results are compared with the classical simplified models for corroded RCS, highlighting that buckling and confinement variations cannot be disregarded into a reliable modelling strategy, especially when local ductility plays a key role in the performed investigations. 相似文献
49.
Dr. Stefania Lichtenstein 《Medical microbiology and immunology》1924,102(1-2):55-56
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