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在向机体中引入铜的情况下评估鸡的骨髓造血功能和红骨髓的元素状态。

Evaluation of bone marrow hemopoiesis and the elemental status of the red bone marrow of chickens under introduction of copper to the organism.

机构信息

Orenburg State University, 13, Pobedy prospect, Orenburg, 460018, Russia.

Moscow State University of Food Production, 11, Volokolamskoe shosse, Moscow, 125080, Russia.

出版信息

Environ Sci Pollut Res Int. 2020 May;27(14):17393-17400. doi: 10.1007/s11356-020-08161-0. Epub 2020 Mar 10.

Abstract

The role of chemical elements in an organism is versatile and multifunctional. However, you should pay attention to the reaction of the organism on the introduction of chemical elements with different biological roles, which is predetermined by the physiological role of organs and body systems. These include the red bone marrow, which primarily responds to endogenous and exogenous factors by its functional significance. Analyzing the myelogram of birds after the various ways of copper NP introduction into the body and the different dosages, we found that, by the end of the experiment, the total numbers of bone marrow cells in all groups were lower than the initial values: in the second group-12.54% lower (p < 0.05), in third-26.32% lower (p < 0.001), for the fourth-14.75% lower (p < 0.05), with exception for the first experimental group where this index was 45.51% higher (р < 0.001). We revealed the following changes in the peripheral blood: the hemoglobin content by the end of the experiment was significantly higher than the initial values: by 18.63% for the first group (p < 0.01); 28.61% higher in the third group (p < 0.001); and 15.76% higher for the fourth (p < 0.01), except the animals of the second group (3.23% lower). The concentration of erythrocytes in all groups was higher than that of the background: by 24.56% (p < 0.001), by 3.37%, by 26.18% (p < 0.001), and by 14.85% (p < 0.01), respectively; the leukocyte concentration in the first group was 39.63% higher (p < 0.001), it remained at the level of the initial values in the other groups. The erythrocyte sedimentation rate in all groups increased by 2.4, 4.0, 2.01, and 1.86 times (p < 0.001), respectively. We revealed that the introduction of copper into an organism in the form of nanopowder both with feed and intramuscularly significantly caused an increase of the content of such elements as arsenic, copper, and silicon and a decrease of calcium, potassium, magnesium, phosphorus, boron, cobalt, iodine, lithium, sodium, zinc, tin, and strontium in the marrowy aspirate. Moreover, compared with the first group (p < 0.01), increasing doses of nanopowders caused a significant rise in the arsenic and tin concentrations and a decline of iodine and strontium. We found that copper nanoparticles ambiguously affect the bone marrow hemopoiesis of poultry; increasing the dose and changing the type of introduction activating the bone marrow hematopoietic function, in particular, granulocyto-, megakaryocyto-, and erythropoiesis.

摘要

化学元素在生物体中的作用是多方面的。然而,你应该注意生物体对具有不同生物学作用的化学元素的引入的反应,这是由器官和身体系统的生理作用预先确定的。这包括红骨髓,它主要通过其功能意义对内外因素作出反应。分析鸟类在不同途径引入铜纳米颗粒和不同剂量后的骨髓涂片,我们发现,到实验结束时,所有组的骨髓细胞总数均低于初始值:第 2 组低 12.54%(p<0.05),第 3 组低 26.32%(p<0.001),第 4 组低 14.75%(p<0.05),第 1 实验组除外,该组的该指数高 45.51%(р<0.001)。我们揭示了外周血液中的以下变化:实验结束时血红蛋白含量明显高于初始值:第 1 组高 18.63%(p<0.01);第 3 组高 28.61%(p<0.001);第 4 组高 15.76%(p<0.01),第 2 组除外,低 3.23%。所有组的红细胞浓度均高于背景值:高 24.56%(p<0.001),高 3.37%,高 26.18%(p<0.001),高 14.85%(p<0.01);第 1 组白细胞浓度高 39.63%(p<0.001),其他组保持在初始值水平。所有组的红细胞沉降率均增加 2.4、4.0、2.01 和 1.86 倍(p<0.001)。我们发现,以饲料和肌肉内注射的形式将铜引入生物体形成纳米粉末会显著增加骨髓抽吸物中砷、铜和硅等元素的含量,并降低钙、钾、镁、磷、硼、钴、碘、锂、钠、锌、锡和锶的含量。此外,与第 1 组相比(p<0.01),较高剂量的纳米粉末会导致砷和锡浓度显著升高,碘和锶浓度降低。我们发现,铜纳米颗粒会对家禽的骨髓造血功能产生模糊影响;增加剂量和改变引入类型会激活骨髓造血功能,特别是粒细胞生成、巨核细胞生成和红细胞生成。

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