Influence of nanocrystalline cerium dioxide on antigens of non-specific protection of quails

V. Zotsenko, O. Demchenko, D. Ostrovskiy, A. Andriychuk, V. Grishko
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引用次数: 0

Abstract

Intensive poultry farming technologies are closely linked to a variety of environmental, technological, feed and biological stressors, which tend to negatively affect their productivity and immune defenses. In the pathogenesis of such detrimental effects, the leading role belongs to the overproduction of oxygen free radicals - oxidative stress. The latter activates a number of transcription factors, including Nrf-2 and Nf-kB, which modulate the antioxidant defense network and participate in the organization of infection control. NDC is able to reduce the activation of Nf-kB and thus maintain antioxidant balance, but the response of the immune system to this factor is insufficiently studied. The aim of our work is to investigate the effect of NDC on the antigen of non-specific immunity of quails by adding it to drinking water. The object of study were the quail of the Pharaoh breed, experimental and control groups formed at the age of one day on the principle of analogues. The birds were kept in cages with free access to food and water. Quails of the experimental group in drinking water was added to the feed additive Nanocerium at a dose of 8.6 mg per liter of drinking water. This additive is an aqueous dispersion of NDC with an average nanoparticle size of 2-7 nm. The average weight of quails at the end of the experiment (56 days) in the experimental group was 20.2 g greater than in the control. Morphometric studies of the thymus, bursa and spleen showed no effect of NDC on the central and peripheral immune systems. Morphological parameters of the blood were within the physiological norm, but in the experimental group the number of erythrocytes and hemoglobin content were higher. The leukocyte count showed an increase in the leukocyte count (according to Garkavi LH) in the experimental group. Humoral performance was identical in both groups. Studies of cellular defense indicate no effect on the phagocytic function of peripheralblood cells. Functional and metabolic activity under the influence of NDC in the spontaneous test probably did not differ and increased in the stimulated. Therefore, quails that received nanocerium feed additive with water had a higher immunoresistance. Key words: birds, nanocerium, morphometry, thymus, natural immunity, morphological parameters of blood, hematopoiesis, humoral immunity, cellular immunity, hematological parameters. Accepted abbreviations: NDC – nanocrystalline cerium dioxide, ROS – reactive oxygen species, Nf-kB – nuclear factor - kV, Nrf-2 – nuclear factor - erythroid 2 and related factor 2.
纳米氧化铈对鹌鹑非特异性保护抗原的影响
集约化家禽养殖技术与各种环境、技术、饲料和生物压力源密切相关,这些压力往往会对其生产力和免疫防御产生负面影响。在这种有害影响的发病机制中,主导作用属于氧自由基的过度产生——氧化应激。后者激活许多转录因子,包括Nrf-2和Nf-kB,它们调节抗氧化防御网络并参与感染控制的组织。NDC能够减少Nf-kB的激活,从而保持抗氧化平衡,但免疫系统对该因子的反应研究不足。我们的工作目的是通过将NDC添加到饮用水中来研究NDC对鹌鹑非特异性免疫抗原的影响。研究对象是法老品种的鹌鹑,实验组和对照组在一天大时根据类似物的原理形成。这些鸟被关在笼子里,可以免费获得食物和水。将饮用水中的实验组鹌鹑以每升饮用水8.6mg的剂量添加到饲料添加剂纳米铈中。该添加剂是NDC的水性分散体,具有2-7nm的平均纳米粒子尺寸。实验组鹌鹑在实验结束时(56天)的平均体重比对照组大20.2克。胸腺、法氏囊和脾脏的形态计量学研究表明,NDC对中枢和外周免疫系统没有影响。血液的形态学参数在生理正常范围内,但实验组的红细胞数量和血红蛋白含量较高。白细胞计数显示实验组的白细胞计数增加(根据Garkavi LH)。两组的幽默表现完全相同。细胞防御的研究表明对外周血细胞的吞噬功能没有影响。在自发测试中,NDC影响下的功能和代谢活性可能没有差异,并在刺激中增加。因此,添加纳米铈饲料添加剂的鹌鹑具有较高的免疫抵抗力。关键词:鸟类、纳米铈、形态计量学、胸腺、自然免疫、血液形态参数、造血、体液免疫、细胞免疫、血液学参数。接受的缩写:NDC–纳米晶二氧化铈,ROS–活性氧,Nf-kB–核因子-kV,Nrf-2–核因子-红系2和相关因子2。
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