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Extremely low level of Ag nanoparticle excretion from mice brain in in vivo experiments

机译:体内实验中小鼠脑的Ag纳米粒子排泄的极低水平

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Silver nanoparticle accumulation in mice organs as well as the excretion processes from them were studied. The investigation included a one-time oral administration of silver nanoparticles and a series of prolonged oral administrations of the same nanoparticles to study the long-term impact of the nanoparticles. In these experiments, the mice had heen fed with colloid silver and in these prolonged experiments, administrations lasted for 2 months. The nanoparticle administration was then cancelled for one month. The elemental composition of tissue samples was studied by Nuclear Physical technique, which allowed us to obtain the masses of the key element, namely silver. It was demonstrated that silver concentrations in tissues were redistributed with time. The main result of this work was the discovery of extremely low level of silver nanoparticle excretion from mice brain (just 6% per month) following the cancellation of NP administration. However, the rates of excretion from blood and liver appeared to be rather high (about 80% per month). Thus, the accumulation effect of silver nanoparticles in the mice brain was observed, which is of great practical importance. It changes the approach to the toxicity assessment of silver nanoparticles as a result of the prolonged injection of colloidal silver.
机译:研究了小鼠器官的银纳米粒子积累以及它们的排泄过程。该研究包括一次性口服施用银纳米颗粒和一系列延长的同一纳米颗粒的口服施用,以研究纳米颗粒的长期影响。在这些实验中,小鼠患有胶体银和这些延长的实验,持续2个月。然后取消纳米粒子给药一个月。通过核物理技术研究组织样品的元素组成,使我们允许我们获得关键元素的质量,即银。据证明,随着时间的推移重新分配了组织中的银浓度。这项工作的主要结果是在取消NP授权后发现从小鼠脑(每月只有6%)的极低银纳米粒子排泄的发现。然而,血液和肝脏排泄的速度似乎相当高(每月约80%)。因此,观察到银纳米粒子在小鼠脑中的累积效果,这具有很大的实际重要性。由于延长注射胶体银,改变了银纳米粒子毒性评估的方法。

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