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CdSe/ZnS 量子点与海洋硅藻三角褐指藻和绿藻杜氏盐藻的相互作用:一种生物物理方法。

Interaction of CdSe/ZnS quantum dots with the marine diatom Phaeodactylum tricornutum and the green alga Dunaliella tertiolecta: a biophysical approach.

机构信息

Istituto di Biofisica, CNR, via G. Moruzzi 1, 56124 Pisa, Italy.

出版信息

Biophys Chem. 2013 Dec 1;182:4-10. doi: 10.1016/j.bpc.2013.06.007. Epub 2013 Jun 18.

DOI:10.1016/j.bpc.2013.06.007
PMID:23845201
Abstract

In this study, we investigated the interaction of nanoparticles, such as CdSe/ZnS quantum dots (QDs), with the marine diatom Phaeodactylum tricornutum and the green alga Dunaliella tertiolecta, as biological models in the marine environment. Fluorescence kinetics measurements indicated that 30min after dispersion in seawater QDs lost the 60% of the initial emission intensity, possibly due to the occurrence of aggregation processes. However, the presence of algae seemed to mitigate this effect. By using confocal microscopy, we highlighted the presence of QDs adsorbed on the surface of both algae, but not inside the cells. The toxicity of QDs was evaluated in terms of inhibition of growth rate, oxidative stress, and lipid peroxidation. QDs in the range of 1-2.5nM gradually inhibited the growth rate of P. tricornutum and increased the oxidative stress, as evinced by the increase in lipid peroxidation, reactive oxygen species (ROS) production and activity of two main antioxidant enzymes (superoxide dismutase and catalase). On the contrary, QDs did not inhibit the growth rate of D. tertiolecta, at most a modest stimulation was observed in the range of 0.5-2nM, suggesting a hormetic response. No effect in the parameters indicating oxidative stress was observed in the green alga. In conclusion our results showed that the biological effects were species-specific.

摘要

在这项研究中,我们以海洋硅藻三角褐指藻和绿藻杜氏盐藻为生物模型,研究了纳米粒子(如 CdSe/ZnS 量子点 (QDs))与海洋环境的相互作用。荧光动力学测量表明,在海水中分散 30 分钟后,QDs 失去了初始发射强度的 60%,这可能是由于聚集过程的发生。然而,藻类的存在似乎减轻了这种影响。通过使用共聚焦显微镜,我们突出显示了 QDs 吸附在两种藻类表面的存在,但不在细胞内。通过生长抑制率、氧化应激和脂质过氧化来评估 QDs 的毒性。1-2.5nM 的 QDs 逐渐抑制三角褐指藻的生长率,并增加氧化应激,表现为脂质过氧化、活性氧 (ROS) 产生和两种主要抗氧化酶(超氧化物歧化酶和过氧化氢酶)的活性增加。相反,QDs 并没有抑制杜氏盐藻的生长率,在 0.5-2nM 的范围内观察到适度的刺激,表明存在兴奋效应。在指示氧化应激的参数方面,绿藻没有观察到任何影响。总之,我们的结果表明,生物效应是具有物种特异性的。

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