首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Influence of shape,adhesion and simulated lung mechanics on amorphous silica nanoparticle toxicity
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Influence of shape,adhesion and simulated lung mechanics on amorphous silica nanoparticle toxicity

机译:形状,附着力和模拟肺力学对无定形二氧化硅纳米颗粒毒性的影响

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摘要

Prevailing theories suggest that acicular,or fiber-like,particles induce enhanced toxicity over isotropic materials through hindrance of phagocyte-mediated clearance mechanisms and through the aggravation of proximal cells via mechanical interactions.Currently,the degree to which either of these mechanisms operates is not well understood.To gain a more fundamental understanding of acicular particle toxicity,we have synthesized submicron and nanoscale amorphous silica spheres and rods as model materials for shape-driven toxicological experimentation.To accentuate contributions from mechanical damage in vitro,exposure studies were performed in the presence and absence of simulated lung mechanics.To promote and mitigate cell-particle contact-mediated mechanical interactions,the adhesion of the particles to the cell membrane was respectively modified by the physisorption of fibronectin and the chemisorptipn of polyethylene glycol to the silica particle surface.Lactic acid dehydrogenase (LDH) and ihterleukin (IL)-8 release were used as endpoints for cytotoxicity and inflammation,respectively.The results indicate that particle exposures in the presence of physiological stretch induce increased LDH release and IL-8 expression regardless of shape.Moreover,it is evident that shape-induced aggregation may play a significant role in mitigating particle clearance pathways.
机译:普遍的理论表明,针状或纤维状颗粒通过吞噬细胞介导的清除机制的阻碍以及通过机械相互作用加重近端细胞而诱导了对各向同性材料的增强毒性。目前,这两种机制的作用程度尚不明确。为了更深入地了解针状颗粒的毒性,我们合成了亚微米级和纳米级的无定形二氧化硅球和棒,作为形状驱动毒理学实验的模型材料。为了强调体外机械损伤的作用,我们在实验室进行了暴露研究。为了促进和减轻细胞-颗粒接触介导的机械相互作用,通过纤连蛋白的物理吸附和聚乙二醇的化学异构体对二氧化硅颗粒表面的吸附,分别改变了颗粒与细胞膜的粘附力。乳酸脱氢酶H)和白细胞介素(IL)-8的释放分别用作细胞毒性和炎症的终点。结果表明,在存在生理牵张的情况下暴露于颗粒会导致LDH释放和IL-8表达增加,无论其形状如何。显然,形状诱导的聚集可能在减轻颗粒清​​除途径中起重要作用。

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