The procedure of the T-2 and HT-2 toxins determination in wheat grain was developed by high performance liquid chromatography according to the following criteria: specificity, linearity, limits of detection (LOD), limits of quantification (LOQ), trueness (recovery), precision, stability. It was found that the correlation coefficient (R2) for T-2 and HT-2 toxin was 0.9999. Mean recoveries from (R, %) for T-2 and HT-2 toxin at the level of 50–150 μg·Kg-1 from wheat (sample blank) were 91 and 87 %, respectively. The relative standard deviation (RSD, %) of the measurement results under conditions of repeatability and intra-laboratory precision ranged from 0.23 to 3.93 %. The limits of quantification of the method for T-2 and HT-2 toxin was 2.2 and 1.2 μg·Kg-1, respectively. These data are within the range of acceptable minimum levels in accordance with Commission Regulation (EC) No 401/2006. It is confirmed that the standards of T-2, HT2 toxins in solutions can be stored up to 7 days in a freezing chamber, a refrigerator and at room temperature in a tightly closed container without actual loss of concentration. It was found that T-2 and HT-2 in a solution cannot be stored in a lit place, because according to the data obtained, sunlight leads to the destruction of these mycotoxins by 52 % and 59 %, respectively.
There was studied an influence of artificial hypobiosis in the conditions of hypoxia-hypercarnia in rats on the quantity of neutral lipids, phospholipids and its fatty acids in membranes structures of cardiomyocytes (microsomes and internal membranes of mitochondria). The received results – the content of lipids, individual phospholipids, cholesterol testify to the modification of lipid component of cardiomyocytes mitochondria internal membrane (less the microsomal fraction) that characterizes modulation of cellular membranes structural-functional state. There was noticed the possibility of attraction of membrane phospholipids (sphingomyelin, phosphatidylserine and phosphatidylinositol) to the signal ways activation at hypobiosis. There was revealed redistribution of fatty acids of mitochondria internal membrane at hypobiosis that leads to increase of the level of unsaturated fatty acids. There was noticed the possibility of participation of monoenic unsaturated fatty acids in protection of cellular structures from oxidizing stress and increase of the content of arachidonic and docosahexaenoic acids – precursors of biologically active substances – can be connected with its attraction to regulatory systems at hypobiosis. There is presupposed that the state of artificial hypobiosis is characterized with stress-reaction that leads to optimal reconstruction of lipid and fatty acid content of membrane lipids directed on support of cardiomyocytes functional activity.
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