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Use of nanoscale metals in poultry diet as a mineral feed additive

机译:在家禽饮食中使用纳米级金属作为矿物饲料添加剂

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The research was aimed at studying the efficiency of a nanoscale alloy of copper (Cu) and zinc (Zn) to be used as a mineral additive for feeding broiler chickens, compared to inorganic and organic forms of these elements. Biochemical studies of the blood serum were performed using an automated analyzer. The mineral composition was determined by atomic emission and mass spectrometry (MS-ISP). The study was performed on broiler chickens of cross Smena 7 ( n?= 72) in the conditions of a vivarium. There were 3 treatment groups with 24 chickens in each. Replacing the inorganic form of mineral supplements with the nanosized alloy resulted in a positive productive effect, with a tendency to increasing the content of serum protein. The nanoscale form of metals improved ( P ≤ 0.05) the activity of aminotransferases. At the same time, the liver microstructure of experimental groups is similar to that of the control. There was a moderate plethora and poor polymorphoncellular infiltration around the interlobular triads with a clear morphological organization of the stromal and parenchymal components of the liver. However, the lack of oxidative stress was confirmed by the dynamics of catalase (CT), total superoxide dismutase (T-SOD) and malondialdehyde (MDA) levels, and the concentrations of which did not exceed the reference level. Replacing Cu and Zn sulfates with the nanoscale alloy (group 1) and organic form (group 2) of these elements in the diet of broiler chickens was accompanied by the increasing pool of these elements in the organisms at the end of the experiment. Copper was accumulated throughout the experiment in experimental group 1, compared to the reference, with the maximum difference in the liver of 36.5% ( P ≤?0.05), in the feathers 2.5 times ( P ≤?0.01). Assessment of the Zn level dynamics in the feathers revealed a well noticeable tendency to reducing its concentrations during the experiment in all groups. Against the background of feeding a nanoscale alloy, Zn concentration in the liver exceeded the reference by 66.8% ( P ≤?0.01) only at the end of the experiment. Thus, nanoscale forms of Cu and Zn have a cumulative effect, and may become an alternative to inorganic and organic forms of these elements in poultry nutrition.
机译:该研究旨在研究铜(Cu)和锌(Zn)的纳米级合金用作矿物添加剂的效率,与这些元素的无机和有机形式相比,用于饲喂肉鸡鸡。使用自动分析仪进行血液血清的生物化学研究。通过原子发射和质谱法(MS-ISP)测定矿物组合物。在Vivarium的条件下对十字夫人7(n = 72)的肉鸡鸡进行该研究。每组3种治疗组,每组24只鸡。用纳米化合金替换无机矿物质补充剂的形式导致阳性生产效果,趋于增加血清蛋白质的含量。纳米级金属形式改善(P≤0.05)氨基转移酶的活性。同时,实验组的肝脏微观结构与对照的肝脏微观结构类似。围绕角间三合会有一种适度的血红蛋和多晶粒渗透,具有透明的形态组织的肝脏的基质和实质组分。然而,通过过氧化氢酶(CT),总超氧化物歧化酶(T-SOD)和丙二醛(MDA)水平的动态证实了缺乏氧化应激,其浓度不超过参考水平。在肉鸡鸡饮食中用纳米级合金(第1组)和有机形式(第2组)替换Cu和Zn硫酸盐和这些元素的有机形式(第2组)伴随着实验结束时生物体中这些元素的增加。与参考相比,在实验组1中累积铜在整个实验中,肝脏的最大差异为36.5%(P≤≤0.05),在羽毛中2.5次(P≤≤0.01)。评估羽毛中的Zn水平动态显示出在所有群体中的实验期间降低其浓度的良好趋势。在饲喂纳米级合金的背景下,肝脏中的Zn浓度仅在实验结束时超过66.8%(p≤≤0.01)。因此,纳米级形式的Cu和Zn具有累积效应,并且可以成为家禽营养中这些元素的无机和有机形式的替代方案。

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