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Effect of probiotics on the basis of Bacillus subtilis and Bifidobacterium longum on the biochemical parameters of the animal organism

机译:益生菌在<重点型=“斜体”>枯草芽孢杆菌的基础上的影响和<重点型=“斜体”>双歧杆菌Longum 对动物生物的生化参数

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摘要

Abstract For the purpose of safe modulation of the intestinal microflora, probiotics have been increasingly used in recent years. In the present work, the effect of the probiotic sporobacterin ( Bacillus subtilis 534) (I group) and soybean-bifidum ( Bifidobacterium longum ) (II group) on male rats of the Wistar line was evaluated. In assessing nonspecific immunity in vitro, there was an increase in the level of baseline level in the first and second groups (by 8.3 and 12.2% more control). The influence of probiotic preparations on the intestinal normoflora was assessed using PCR. Bifidumbacterin increased the normal microflora, in particular, Escherichia coli 1.55 times, Lactobacillus 1.26 times, Enterococcus 1.3 times as much control; the level of conditionally pathogenic microflora, in particular, Proteus spp. decreased by 1.3 times in comparison with the control. Sporobacterin also contributed to an increase in the amount of E. coli (1.55 times) and Lactobacillus (0.9 times). When a culture of Bifidobacterium longum was introduced, a selective reduction in the loss of chemical elements was observed against the background of the diet used. At the end of the experiment, the content of calcium in the body tissues of animals of group II exceeded this indicator in group I by 3.9%, phosphorus by 17.6%, copper by 28.5%, and zinc by 15.2%. The totality of the results obtained by us indicates that inclusion of Bifidumbacterium longum in the diet of animals makes the use of this preparation in the correction of mineral imbalance and improves the microflora of the intestines of animals by reducing the number of representatives of opportunistic microflora against the background of an increase in the number of basic representatives of normal microbiocenosis. Also, the use of probiotic drugs as additives leads to a slight increase in the level of nonspecific immunity, which increases the natural resistance of the organism.
机译:摘要为了安全调制肠道微氟氯,近年来越来越多地使用益生菌。在本作工作中,评估了益生菌磷酸酯素(枯草芽孢杆菌534)(I组)和大豆 - 双歧杆菌)(II组)对Wistar线的雄性大鼠的影响。在评估体外非特异性免疫方面,第一和第二组的基线水平的增加(对照量增加了8.3和12.2%)。使用PCR评估益生菌制剂对肠道醛酰氯的影响。 Bifidumbacterin增加正常的微氯,特别是大肠杆菌1.55次,乳杆菌1.26次,肠球菌的1.3倍。有条件致病微生物的水平,特别是Proteus SPP。与对照相比,减少了1.3倍。 Sporobacterin也有助于增加大肠杆菌(1.55次)和乳杆菌(0.9次)的量增加。介绍了双歧杆菌Longum的培养物时,在使用的饮食背景下观察到化学元素丧失的选择性降低。在实验结束时,II族动物体组织中钙的含量超过了I基团I型指示剂3.9%,磷量为17.6%,铜28.5%,锌含量为15.2%。由我们获得的结果表明,在动物的饮食中包含双歧杆菌Longum在矿物不平衡校正中使用这种制剂,通过减少机会缩略量的代表的数量来改善动物的肠道微生物群体正常微生物凸症的基本代表数量增加的背景。此外,使用益生菌作为添加剂的使用导致非特异性免疫水平略微增加,这增加了生物体的抗性。

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