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Round-shape gold nanoparticles: effect of particle size and concentration on Arabidopsis thaliana root growth

机译:圆形金纳米颗粒:粒径和浓度对拟南芥根生长的影响

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摘要

Nowadays, due to a wide range of applications of nanoparticles (NPs) in many industrial areas, accumulations of those entities in environment pose a great risk. Owing to their inertness, noble metal NPs may remain in contaminated soils nearly unchanged for long time. Within this context, size-, shape-, and concentration-dependent uptake of particles by plants belongs to unexplored area. In this work, we present water solutions of biologically friendly synthesized spherical AuNPs with pretty narrow size distribution in size range from 10 to 18 nm. Their thorough characterization by atomic absorption spectroscopy, mass spectroscopy-equipped inductively coupled plasma, dynamic light scattering (DLS), and TEM methods was followed by the study of their effect on the growth of Arabidopsis thaliana (primary and lateral roots), in particle size- and concentration-dependent manner. Due to strictly round-shape form of AuNPs and absence of particle agglomeration, DLS-derived size and size distribution were in good concordance with those obtained from TEM. The length and number of A. thaliana lateral roots were significantly affected by all types of AuNPs. Smallest AuNPs at highest concentration inhibited length of primary roots and, in contrast, enhanced hair root growth.
机译:如今,由于纳米颗粒(NPs)在许多工业领域中的广泛应用,这些实体在环境中的积累构成了巨大的风险。由于它们的惰性,贵金属NP可能长时间在污染土壤中几乎保持不变。在这种情况下,植物对颗粒的大小,形状和浓度依赖性吸收属于未开发区域。在这项工作中,我们提出了生物友好的合成球形AuNPs的水溶液,其尺寸分布范围从10到18nm相当窄。通过原子吸收光谱,配备质谱的感应耦合等离子体,动态光散射(DLS)和TEM方法对它们进行了全面表征,然后研究了它们对拟南芥(初级和侧根)生长的粒径影响-和浓度依赖的方式。由于AuNP的形状严格为圆形,并且没有颗粒团聚,因此DLS衍生的尺寸和尺寸分布与从TEM获得的尺寸和尺寸非常一致。拟南芥侧根的长度和数量均受所有类型的AuNPs的显着影响。最高浓度的最小AuNPs抑制了初生根的长度,相反,增强了发根的生长。

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