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A study on heavy metal sorption properties of intestinal microbiota in vitro

机译:肠道菌群对重金属的体外吸附特性研究

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Water and soil pollution by heavy metals has led to their accumulation in the ground and waters, to a sharp decline of ecosystem biopotential, and to foodstuff contamination, resulting in internal pollutions in bodies of humans and animals with food, air, water. In this regard, the purpose of our study was to examine the impact of heavy metals on the growth of representatives of rats’ intestinal microbiota and to estimate sorption characteristics of these microorganisms. The research was conducted in three stages: i) a study of essential and xenobiotic elements’ biotoxicity; ii) their impact on the growth of the microbiota in periodic cultivation; and iii) studying bioaccumulative characteristics. In the research, we discovered that all investigated organisms had pronounced resistance to lead and iron, which was confirmed by the results of the evaluating the impact on the growth and the accumulating characteristics of the studied microorganisms (more than 50%). The strain of E. faecium has the most pronounced sorption characteristics – its level of accumulation amounted for iron –63.3%, lead – 61%, zinc – 38.4%, copper – 11.4%, and cadmium – 33.2%, minimum values were obtained in samples of L. acidophilus , which sorbed these elements in concentrations of 46.2%, 42.3%, 10.3%, 3.8%, and 5.3%, respectively.
机译:重金属对水和土壤的污染已导致其在地下和水体中的积累,生态系统生物势的急剧下降以及食品的污染,从而导致人类和动物体内的食物,空气和水受到内部污染。在这方面,我们的研究目的是检验重金属对大鼠肠道菌群代表生长的影响,并评估这些微生物的吸附特性。这项研究分三个阶段进行:i)对基本和异源元素的生物毒性的研究; ii)它们对定期培养中微生物群生长的影响; iii)研究生物蓄积特性。在研究中,我们发现所有被调查的生物对铅和铁均具有明显的抗性,这通过评估对被研究微生物的生长和累积特性的影响的结果得到证实(超过50%)。粪肠球菌的菌株具有最明显的吸附特性–其累积水平为铁– 63.3%,铅– 61%,锌– 38.4%,铜– 11.4%和镉– 33.2%,在嗜酸乳杆菌的样品,其分别以46.2%,42.3%,10.3%,3.8%和5.3%的浓度吸附这些元素。

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