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Effect of pulmonary surfactant on the dissolution stability and uptake of zinc oxide nanowires by human respiratory epithelial cells

机译:肺表面活性剂对人呼吸道上皮细胞溶解稳定和摄取氧化锌纳米线的影响

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摘要

Inhaled nanoparticles have high deposition rates in the alveolar region of the lung but the effects of pulmonary surfactant (PS) on nanoparticle bioreactivity are unclear. Here, the impact of PS on the stability and dissolution of ZnO nanowires (ZnONWs) was investigated, and linked with their bioreactivity in vitro with human alveolar epithelial type 1-like cells (TT1). Pre-incubation of ZnONWs with Curosurf® (a natural porcine PS) decreased their dissolution at acidic pH, through the formation of a phospholipid corona. Confocal live cell microscopy confirmed that Curosurf® lowered intracellular dissolution, thus delaying the onset of cell death compared to bare ZnONWs. Despite reducing dissolution, Curosurf® significantly increased the uptake of ZnONWs within TT1 cells, ultimately increasing their toxicity after 24h. Although serum, improved ZnONW dispersion in suspension similar to Curosurf®, it had no effect on ZnONW internalization and toxicity, indicating a unique role of PS in promoting particle uptake. In the absence of PS, ZnONW length had no effect on dissolution kinetics or degree of cellular toxicity, indicating a less important role of length in determining ZnONW bioreactivity. This work provides unique findings on the effects of PS on the stability and toxicity of ZnONWs, which could be important in the study of pulmonary toxicity and epithelial-endothelial translocation of nanoparticles in general.
机译:吸入的纳米颗粒在肺的肺泡区域具有较高的沉积速率,但尚不清楚肺表面活性剂(PS)对纳米颗粒生物反应性的影响。在这里,研究了PS对ZnO纳米线(ZnONWs)的稳定性和溶解的影响,并将其与人肺泡上皮1型样细胞(TT1)的体外生物反应性联系起来。 ZnONWs与Curosurf ®(天然猪PS)的预温育通过形成磷脂电晕降低了其在酸性pH下的溶解。共聚焦活细胞显微镜检查证实,Curosurf ®降低了细胞内溶出度,因此与裸露的ZnONWs相比,延迟了细胞死亡的开始。尽管减少了溶解,Curosurf ®仍显着增加了TT1细胞内ZnONW的吸收,最终在24小时后增加了它们的毒性。尽管血清可以改善ZnONW在悬浮液中的分散性,类似于Curosurf ®,但它对ZnONW的内在化和毒性没有影响,表明PS在促进颗粒吸收方面具有独特作用。在没有PS的情况下,ZnONW的长度对溶解动力学或细胞毒性程度没有影响,这表明长度在确定ZnONW生物反应性中的作用较小。这项工作提供了关于PS对ZnONWs稳定性和毒性的影响的独特发现,这对于研究纳米颗粒的肺毒性和上皮-内皮易位可能是重要的。

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