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双壳贝类贝壳的壳皮用于采样工程金属纳米颗粒:以加拿大实验湖中的银基纳米颗粒为例。

Periostracum of bivalve mollusk shells for sampling engineered metal nanoparticles: A case study of silver-based nanoparticles in Canada's experimental lake.

机构信息

School of the Environment, Laurentian University, 935 Ramsey Lake Rd, Sudbury, ON, P3E 2C6, Canada.

IISD-Experimental Lakes Area, Experimental Lakes Rd, Kenora, ON, P0V 2V0, Canada.

出版信息

Chemosphere. 2022 Sep;303(Pt 1):134912. doi: 10.1016/j.chemosphere.2022.134912. Epub 2022 May 12.

DOI:10.1016/j.chemosphere.2022.134912
PMID:35569632
Abstract

Given the ability of engineered metal nanoparticles to be transformed in natural waters in unpredictable manners, various sampling methods must be developed. Here, we took a novel approach to collection silver nanoparticles (AgNPs) that involved the use of the intact periostracum, the outer proteinaceous organic layer, of freshwater unionid mussels Pyganodon sp. Eight adult mussels were collected in August 2019 from a small boreal lake (L222) at the International Institute for Sustainable Development - Experimental Lakes Area (northwestern Ontario), which had been dosed with 15 kg of poly(vinylpyrrolidone)-coated silver nanoparticles (PVP-AgNPs) in 2014-2015. Additionally, three adult mussels were collected from a control lake (L375). Numerous silica (SiO) diatom frustules were adhered to periostracum of all mussels. Intact periostracum promotes the formation of layer composed of diatoms and sand grains. The Ag content in soft tissues and shells of the mussels from L375 was as low as ≤ 0.1 μg/g. In mussels from L222, Ag concentrations in the periostracum of five shells were in detectable amounts (1-4 μg/g); in three shells concentrations were as high as 86, 122, and 494 μg/g. The underlying mineral shell is depleted in Ag (<0.1 μg/g). The Ag content in soft tissue organs (whole body) ranged from 44 to 191 μg/g. AgNPs occur on the surface of both periostracum and diatoms. Single AgNPs (d = 20-60 nm) were partly sulfidized to AgS. The observed AgNPs often form aggregates with an average and a maximal size of circa 100 nm and 1.5 μm, respectively. Scraping small fragments of intact periostracum of unionid shell is non-lethal to mussels, and is easy to do under field conditions. This simple sampling protocol could be used to detect metal-based nanoparticles (engineered or accidental) with the use of unionid and dreissenid bivalves.

摘要

鉴于工程金属纳米粒子在自然水中以不可预测的方式转化的能力,必须开发各种采样方法。在这里,我们采用了一种新颖的方法来收集银纳米粒子(AgNPs),涉及使用淡水贻贝 Pyganodon sp. 的完整壳皮,这是一种外层蛋白质有机层。2019 年 8 月,从国际可持续发展研究所-实验湖区(安大略省西北部)的一个小 boreal 湖中采集了 8 只成年贻贝,该湖于 2014-2015 年被 15 公斤聚(聚乙烯吡咯烷酮)包覆的银纳米粒子(PVP-AgNPs)处理。此外,还从对照湖(L375)采集了 3 只成年贻贝。许多二氧化硅(SiO)硅藻壳被粘附在所有贻贝的壳皮上。完整的壳皮促进了由硅藻和砂粒组成的层的形成。来自 L375 的贻贝的软组织和贝壳中的 Ag 含量低至≤0.1μg/g。来自 L222 的贻贝中,五壳的壳皮中 Ag 浓度可检测到(1-4μg/g);在三个贝壳中,浓度高达 86、122 和 494μg/g。下面的矿物壳中 Ag 耗尽(<0.1μg/g)。软组织器官(整个身体)中的 Ag 含量在 44 至 191μg/g 之间。AgNPs 存在于壳皮和硅藻的表面。单个 AgNPs(d=20-60nm)部分硫化为 AgS。观察到的 AgNPs 经常与平均粒径约为 100nm 和最大粒径约为 1.5μm 的 AgS 形成聚集体。刮取完整贻贝壳皮的小碎片对贻贝无毒,在野外条件下很容易做到。这种简单的采样方案可用于使用贻贝和淡水贻贝检测基于金属的纳米粒子(工程或意外)。

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