13 research outputs found

    Estimates of Tiber River organophosphate pesticide loads to the Tyrrhenian Sea and ecological risk

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    The organophosphate pesticides pollution in the Tiber River and its environmental impact on the Tyrrhenian Sea (Central Mediterranean Sea) were estimated. Eight selected organophosphate pesticides (diazinon, dimethoate, malathion, chlorpyrifos, pirimiphos-methyl, fenitrothion, methidathion, tolclofos-methyl) were determined in the water dissolved phase, suspended particulate matter and sediment samples collected from 21 sites in different seasons. Total organophosphate pesticides concentrations ranged from 0.40 to 224.48 ng L-1 in water (as the sum of the water dissolved phase and suspended particulate matter) and from 1.42 to 68.46 ng g(-1) in sediment samples. Contaminant discharges of organophosphate pesticides into the sea were calculated in about 545.36 kg year(-1) showing that this river should be consider as one of the main contribution sources of organophosphate pesticides to the Tyrrhenian Sea. In relation to the eco-toxicological assessment, the concentrations of most OPPs in the water and sediments from the Tiber River and its estuary were lower than guideline values

    Retroperitoneal liposarcoma associated with small plaque parapsoriasis

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    <p>Abstract</p> <p>Background</p> <p>Extremely rare cases of paraneoplastic syndromes or ectopic production of proteins associated with liposarcoma are reported in literature. Production of Granulocyte-Colony Stimulating Factor, alpha-fetoprotein, paraneoplastic pemphigus and leucocytosis, Acrokeratosis paraneoplastica (Bazex's syndrome) are reported.</p> <p>The present report describes a case of retroperitoneal liposarcoma associated with small plaque parapsoriasis. Our search in the English literature of such a kind of association did not reveal any case reported.</p> <p>Case presentation</p> <p>A 74 year male patient was admitted to our hospital because of the presence of an abdominal mass in right iliac fossa. He also complained of a two-year history of psoriasiform eruptions. The CT scan showed a retroperitoneal pelvic mass. Therefore surgical resection of the tumor was performed. After surgery, the skin eruptions disappeared completely in seven days and so a diagnosis of parapsoriasis syndrome was done.</p> <p>Conclusion</p> <p>Parallel disappearing of skin eruptions after surgery, typical clinical picture and not specific histology of the cutaneous lesions suggest the diagnosis of small plaque parapsoriasis. Therefore we propose to add Small Plaque Parapsoriasis to the list of paraneoplastic syndromes associated to liposarcoma.</p

    Unicentric localization of Castleman’s disease treated with laparoscopic and traditional approach. Report of two cases

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    Castleman’s disease (CD) is a rare lymphoproliferative disorder. Clinically CD has been subdivided in two forms: unicentric and multicentric. The unicentric type is limited to a single anatomic lymph-node-bearing region. The present report describes two cases of unicentric CD: the first was an abdominal localization treated with a laparoscopic approach; the second was a submaxillary localization treated with a classical approach. In case 1 the laparoscopic approach permitted to reach diagnosis, not clear after diagnostic imaging procedures, and enabled a total and excellent resolution of the patology because our patient,after eight months of follow up, has had no evidence of recurrence of the disease. In case 2 we want to highlight that CD should be considered in the differential diagnosis of a solitary neck mass and that the surgical treatment is diagnostic and curative at the same time

    High activity and selectivity immobilized lipase on Fe3O4 nanoparticles for banana flavour synthesis

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    Lipase (E.C.3.1.1.3) from Thermomyces lanuginosus (TL) was directly bonded, through multiple physical interactions, on citric acid functionalized monodispersed Fe3O4 nanoparticles (NPs) in presence of a small amount of hydrophobic functionalities. A very promising scalable synthetic approach ensuring high control and reproducibility of the results, and an easy and green immobilization procedure was chosen for NPs synthesis and lipase anchoring. The size and structure of magnetic nanoparticles were characterized by transmission electron microscopy (TEM) and X-ray diffraction (XRD). The samples at different degree of functionalization were analysed through thermogravimetric measurements. Lipase immobilization was further confirmed by enzymatic assay and Fourier transform infrared (FT-IR) spectra. Immobilized lipase showed a very high activity recovery up to 144% at pH = 7 and 323% at pH = 7.5 (activity of the immobilized enzyme compared to that of its free form). The enzyme, anchored to the Fe3O4 nanoparticles, to be easy recovered and reused, resulted more stable than the native counterpart and useful to produce banana flavour. The immobilized lipase results less sensitive to the temperature and pH, with the optimum temperature higher of 5 °C and optimum pH up shifted to 7.5 (free lipase optimum pH = 7.0). After 120 days, free and immobilized lipases retained 64% and 51% of their initial activity, respectively. Ester yield at 40 °C for immobilized lipase reached 88% and 100% selectivity

    Electrochemical Applications of Magnetic Core-Shell Graphene-Coated FeCo Nanoparticles

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    Core−shell few-layer graphene-coated magnetic nanoparticles (GCMNPs) were synthesized by catalytic chemical vapor deposition of methane at atmospheric pressure. The GCMNPs, of cobalt and iron dispersed on an alumina support, catalyze themselves the decomposition of methane, which is the source of carbon. The pretreatment conditions influence the final alumina pore size distribution and GCMNP diameter. The nanoparticles’ magnetic properties have been found to be strongly dependent on their size. A high-saturation magnetization value of 238 e.m.u./g was found for our monodispersed diameter body-centered-cubic FeCo nanoparticles. The nanoparticles exhibited a significant capacitive performance, including a specific capacitance value of 367.2 F/g, high energy density of 86 Wh/kg, and excellent cyclability in aqueous electrolyte

    A prospective study of acute drug-induced liver injury in patients suffering from non-alcoholic fatty liver disease.

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    Aim: Liver damage due to facultative hepatotoxins is scarcely foreseeable. We evaluated the prevalence of acute drug-induced liver injury (DILI) in a specific setting, assessing eventual interactions with pre-existing hepatic illnesses. Methods: The research was carried out in an Italian tertiary care hospital, by analyzing 248 patients with non-advanced liver disease, divided into two well-matched groups: 174 patients (median age 53, 94 females) with hepatitis C virus-related chronic hepatitis; and 74 (median age 55, 39 females) with non-alcoholic fatty liver disease (NAFLD). Results: Six patients (2.4% of the whole population) belonging to the NAFLD group (chi(2)-test, P = 0.004) suffered from acute hepatoxicity related to the following drugs, that is antihypertensive, acting on platelet aggregation, antimicrobial, non-steroidal anti-inflammatory and proton pump inhibitor. The NAFLD presence was an independent risk factor in determining drug-related acute hepatitis, with an odds ratio of 3.95 (95% confidence intervals: 11.48-1.35). Central obesity was relevant in every patient with acute toxicity. Alcohol consumption and drug association did not influence the acute drug-induced liver damage. Conclusion: NAFLD conveys a nearly fourfold increase of DILI risk in obese middle-aged patients. NAFLD, characterized by mitochondrial dysfunction, could predispose to drug-induced hepatotoxicity that probably shares the same pathophysiological mechanism

    Cigarette Smoke Condensate Causes a Decrease of the Gene Expression of Cu-Zn Superoxide Dismutase, Mn Superoxide Dismutase, Glutathione Peroxidase, Catalase, and Free Radical-Induced Cell Injury in SH-SY5Y Human Neuroblastoma Cells

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    Cigarette smoking condensate (CSC) contains oxidant compounds able to generate superoxide. The aim of the present study was to investigate the effect of the exposure to CSC on: (1) free radical production, (2) the gene expression of the antioxidant enzymes Cu-Zn superoxide dismutase (SOD1), Mn superoxide dismutase (SOD2), Glutathione Peroxidase (GPx), and catalase (CAT), and (3) cell survival in human neuroblastoma SH-SY5Y cells. The results showed that exposure (24 h) to different concentrations (10-150 mug/ml) of CSC caused a dose dependent cell injury that was coupled to the maximal increase of free radical production. These events were prevented by the addition to the incubation medium of the scavenger Vitamin E (50 muM). Furthermore, CSC exposure caused a reduction of the gene expression of the antioxidant enzymes SOD1, SOD2, GPx, and CAT that was counteracted by Vitamin E (50 muM). These results suggest that CSC exposure can induce a free radical overcharge that may be responsible for the inhibition of antioxidant enzymes expression and cell injury in SH-SY5Y human neuroblastoma cells. In fact the scavenger vitamin E can block both cell injury and inhibition of SOD1, SOD2, GPx, and CAT induced by CSC exposur
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