首页> 外文期刊>Proteomics >Nanomaterials in the Environment Acquire an “Eco‐Corona” Impacting their Toxicity to Daphnia Magna Daphnia Magna —a Call for Updating Toxicity Testing Policies
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Nanomaterials in the Environment Acquire an “Eco‐Corona” Impacting their Toxicity to Daphnia Magna Daphnia Magna —a Call for Updating Toxicity Testing Policies

机译:环境中的纳米材料获得了对Daphnia Magna Daphnia Magna -A呼吁更新毒性测试政策的“生态电晕”。

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摘要

Abstract Nanomaterials (NMs) are particles with at least one dimension between 1 and 100?nm and a large surface area to volume ratio, providing them with exceptional qualities that are exploited in a variety of industrial fields. Deposition of NMs into environmental waters during or after use leads to the adsorption of an ecological (eco‐) corona, whereby a layer of natural biomolecules coats the NM changing its stability, identity and ultimately toxicity. The eco‐corona is not currently incorporated into ecotoxicity tests, although it has been shown to alter the interactions of NMs with organisms such as Daphnia magna ( D. magna ). Here, the literature on environmental biomolecule interactions with NMs is synthesized and a framework for understanding the eco‐corona composition and its role in modulating NMs ecotoxicity is presented, utilizing D. magna as a model. The importance of including biomolecules as part of the current international efforts to update the standard testing protocols for NMs, is highlighted. Facilitating the formation of an eco‐corona prior to NMs ecotoxicity testing will ensure that signaling pathways perturbed by the NMs are real rather than being associated with the damage arising from reactive NM surfaces “acquiring” a corona by pulling biomolecules from the organism's surface.
机译:摘要纳米材料(NMS)是颗粒,其尺寸在1到100°的尺寸和体积比的大的表面积之间,为它们提供了卓越的品质,这些品质被利用在各种工业领域。在使用期间或之后将NMS沉积进入环境水域导致生态(ECO-)电晕的吸附,由此一层天然生物分子涂层NM改变其稳定性,身份和最终毒性。 ECO-CORONO目前尚未纳入生态毒性测试中,尽管已经显示出改变NMS与生物体如Daphnia MAGNA(D. MAGNA)的相互作用。这里,综合了关于与NMS的环境生物分子相互作用的文献,并介绍了一种理解生态电晕组成的框架及其在调节NMS生态毒性方面的作用,利用D. MAGNA作为模型。突出了包括生物分子作为当前更新NMS标准测试协议的国际努力的一部分的重要性。促进在NMS生态毒性测试之前形成生态电晕的形成将确保由NMS扰乱的信号传导途径是真实的,而不是通过从有机体表面拉动生物分子来获得反应性NM表面“获取”电晕的损伤。

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