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51.
Semenov M. E. Fedorov A. P. Koryakina V. V. Ivanova I. K. 《Theoretical Foundations of Chemical Engineering》2020,54(5):1120-1125
Theoretical Foundations of Chemical Engineering - The results of investigations into the kinetics of formation and decomposition of natural gas hydrates obtained from shaped ice using the... 相似文献
52.
Irene B. Zabala-Díaz Vesela I. Chalova Steven C. Ricke 《Sensing and Instrumentation for Food Quality and Safety》2007,1(2):55-61
The importance of lysine determination in feed materials is crucial for the feed industry because this amino acid can be limiting
in many of the cereal materials used for animal feeds. The bacterial gene induction-based assay developed in this study aimed
to measure lysine bioavailability in feeds as an alternative analytical method for animal assays. The advantages of a gene
induction-based approach include rapid and quantitative estimation of many samples and results that relate a bacterial response
to a biological response observed in animals. A whole-cell biosensor strain was constructed using a fluorescent E. coli strain that has an inducible fluorescent phenotype sensitive to extracellular lysine contents. A genetic fusion that links
the promoter of cad operon with a green fluorescent protein encoding gene (gfp) was constructed, and a fluorescent assay was developed. A standard lysine curve (R2 = 0.95) was generated and used for lysine bioavailability quantification of four feed ingredients (whole egg protein, blood-,
soybean-, and meat and bone meal). Quantities as low as 50 μg/ml protein of digested samples were sufficient for analyses
using the biosensor, except for meat and bone meal. Because of the low levels of free lysine in non-digested samples, fluorescence
of these protein sources containing lower than 500 μg/ml protein was not detected (except for soybean meal). The results using
enzymatically digested protein sources showed that the test strain emitted a fluorescent response that was proportional to
the level of lysine present in the feed samples. 相似文献
53.
Yordanka Gluhcheva Irena Pashkunova-Martic Martin Schaier Ivelin Vladov Silviya Stoykova Emilia Petrova Ekaterina Pavlova Peter Dorkov Thomas H. Helbich Bernhard Keppler Juliana Ivanova 《International journal of molecular sciences》2022,23(8)
Lead (Pb) exposure induces severe nephrotoxic effects in humans and animals. Herein, we compare the effects of two chelating agents, salinomycin and deferiprone, on Pb-induced renal alterations in mice and in the homeostasis of essential elements. Adult male mice (Institute of Cancer Research (ICR)) were randomized into four groups: control (Ctrl)—untreated mice administered distilled water for 28 days; Pb-exposed group (Pb)—mice administered orally an average daily dose of 80 mg/kg body weight (BW) lead (II) nitrate (Pb(NO3)2) during the first two weeks of the experimental protocol followed by the administration of distilled water for another two weeks; salinomycin-treated (Pb + Sal) group—Pb-exposed mice, administered an average daily dose of 16 mg/kg BW salinomycin for two weeks; deferiprone-treated (Pb + Def) group—Pb-exposed mice, administered an average daily dose of 20 mg/kg BW deferiprone for 14 days. The exposure of mice to Pb induced significant accumulation of the toxic metal in the kidneys and elicited inflammation with leukocyte infiltrations near the glomerulus. Biochemical analysis of the sera revealed that Pb significantly altered the renal function markers. Pb-induced renal toxicity was accompanied by a significant decrease in the endogenous renal concentrations of phosphorous (P), calcium (Ca), copper (Cu) and selenium (Se). In contrast to deferiprone, salinomycin significantly improved renal morphology in Pb-treated mice and decreased the Pb content by 13.62% compared to the Pb-exposed group. There was also a mild decrease in the renal endogenous concentration of magnesium (Mg) and elevation of the renal concentration of iron (Fe) in the salinomycin-treated group compared to controls. Overall, the results demonstrated that salinomycin is a more effective chelating agent for the treatment of Pb-induced alterations in renal morphology compared to deferiprone. 相似文献
54.
Violeta Ivanova Marina Stefova Borimir Vojnoski Ágnes Dörnyei László Márk Violeta Dimovska Traj?e Stafilov Ferenc Kilár 《Food research international (Ottawa, Ont.)》2011,44(9):2851-2860
The composition of polyphenols in the skin, seed and pulp extracts of the grapes of Vranec and Smederevka varieties, and Merlot and Chardonnay as well, was analyzed by liquid chromatography-diode array detection-mass spectrometry (HPLC-DAD-MS) and MS/MS techniques. Thirty-one phenolic compounds, including anthocyanins, flavonols and flavan-3-ols, as well as phenolic acids derivatives, have been identified in the extracts prepared from the grapes at physiological maturity, by mass spectrometry applying electrospray ionization operated in alternating ion mode and by performing tandem MS experiments in the ion trap mass analyzer. Grapes were analyzed at three different phases: (i) veraison, (ii) physiological ripeness and (iii) late harvest, in order to follow the evolution of polyphenolic content during berry development, applying spectrophotometric methods. Vranec had a higher polyphenolic content compared to Merlot due to the higher levels of total phenolics and flavonoids in the skins and seeds as well as a higher content of flavan-3-ols and anthocyanins in the skins, allowing discriminating the varieties. HPLC-DAD-MS analysis presented significantly higher relative amounts of anthocyanin monoglucosides and p-coumaroylglucosides in Vranec grapes. Smederevka seeds had a higher amount of flavan-3-ols than Chardonnay, while a higher content of total phenolics and flavonoids was found in the skins of the Chardonnay variety. Anthocyanin content in both red varieties increased during the berry ripening, while flavan-3-ols in seeds were mainly accumulated in the veraison phase followed by decrease of the content with ripening. 相似文献
55.
56.
Nikolina Plei Mirjana Babi Leko Ivana Gunja
a Thibaud Boutin Vesela Torlak Antonela Matana Ante Punda Ozren Polaek Caroline Hayward Tatijana Zemunik 《International journal of molecular sciences》2022,23(4)
Thyroglobulin (Tg) is an iodoglycoprotein produced by thyroid follicular cells which acts as an essential substrate for thyroid hormone synthesis. To date, only one genome-wide association study (GWAS) of plasma Tg levels has been performed by our research group. Utilizing recent advancements in computation and modeling, we apply a Bayesian approach to the probabilistic inference of the genetic architecture of Tg. We fitted a Bayesian sparse linear mixed model (BSLMM) and a frequentist linear mixed model (LMM) of 7,289,083 variants in 1096 healthy European-ancestry participants of the Croatian Biobank. Meta-analysis with two independent cohorts (total n = 2109) identified 83 genome-wide significant single nucleotide polymorphisms (SNPs) within the ST6GAL1 gene (). BSLMM revealed additional association signals on chromosomes 1, 8, 10, and 14. For ST6GAL1 and the newly uncovered genes, we provide physiological and pathophysiological explanations of how their expression could be associated with variations in plasma Tg levels. We found that the SNP-heritability of Tg is 17% and that 52% of this variation is due to a small number of 16 variants that have a major effect on Tg levels. Our results suggest that the genetic architecture of plasma Tg is not polygenic, but influenced by a few genes with major effects. 相似文献
57.
D. A. Ivanov T. Yu. Ivanova O. S. Grunskii Yu. S. Tver’yanovich 《Glass Physics and Chemistry》2010,36(1):10-16
The effect of irregularities of a periodic domain structure on the efficiency of the second harmonic generation has been numerically
investigated in the case where the structure is formed by the high-voltage method. The irregularities associated with the
uncontrollable motion of domain walls from under electrodes, as well as with the presence of internal defects in the crystal,
have been analyzed. 相似文献
58.
59.
60.
Propylene epoxidation with hydrogen peroxide on titanosilicates with different Si/Ti ratios and various states of titanium in the catalysts, prepared by hydrothermal crystallization according to two different procedures, has been investigated. It has been demonstrated that a change in the pH of the crystallizing gel leads to a change in the sequence of titanium insertion in the zeolite structure at a hydrothermal synthesis temperature of 170°C. It was shown that titanium incorporated in the zeolite framework in the tetrahedral positions is an active site in the epoxidation reaction, whereas titanium in the form of titanium dioxide leads to unproductive degradation of hydrogen peroxide. 相似文献