118 research outputs found

    Morganella morganii septicemia and concurrent renal crassicaudiasis in a Cuvier’s beaked whale (Ziphius cavirostris) stranded in Italy

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    Information regarding bacterial diseases in Cuvier's beaked whale (CBW, Ziphius cavirostris) is scattered and mostly incomplete. This report describes a case of septicemia by Morganella morganii in a juvenile male CBW with concurrent renal crassicaudiasis. The animal stranded along the Ligurian coastline (Italy) and underwent a systematic post-mortem examination to determine the cause of death. Histopathology showed lesions consistent with a septicemic infection, severe meningoencephalitis, and renal crassicaudiasis. An M. morganii alpha-hemolytic strain was isolated in pure culture from liver, lung, prescapular lymph node, spleen, hepatic and renal abscesses, and central nervous system (CNS). The antimicrobial susceptibility profile of the strain was evaluated with the minimum inhibitory concentrations (MICs) method and reduced susceptibility to Trimethoprim-Sulfamethoxazole is reported. Crassicauda sp. nematodes were retrieved from both kidneys. No other pathogens were detected by immunohistochemistry, serology, or biomolecular analyses. Toxicological investigations detected high concentrations of immunosuppressant pollutants in the blubber. The chronic parasitic infestation and the toxic effects of xenobiotics likely compromised the animal's health, predisposing it to an opportunistic bacterial infection. To our knowledge, this is the first description of M. morganii septicemia with CNS involvement in a wild cetacean

    The Power of Exercise: Buffering the Effect of Chronic Stress on Telomere Length

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    Background: Chronic psychological stress is associated with detrimental effects on physical health, and may operate in part through accelerated cell aging, as indexed by shorter telomeres at the ends of chromosomes. However, not all people under stress have distinctly short telomeres, and we examined whether exercise can serve a stress-buffering function. We predicted that chronic stress would be related to short telomere length (TL) in sedentary individuals, whereas in those who exercise, stress would not have measurable effects on telomere shortening. Methodology and Principal Findings: 63 healthy post-menopausal women underwent a fasting morning blood draw for whole blood TL analysis by a quantitative polymerase chain reaction method. Participants completed the Perceived Stress Scale (Cohen et al., 1983), and for three successive days reported daily minutes of vigorous activity. Participants were categorized into two groups-sedentary and active (those getting Centers for Disease Control-recommended daily amount of activity). The likelihood of having short versus long telomeres was calculated as a function of stress and exercise group, covarying age, BMI and education. Logistic regression analyses revealed a significant moderating effect of exercise. As predicted, among non-exercisers a one unit increase in the Perceived Stress Scale was related to a 15-fold increase in the odds of having short telomeres (p,.05), whereas in exercisers, perceived stress appears to be unrelated to TL (B = 2.59, SE =.78, p =.45)

    Protein disulphide isomerase-assisted functionalization of proteinaceous substrates

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    Protein disulphide isomerase (PDI) is an enzyme that catalyzes thiol-disulphide exchange reactions among a broad spectrum of substrates, including proteins and low-molecular thiols and disulphides. As the first protein-folding catalyst reported, the study of PDI has mainly involved the correct folding of several cysteine-containing proteins. Its application on the functionalization of protein-based materials has not been extensively reported. Herein, we review the applications of PDI on the modification of proteinaceous substrates and discuss its future potential. The mechanism involved in PDI functionalization of fibrous protein substrates is discussed in detail. These approaches allow innovative applications in textile dyeing and finishing, medical textiles, controlled drug delivery systems and hair or skin care products.We thank to FCT 'Fundacao para a Ciencia e Tecnologia' (scholarship SFRH/BD/38363/2007) for providing Margarida Fernandes the grant for PhD studies

    Hemp waste: production of nanocellulose and its use in fully biobased photocured composites

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    Hemp is a sustainable crop, grown either for textile fibers or for seeds. In the latter case, the stem is left behind as waste, and its recovery is desirable. First, we produced nanocellulose from hemp fibers obtained from waste stems: these underwent chemical, mechanical and enzymatic pre-treatment steps, before being processed in an ultrafine friction grinder to obtain nanocellulose. The dimensions and chemical composition of the fibers during all steps were monitored by optical and field emission scanning electron microscopy (FESEM), infrared spectroscopy (FTIR), and thermogravimetric analysis. The chemical pretreatment removed lignin and hemicellulose, opening up the fiber wall. The dimensions of the fibers were reduced throughout all treatment steps. The thermal and mechanical properties, and the permeability to water vapour of nanopaper prepared from nanocellulose (Fig. 2) were also assessed. Secondly, combining the nanocellulose with a photocured polymer matrix, derived from agri-food industry waste, we prepared composites, potentially usable in packaging. We selected a photopolymer matrix, being photopolymerization a green technology, owing to low energy requirements, high reaction rates, and low VOC emissions4. The extent of curing was evaluated by FTIR, and the thermal and mechanical properties were assessed. The preparation of sustainable composites derived from biomass (both filler and matrix), through the use of an environmentally friendly curing process, is therefore hereby demonstrated
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