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影响纳米颗粒固有免疫反应的内在和外在特性:以氧化铈为例。

Intrinsic and Extrinsic Properties Affecting Innate Immune Responses to Nanoparticles: The Case of Cerium Oxide.

作者信息

Casals Eudald, Gusta Muriel F, Piella Jordi, Casals Gregori, Jiménez Wladimiro, Puntes Victor

机构信息

Vall d'Hebron Institut of Research (VHIR), Barcelona, Spain.

Institut Català de Nanociència i Nanotecnologia (ICN2), CSIC and The Barcelona Institute of Science and Technology (BIST), Campus UAB, Barcelona, Spain.

出版信息

Front Immunol. 2017 Aug 14;8:970. doi: 10.3389/fimmu.2017.00970. eCollection 2017.

Abstract

We review the apparent discrepancies between studies that report anti-inflammatory effects of cerium oxide nanoparticles (CeO NPs) through their reactive oxygen species-chelating properties and immunological studies highlighting their toxicity. We observe that several underappreciated parameters, such as aggregation size and degree of impurity, are critical determinants that need to be carefully addressed to better understand the NP biological effects in order to unleash their potential clinical benefits. This is because NPs can evolve toward different states, depending on the environment where they have been dispersed and how they have been dispersed. As a consequence, final characteristics of NPs can be very different from what was initially designed and produced in the laboratory. Thus, aggregation, corrosion, and interaction with extracellular matrix proteins critically modify NP features and fate. These modifications depend to a large extent on the characteristics of the biological media in which the NPs are dispersed. As a consequence, when reviewing the scientific literature, it seems that the aggregation state of NPs, which depends on the characteristics of the dispersing media, may be more significant than the composition or original size of the NPs. In this work, we focus on CeO NPs, which are reported sometimes to be protective and anti-inflammatory, and sometimes toxic and pro-inflammatory.

摘要

我们回顾了一些研究之间明显的差异,这些研究通过氧化铈纳米颗粒(CeO NPs)的活性氧螯合特性报告其抗炎作用,而免疫学研究则强调了它们的毒性。我们观察到,几个未被充分认识的参数,如聚集尺寸和杂质程度,是关键的决定因素,为了更好地理解纳米颗粒的生物学效应以释放其潜在的临床益处,需要仔细考虑这些因素。这是因为纳米颗粒可以根据其分散的环境以及分散方式演变成不同的状态。因此,纳米颗粒的最终特性可能与实验室最初设计和生产的有很大不同。因此,聚集、腐蚀以及与细胞外基质蛋白的相互作用会严重改变纳米颗粒的特性和命运。这些改变在很大程度上取决于纳米颗粒所分散的生物介质的特性。因此,在回顾科学文献时,似乎取决于分散介质特性的纳米颗粒聚集状态可能比纳米颗粒的组成或原始尺寸更重要。在这项工作中,我们聚焦于CeO NPs,它们有时被报道具有保护和抗炎作用,有时则具有毒性和促炎作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b98/5557789/733e0b0f6f5f/fimmu-08-00970-g001.jpg

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