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Quantitative assessment of inhalation exposure and deposited dose of aerosol from nanotechnology-based consumer sprays

机译:基于纳米技术的消费者喷雾剂的吸入暴露和气溶胶沉积剂量的定量评估

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摘要

This study provides a quantitative assessment of inhalation exposure and deposited aerosol dose in the 14 nm to 20 μm particle size range based on the aerosol measurements conducted during realistic usage simulation of five nanotechnology-based and five regular spray products matching the nano-products by purpose of application. The products were also examined using transmission electron microscopy. In seven out of ten sprays, the highest inhalation exposure was observed for the coarse (2.5–10 μm) particles while being minimal or below the detection limit for the remaining three sprays. Nanosized aerosol particles (14–100 nm) were released, which resulted in low but measurable inhalation exposures from all of the investigated consumer sprays. Eight out of ten products produced high total deposited aerosol doses on the order of 101–103 ng kg−1 bw per application, ~85–88% of which were in the head airways, only <10% in the alveolar region and <8% in the tracheobronchial region. One nano and one regular spray produced substantially lower total deposited doses (by 2–4 orders of magnitude less), only ~52–64% of which were in the head while ~29–40% in the alveolar region. The electron microscopy data showed nanosized objects in some products not labeled as nanotechnology-based and conversely did not find nano-objects in some nano-sprays. We found no correlation between nano-object presence and abundance as per the electron microscopy data and the determined inhalation exposures and deposited doses. The findings of this study and the reported quantitative exposure data will be valuable for the manufacturers of nanotechnology-based consumer sprays to minimize inhalation exposure from their products, as well as for the regulators focusing on protecting the public health.
机译:这项研究基于对五种基于纳米技术的喷雾剂和五种符合目的的常规喷雾产品的实际使用模拟过程中进行的气溶胶测量,对14 nm至20μm粒径范围内的吸入暴露和沉积的气溶胶剂量进行了定量评估。的应用程序。还使用透射电子显微镜检查了产物。在十分之七的喷雾剂中,粗颗粒(2.5–10μm)的吸入暴露量最高,而其余三个喷雾剂的吸入暴露量最小或低于检测极限。释放出纳米级的气溶胶颗粒(14–100 nm),导致所有调查的消费者喷雾剂的吸入量较低,但可测量。十分之八的产品每次沉积产生的总气溶胶剂量高,约为10 1 –10 3 ng kg -1 bw,〜其中85-88%位于头道,仅在肺泡区<10%和在气管支气管区<8%。一纳米和一常规喷雾剂产生的总沉积剂量大大降低(减少了2-4个数量级),其中只有〜52–64%位于头部,而〜29–40%位于肺泡区域。电子显微镜数据显示,某些产品中的纳米尺寸物体未标记为基于纳米技术的产品,相反,在某些纳米喷雾中却未找到纳米物体。根据电子显微镜数据和确定的吸入暴露量和沉积剂量,我们没有发现纳米物体的存在与丰度之间的相关性。这项研究的结果和所报告的定量暴露数据对于基于纳米技术的消费喷雾剂的制造商,以最大程度地减少其产品的吸入暴露,以及对于致力于保护公众健康的监管者而言,都是有价值的。

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