717,312 research outputs found

    Composition of volatile compounds in bovine milk heat treated by instant infusion pasteurization and correlation to sensory analysis

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    Volatile compounds in skim milk and nonstandardised milk subjected to instant infusion pasteurisation at 80°C, 100°C and 120°C were compared with raw milk, high temperature short time pasteurised milk and milk pasteurised at 85°C/30 s. The composition of volatile compounds differed between infusion pasteurisation treated samples and the reference pasteurisations. The sensory properties of skim milk subjected to instant infusion pasteurisation were described by negative attributes, such as cardboard sour and plastic flavours, which are not associated normally with fresh milk. Partial least squares modelling showed good correlation between the volatile compounds and the sensory properties, indicating the predictive and possible causal importance of the volatile compounds for the sensory characteristics

    The suppression of superconductivity in Mn substituted MgCNi3_{3}

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    We report the effect of doping Mn in the isostructural MgCNi3−x_{3-x}Mnx_{x} (x = 0-0.05) compounds. Magnetic susceptibility, resistivity, magneto-resistance, and specific heat studies show evidence of localized moments and Kondo effect in samples with x≠\neq0. The rapid suppression of superconductivity (∼\sim -21K/at.% Mn) in these compounds is a consequence of pair breaking effects due to moment formation on Mn.Comment: 9 figures, Accepted for publication in Physical Review B, Added reference

    Experimental Pharmacological Research Regarding the Potential Antidepressant Activity Induced by Some Newly Synthesised Dibenzo[a,d]cycloheptene Compounds

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    Background. Depression is a relatively frequent encountered mental disorder in the general population, affecting both the quality of the individual life and its ability to perform the social tasks; it is generally accepted that new studies related to this pathologic condition are further necessary, in order to identify more adequate, efficient and accessible therapeutic compounds. Materials and Methods. This study was performed on a sample of 60 white male mice, NMRI strain, who were divided into 6 groups of 10 animals and treated with 4 new derivatives of dibenzo [a, d] cycloheptene, amitriptyline as a reference substance, or with distilled water for the control group. The animals were tested in respect to the forced swim test, both before and at 2 hours after administration of the mentioned substances. It was determined thus the time of immobilization. Results. The study showed the fact that only two of the four investigated compounds presented a relatively similar antidepressant effect with the reference substance. Conclusions. Minor structural changes, such as modifications of some substitutes from the basic chemical core of the reference substance can decisively influence the conservation or loss of the antidepressant properties

    Synthesis of novel azo compounds containing 5(4H)-oxazolone ring as potent tyrosinase inhibitors

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    Six new azo dyes containing of 5(4H)-oxazolone ring were prepared by diazotization of 4-aminohippuric acid and coupling with N,N-dimethylaniline, 1-naphthol and 2-naphthol and condensation with 4-fluoro benzaldehyde or 4-trifluoromethoxy benzaldehyde. The new compounds were fully characterized by spectroscopic techniques. All synthesized compounds exhibited high tyrosinase inhibitory behavior. The results of mushroom tyrosinase inhibition assays indicate that the 4-trifluoromethoxy derivatives have high degrees of inhibition and N,N-dimethylaniline derivatives are better for tyrosinase inhibition than 1-naphthol and 2-naphthol derivatives. All synthesized azo compounds (4a-4f) showed the most potent mushroom tyrosinase inhibition, comparable to that of Kojic acid and l-mimosine, as reference standard inhibitors. © 2013 Elsevier Ltd. All rights reserved

    Ferromagnetism in semiconductors and oxides: prospects from a ten years' perspective

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    Over the last decade the search for compounds combining the resources of semiconductors and ferromagnets has evolved into an important field of materials science. This endeavour has been fuelled by continual demonstrations of remarkable low-temperature functionalities found for ferromagnetic structures of (Ga,Mn)As, p-(Cd,Mn)Te, and related compounds as well as by ample observations of ferromagnetic signatures at high temperatures in a number of non-metallic systems. In this paper, recent experimental and theoretical developments are reviewed emphasising that, from the one hand, they disentangle many controversies and puzzles accumulated over the last decade and, on the other, offer new research prospects.Comment: review, 13 pages, 8 figures, 109 reference
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