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Biokinetic Study of Selenium Nanoparticles and Salt Forms in Living Organisms

机译:生物体中硒纳米粒子和盐形式的生物学研究

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摘要

An experimental study of absorption, distribution, metabolism, and excretion from the body of radioisotope-labeled nanoparticles (NPs) of elemental Se in comparison with the traditional form of this trace element (sodium selenite) has been performed, being administered in the gastrointestinal tract of rats that were normally supplied with Se or experiencing its nutritional deficiency. Nuclear activation analysis is used for the detection of Se in the biological tissue, which is based on the measurement of a gamma-emitting label [~(75)Se~(34)] that is introduced in the Se NPs or its salt by thermal neutron irradiation in a nuclear reactor. It is shown that Se NPs administered into the gastrointestinal tract have bioavailability comparable to the salt form of this element. According to some experimental data, the metabolic assimilation of both forms of Se is greater in animals that suffer from a deficiency in this element when compared to those that are normally supplied with it. There are some differences in the kinetics of accumulation of Se NPs and its salts in the blood and liver, which can be explained by the presence of limiting steps in the absorption and biotransformation of Se-containing NPs. The retention of Se that is administered in the form of NPs or salts to Se-deficient animals differs significantly. These results demonstrate the capacity of the Se NPs to be a source of Se in a new generation of biologically active food supplements.
机译:已经进行了与该痕量元素(硒沸石)的传统形式的元素Se的放射性同位素标记的纳米颗粒(NPS)体内吸收,分布,代谢和排泄的实验研究,并在胃肠道中施用通常随着SE提供或经历其营养缺乏的大鼠。核激活分析用于检测生物组织中的SE,其基于γ发射标记的测量[〜(75)SE〜(34)],其通过热量引入SE NPS或其盐核反应堆中的中子辐照。结果表明,施用于胃肠道的SE NP具有与该元素的盐形式相当的生物利用度。根据一些实验数据,与通常随之供应的那些而言,两种形式SE的代谢同化在该元素中患有缺陷的动物更大。 SE NPS的积累动力学及其血液和肝脏盐的动力学存在一些差异,这可以通过限制含SE的NPS的吸收和生物转化的步骤来解释。以NPS或Salts形式给予Se的Se的保留显着不同。这些结果证明了SE NPS在新一代生物活性食品补充剂中成为SE的来源。

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