带负电荷的聚苯乙烯纳米塑料在肺部的优先蓄积。

IF 9.6 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Didar Baimanov, Zhuda Song, Zehao Zhang, Longxing Sun, Qingxi Yuan, Wanxia Huang, Yuxi Gao, Liming Wang, Zhiyong Zhang
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引用次数: 0

摘要

随着人体血液中纳米塑料(NPs)含量的不断增加,研究其组织积累和潜在的健康风险迫在眉睫。本研究探讨了聚苯乙烯(PS)NPs 的尺寸和表面电荷对肺积聚的影响。利用磁分离技术,我们确定了铁芯 PS NPs 上的蛋白质电晕成分,发现其中富含玻璃连蛋白和纤维蛋白原。该蛋白冠促进了肺内皮细胞通过整合素αⅡbβ3受体介导的吸收,这说明蛋白冠的组成和蛋白结构决定了带负电荷的PS NPs在肺中的优先定位。这项研究揭示了蛋白质电晕在NP吸收中的作用以及NP进入肺部的方式,强调了在纳米毒理学领域考虑具有不同表面特征的纳米塑料与生物分子之间相互作用的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Preferred Lung Accumulation of Polystyrene Nanoplastics with Negative Charges.

Preferred Lung Accumulation of Polystyrene Nanoplastics with Negative Charges.

With the increasing presence of nanoplastics (NPs) in the human bloodstream, it is urgent to investigate their tissue accumulation and potential health risks. This study examines the effects of the size and surface charges of polystyrene (PS) NPs on lung accumulation. Using magnetic separation, we identified the protein corona composition on iron-core PS NPs, revealing the enrichment of vitronectin and fibrinogen. The corona promotes integrin αIIbβ3 receptor-mediated uptake by lung endothelial cells, explaining that both the corona composition and protein structure determine preferred localization of negatively charged PS NPs in the lung. This study uncovers the role of protein corona in NP uptake and the way NPs enter the lung, emphasizing the need to consider interactions between nanoplastics with varying surface characteristics and biological molecules in the nanotoxicological field.

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来源期刊
Nano Letters
Nano Letters 工程技术-材料科学:综合
CiteScore
16.80
自引率
2.80%
发文量
1182
审稿时长
1.4 months
期刊介绍: Nano Letters serves as a dynamic platform for promptly disseminating original results in fundamental, applied, and emerging research across all facets of nanoscience and nanotechnology. A pivotal criterion for inclusion within Nano Letters is the convergence of at least two different areas or disciplines, ensuring a rich interdisciplinary scope. The journal is dedicated to fostering exploration in diverse areas, including: - Experimental and theoretical findings on physical, chemical, and biological phenomena at the nanoscale - Synthesis, characterization, and processing of organic, inorganic, polymer, and hybrid nanomaterials through physical, chemical, and biological methodologies - Modeling and simulation of synthetic, assembly, and interaction processes - Realization of integrated nanostructures and nano-engineered devices exhibiting advanced performance - Applications of nanoscale materials in living and environmental systems Nano Letters is committed to advancing and showcasing groundbreaking research that intersects various domains, fostering innovation and collaboration in the ever-evolving field of nanoscience and nanotechnology.
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