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Mathematical simulation of the biokinetics 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模拟的数学模拟

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摘要

AbstractA mathematical simulation of the absorption, distribution, metabolism, and excretion from the body of radioisotope-labeled nanoparticles (NPs) of elemental selenium (Se) in comparison with the traditional form of the trace elements (sodium selenite) has been performed, with them being administered in the gastrointestinal tract of rats that are normally supplied with Se or experience its nutritional deficiency. A compartmental mathematical model that describes the biokinetics of the mentioned Se forms at different levels of its supply is constructed. The quantitative parameters of the model are set using the experimental data from a biokinetic study on rats who, via their gastrointestinal tract, received [75Se]-labeled sodium selenite or Se NPs which were obtained by laser ablation and had an average diameter of 97 ± 5 nm. The proposed model, despite the number of necessary simplifications, satisfactorily explains the difference between the experimental data for both Se-supplied and Se-deficient groups of animals. Thus, in the case of Se deficiency, its assimilation by organs occurs more actively than when it is supplied normally. Se in the form of NPs is preferable to its salt form due to the slower formation of HSe-anion and excretable Se forms, which are potentially highly toxic. This conclusion is consistent with the hypothesis that Se NPs may be the basis for the development of a new generation of dietary sources of selenium.]]>
机译:<![CDATA [<标题>抽象 ara>与来自元素硒(SE)的放射性同位素标记的纳米颗粒(NPS)体的吸收,分布,新陈代谢和排泄的数学模拟相比已经进行了传统形式的微量元素(硒沸石),并进行了在通常供应的大鼠的胃肠道中给药或经历其营养缺乏的大鼠胃肠道。构建了描述在其供应水平的提到的SE形式的生物机的隔间数学模型。使用来自其胃肠道的大鼠的生物学研究的实验数据设定了模型的定量参数,该胃肠道接受[<上标> 75 SE] - 标记的硒沸石或通过激光烧蚀获得的NPS并且平均直径为97±5nm。拟议的模型尽管有必要的简化次数,但令人满意地解释了SE供应和SE缺乏动物组的实验数据之间的差异。因此,在SE缺乏的情况下,其通过器官的同化会比正常供应时更加主动地发生。由于HSE <上标> - 阴离子和排出的SE形式的较慢形成,其盐形式优选为其盐形式,这是潜在的高毒性。这一结论与SE NPS可能是开发新一代硒烃来源的基础一致。]>

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