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商用食品接触材料中纳米银释放的长期佩戴影响。

Long-term wear effects on nanosilver release from commercially available food contact materials.

机构信息

Center for Food Safety and Applied Nutrition, US Food and Drug Administration, College Park, MD, USA.

Engineering Laboratory, National Institute of Standards and Technology, Gaithersburg, MD, USA.

出版信息

Food Addit Contam Part A Chem Anal Control Expo Risk Assess. 2019 Nov;36(11):1757-1768. doi: 10.1080/19440049.2019.1654138. Epub 2019 Aug 22.

Abstract

Potential consumer exposure to nanoparticles (NPs) from nanoenabled food contact materials (FCMs) has been a driving force for migration studies of NPs from FCMs. Although NP migration from fresh, unused FCMs was not previously observed, conditions that result in significant changes to the surface of FCMs have not been investigated for NP migration into food. Therefore, a quantitative assessment of nanoparticle release from commercially available nanosilver-enabled FCMs was performed using an abrasion protocol to simulate cleaning, cutting, scraping and other stressful use conditions. Laser scanning confocal microscopy (LSCM) analysis showed a general increase in root mean square (RMS) roughness after FCM abrasion, and particle count (for particle sizes from 80 nm to 960 nm) at the surface was 4 orders of magnitude higher for the abraded FCMs. Migration was evaluated using both water and 3% (v/v, volume fraction) acetic acid as food simulants. Low concentrations of total Ag were detected in water simulants with a small portion (<10 ng dm) in the form of silver nanoparticles (AgNPs). Median particle diameter ranged from 39 nm to 50 nm with particle number concentrations on the order of 10 particles dm. Total Ag migration into 3% (v/v) acetic acid was significantly higher than in water; however, 3% (v/v) acetic acid was not suitable for evaluation of NP release due to dissolution of AgNPs to Ag under acidic solution chemistries.

摘要

纳米颗粒(NPs)从纳米功能食品接触材料(FCM)向潜在消费者的迁移一直是迁移研究的驱动力。尽管以前没有观察到新鲜、未使用的 FCM 中 NP 的迁移,但尚未研究导致 FCM 表面发生重大变化的条件对 NP 向食品中迁移的影响。因此,使用磨损协议对市售纳米银功能 FCM 中的纳米颗粒释放进行了定量评估,以模拟清洁、切割、刮擦和其他磨损使用条件。激光扫描共聚焦显微镜(LSCM)分析显示,FCM 磨损后均方根(RMS)粗糙度普遍增加,表面的颗粒计数(粒径为 80nm 至 960nm)对于磨损的 FCM 高出 4 个数量级。采用水和 3%(v/v,体积分数)乙酸作为食品模拟物进行了迁移评估。在水模拟物中检测到低浓度的总 Ag,其中一小部分(<10ngdm)以银纳米颗粒(AgNPs)的形式存在。中值粒径范围为 39nm 至 50nm,粒径数浓度约为 10 个颗粒 dm。总 Ag 向 3%(v/v)乙酸中的迁移明显高于水;然而,3%(v/v)乙酸不适合评估 NP 释放,因为在酸性溶液化学条件下 AgNPs 会溶解为 Ag。

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