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吸入银纳米颗粒在大鼠体内的动力学时间过程。

Kinetic time courses of inhaled silver nanoparticles in rats.

机构信息

Department of Environmental and Occupational Health, Toxicological Risk Assessment and Management, and Public Health Research Center (CReSP), University of Montreal, Roger-Gaudry Building, U436, Main Station, P.O. Box 6128, Montreal, QC, H3C 3J7, Canada.

Université Grenoble Alpes, CEA, 38054, Grenoble, France.

出版信息

Arch Toxicol. 2022 Feb;96(2):487-498. doi: 10.1007/s00204-021-03191-0. Epub 2021 Nov 17.

Abstract

Silver nanoparticles (Ag NPs) are priority substances closely monitored by health and safety agencies. Despite their extensive use, some aspects of their toxicokinetics remain to be documented, in particular following inhalation, the predominant route of exposure in the workplace. A same experimental protocol and exposure conditions were reproduced two times (experiments E1 and E2) to document the kinetic time courses of inhaled Ag NPs. Rats were exposed nose-only to 20 nm Ag NPs during 6 h at a target concentration of 15 mg/m (E1: 218,341 ± 85,512 particles/cm; E2, 154,099 ± 5728 particles/cm). The generated aerosol showed a uniform size distribution of nanoparticle agglomerates with a geometric mean diameter ± SD of 79.1 ± 1.88 nm in E1 and 92.47 ± 2.19 nm in E2. The time courses of elemental silver in the lungs, blood, tissues and excreta were determined over 14 days following the onset of inhalation. Excretion profiles revealed that feces were the dominant excretion route and represented on average (± SD) 5.1 ± 3.4% (E1) and 3.3 ± 2.5% (E2) of the total inhaled exposure dose. The pulmonary kinetic profile was similar in E1 and E2; the highest percentages of the inhaled dose were observed between the end of the 6-h inhalation up to 6-h following the end of exposure, and reached 1.9 ± 1.2% in E1 and 2.5 ± 1.6% in E2. Ag elements found in the GIT followed the trend observed in lungs, with a peak observed at the end of the 6-h inhalation exposure and representing 6.4 ± 4.9% of inhaled dose, confirming a certain ingestion of Ag NPs from the upper respiratory tract. Analysis of the temporal profile of Ag elements in the liver showed two distinct patterns: (i) progressive increase in values with peak at the end of the 6-h inhalation period followed by a progressive decrease; (ii) second increase in values starting at 72 h post-exposure with maximum levels at 168-h followed by a progressive decrease. The temporal profiles of Ag elements in lymphatic nodes, olfactory bulbs, kidneys and spleen also followed a pattern similar to that of the liver. However, concentrations in blood and extrapulmonary organs were much lower than lung concentrations. Overall, results show that only a small percentage of the inhaled dose reached the lungs-most of the dose likely remained in the upper respiratory tract. The kinetic time courses in the gastrointestinal tract and liver showed that part of the inhaled Ag NPs was ingested; lung, blood and extrapulmonary organ profiles also suggest that a small fraction of inhaled Ag NPs progressively reached the systemic circulation by a direct translocation from the respiratory tract.

摘要

银纳米粒子(Ag NPs)是健康和安全机构密切监测的优先物质。尽管它们被广泛使用,但它们的毒代动力学的某些方面仍有待记录,特别是在吸入后,这是工作场所中暴露的主要途径。为了记录吸入 Ag NPs 的动力学时间过程,我们两次复制了相同的实验方案和暴露条件(实验 E1 和 E2)。大鼠在目标浓度为 15 mg/m 的情况下,仅通过鼻腔暴露于 20nm Ag NPs 6 小时(E1:218341 ± 85512 个/厘米;E2:154099 ± 5728 个/厘米)。生成的气溶胶显示纳米颗粒团聚体的均匀粒径分布,几何平均直径为 79.1 ± 1.88nm(E1)和 92.47 ± 2.19nm(E2)。吸入后 14 天内,测定了肺部、血液、组织和排泄物中元素银的时间过程。排泄曲线表明粪便是主要的排泄途径,平均占吸入总暴露剂量的 5.1 ± 3.4%(E1)和 3.3 ± 2.5%(E2)。E1 和 E2 中的肺动力学曲线相似;在 6 小时吸入结束至暴露结束后 6 小时之间,观察到吸入剂量的最高百分比,E1 中为 1.9 ± 1.2%,E2 中为 2.5 ± 1.6%。胃肠道中发现的 Ag 元素遵循在肺部观察到的趋势,在 6 小时吸入暴露结束时达到峰值,占吸入剂量的 6.4 ± 4.9%,证实从呼吸道摄入了一定量的 Ag NPs。对肝脏中 Ag 元素的时间曲线分析显示出两种不同的模式:(i)在 6 小时吸入期间值逐渐增加,峰值出现在吸入结束时,随后逐渐减少;(ii)在暴露结束后 72 小时开始第二次增加,168 小时达到最大值,随后逐渐减少。淋巴结、嗅球、肾脏和脾脏中的 Ag 元素时间曲线也呈现出与肝脏相似的模式。然而,血液和肺外器官中的浓度远低于肺部浓度。总的来说,结果表明,只有一小部分吸入剂量到达肺部-大部分剂量可能仍留在上呼吸道。胃肠道和肝脏中的动力学时间过程表明,部分吸入的 Ag NPs 被摄入;肺、血液和肺外器官的分布也表明,一小部分吸入的 Ag NPs 通过呼吸道的直接转运逐渐到达全身循环。

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