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No evidence for cerium dioxide nanoparticle translocation in maize plants

机译:没有证据表明玉米植物中二氧化铈纳米颗粒易位

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摘要

The rapidly increasing production of engineered nanoparticles has raised questions regarding their environmental impact and their mobility to overcome biological important barriers. Nanoparticles were found to cross different mammalian barriers, which is summarized under the term translocation. The present work investigates the uptake and translocation of cerium dioxide nanoparticles into maize plants as one of the major agricultural crops. Nanoparticles were exposed either as aerosol or as suspension. Our study demonstrates that 50 μg of cerium/g of leaves was either adsorbed or incorporated into maize leaves. This amount could not be removed by a washing step and did not depend on closed or open stomata investigated under dark and light exposure conditions. However, no translocation into newly grown leaves was found when cultivating the maize plants after airborne particle exposure. The use of inductively coupled mass spectrometer allowed detection limits of less than 1 ng of cerium/g of leaf. Exposure of plants to well-characterized nanoparticle suspensions in the irrigation water resulted also in no detectable translocation. These findings may indicate that the biological barriers of plants are more resistant against nanoparticle translocation than mammalian barriers.
机译:工程纳米粒子的快速增长的生产提出了有关其对环境的影响及其克服生物学重要障碍的迁移性的问题。发现纳米颗粒跨越不同的哺乳动物屏障,其在术语易位下概括。本工作研究了二氧化铈纳米颗粒作为主要农作物之一的玉米植物的吸收和转运。纳米颗粒以气雾剂或悬浮液形式暴露。我们的研究表明50μg铈/ g叶片被吸附或掺入玉米叶片中。该量不能通过洗涤步骤除去,并且不取决于在黑暗和光暴露条件下研究的闭合或开放气孔。但是,暴露于空气传播的颗粒后种植玉米植物时,未发现易位到新生长的叶片中。电感耦合质谱仪的使用允许检出限小于1 ng铈/克叶片。将植物暴露于灌溉水中特征明确的纳米颗粒悬浮液中也导致未检测到易位。这些发现可能表明,植物的生物屏障比哺乳动物屏障对纳米粒子的转运更有抵抗力。

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