168 research outputs found

    In vitro evaluation of sodium butyrate on the growth of three Salmonella serovars derived from pigs at a mild acidic pH value

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    Foodborne zoonotic diseases can be transferred into the food chain at the stage of livestock farming. As an emerging public health challenge, practicable reduction measures in porcine health management for Salmonella are constantly being investigated. This in vitro study aimed to determine the influence of six different sodium butyrate (SB) concentrations (0, 5, 10, 20, 40, and 80 mM) on the growth of three different Salmonella enterica serovars at a constant pH value of 6.0, corresponding to conditions in the pig's hindgut. S. Derby and S. Typhimurium, isolated from a pig farm, and S. Typhimurium DSM 19587, which served as control, were used. Broth microdilution assay was applied to record Salmonella growth in the presence of different SB-concentrations over six different incubation periods (0, 1, 2, 4, 6, and 24 h). Results were quantified in the log colony-forming units (log10 CFU/mL). For 1 h incubation, the addition of SB showed no significant differences in the range of initial Salmonella dose of about 5.7 log10 between concentrations (0–80 mM, 5.26 ± 0.10–5.60 ± 0.07 log10, p > 0.05). After 6 h, for SB addition, the range of Salmonella counts was significantly lower compared to no addition of SB (5–80 mM, p < 0.05), 6.78 ± 0.84–7.90 ± 0.10 log10 for 5 mM, and 7.53 ± 0.04–8.71 ± 0.22 log10 for 0 mM. Moreover, for SB concentrations of 40 and 80 mM, no difference in the range of Salmonella counts over 6 h was obtained (5.23 ± 0.11–5.38 ± 0.05 log10, p > 0.05), and minor Salmonella growth was recorded at the earliest after 24 h incubation. Growth rates for varying SB concentrations and incubation times were confirmed in a similar manner for the three serovars. Obtained results suggest that increasing SB concentrations suppress Salmonella growth for concentrations of 5–20 mM over a 6 h incubation period and for 40 and 80 mM over a 24 h incubation period. When transferring these in vitro findings to the porcine organism, it may be assumed that Salmonella reduction can be achieved by increased butyrate content in the chyme of the large intestine

    Therapeutic strategies to slow chronic kidney disease progression

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    Childhood chronic kidney disease commonly progresses toward end-stage renal failure, largely independent of the underlying disorder, once a critical impairment of renal function has occurred. Hypertension and proteinuria are the most important independent risk factors for renal disease progression. Therefore, current therapeutic strategies to prevent progression aim at controlling blood pressure and reducing urinary protein excretion. Renin-angiotensin-system (RAS) antagonists preserve kidney function not only by lowering blood pressure but also by their antiproteinuric, antifibrotic, and anti-inflammatory properties. Intensified blood pressure control, probably aiming for a target blood pressure below the 75th percentile, may exert additional renoprotective effects. Other factors contributing in a multifactorial manner to renal disease progression include dyslipidemia, anemia, and disorders of mineral metabolism. Measures to preserve renal function should therefore also comprise the maintenance of hemoglobin, serum lipid, and calcium-phosphorus ion product levels in the normal range

    Degradation of haloaromatic compounds

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    An ever increasing number of halogenated organic compounds has been produced by industry in the last few decades. These compounds are employed as biocides, for synthetic polymers, as solvents, and as synthetic intermediates. Production figures are often incomplete, and total production has frequently to be extrapolated from estimates for individual countries. Compounds of this type as a rule are highly persistent against biodegradation and belong, as "recalcitrant" chemicals, to the class of so-called xenobiotics. This term is used to characterise chemical substances which have no or limited structural analogy to natural compounds for which degradation pathways have evolved over billions of years. Xenobiotics frequently have some common features. e.g. high octanol/water partitioning coefficients and low water solubility which makes for a high accumulation ratio in the biosphere (bioaccumulation potential). Recalcitrant compounds therefore are found accumulated in mammals, especially in fat tissue, animal milk supplies and also in human milk. Highly sophisticated analytical techniques have been developed for the detection of organochlorines at the trace and ultratrace level

    Wirkung von 1-Nitroso-3-nitro-1-methyl-guanidin auf Purinnucleoside und Purinnucleotide

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    Zersetzung von Chorismins�ure durch Minerals�ure

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    Intrinsische Vaskularisation von MSC beladenen Alginat-Gelatine-Kapseln im AV-Loop Modell der Ratte

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    Bei insgesamt 18 syngenen männlichen Lewis Ratten wurde zwischen der linken A. femoralis und der linken V. femoralis ein Veneninterponat der kontralateralen Seite mikrochirurgisch eingesetzt und so ein AV-Loop 8 geschaffen. Dieser wurde in eine Teflon-Isolationskammer gebettet, die Kammer wurde mit der ADA-GEL-Matrix gefüllt, verschlossen und an der Adduktorenmuskelfaszie befestigt. In Gruppe A bestand die Matrix aus reinen ADA-GEL Mikrokapseln und in Gruppe B aus ADA-GEL Mikrokapseln, in denen 2 x 106 DiI-markierte MSCs/mL verkapselt wurden. Nach vier Wochen wurden die Tiere mit Microfil® perfundiert und die Konstrukte anschließend en-bloc explantiert. Daraufhin wurden die Präparate für die Mikrocomputer Tomographie (μCT), die Histomorphometrie und die Immunhistologie aufgearbeitet und hinsichtlich der Angiogenese, Biodegradation, Immunantwort und Gewebeneubildung analysiert
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