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Unraveling the molecular mechanism of photosynthetic toxicity of highly fluorescent silver nanoclusters to Scenedesmus obliquus

机译:揭示高荧光性银纳米团簇对斜生藻的光合毒性的分子机理

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摘要

While the discovery of numerous attractive properties of silver at the nanoscale has increased their demand in many sectors including medicine, optics, sensing, painting and cosmetics, it has also raised wide public concerns about their effect on living organisms in aquatic environment. Despite the continuous effort to understand the various aspects of the toxicity of silver nanomaterials, the molecular level understanding on their cytotoxicity mechanism to biological organisms has remained unclear. Herein, we demonstrated the underlying mechanism of the photosynthetic toxicity against green algae namely, Scenedesmus obliquus by using an emerging silver nanomaterial, called silver nanoclusters (defined as r-Ag NCs). By exploiting the unique fluorescence properties of r-Ag NCs along with various other analytical/biological tools, we proposed that the photosynthetic toxicity of r-Ag NCs was largely attributed to the “joint-toxicity” effect of particulate form of r-Ag NCs and its released Ag+, which resulted in the disruption of the electron transport chain of light reaction and affected the content of key enzymes (RuBP carboxylase/ oxygenase) of Calvin cycle of algae cells. We believe that the present study can also be applied to the assessment of the ecological risk derived from other metal nanoparticles.
机译:尽管在纳米级发现了许多吸引人的银特性,从而增加了它们在医学,光学,传感,绘画和化妆品等许多领域的需求,但也引起了公众对其在水生环境中对生物的影响的广泛关注。尽管人们一直在努力理解银纳米材料的毒性的各个方面,但是关于它们对生物的细胞毒性机理的分子水平的理解仍然不清楚。在这里,我们通过使用一种新兴的银纳米材料,称为银纳米团簇(定义为r-Ag NCs),证明了对绿藻光合毒性的潜在机理,即斜生藻。通过利用r-Ag NCs的独特荧光特性以及其他各种分析/生物学工具,我们提出r-Ag NCs的光合毒性主要归因于r-Ag NCs颗粒形式的“联合毒性”效应。以及其释放的Ag + ,导致光反应的电子传输链断裂,影响藻类细胞Calvin循环关键酶(RuBP羧化酶/加氧酶)的含量。我们相信,本研究也可以用于评估其他金属纳米粒子带来的生态风险。

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