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Silver nanowire interactions with primary human alveolar type-II epithelial cell secretions: contrasting bioreactivity with human alveolar type-I and type-II epithelial cells

机译:银纳米线与人类II型肺泡上皮细胞分泌物的相互作用:与人类I型和II型肺泡上皮细胞的生物反应性对比

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摘要

Inhaled nanoparticles have a high deposition rate in the alveolar units of the deep lung. The alveolar epithelium is composed of type-I and type-II epithelial cells (ATI and ATII respectively) and is bathed in pulmonary surfactant. The effect of native human ATII cell secretions on nanoparticle toxicity is not known. We investigated the cellular uptake and toxicity of silver nanowires (AgNWs; 70 nm diameter, 1.5 μm length) with human ATI-like cells (TT1), in the absence or presence of Curosurf® (a natural porcine pulmonary surfactant with a low amount of protein) or harvested primary human ATII cell secretions (HAS; containing both the complete lipid as well as the full protein complement of human pulmonary surfactant i.e. SP-A, SP-B, SP-C and SP-D). We hypothesised that Curosurf® or HAS would confer improved protection for TT1 cells, limiting the toxicity of AgNWs. In agreement with our hypothesis, HAS reduced the inflammatory and reactive oxygen species (ROS)-generating potential of AgNWs with exposed TT1 cells. For example, IL-8 release and ROS generation was reduced by 38% and 29%, respectively, resulting in similar levels to that of the non-treated controls. However in contrast to our hypothesis, Curosurf® had no effect. We found a significant reduction in AgNW uptake by TT1 cells in the presence of HAS but not Curosurf. Furthermore, we show that the SP-A and SP-D are likely to be involved in this process as they were found to be specifically bound to the AgNWs. While ATI cells appear to be protected by HAS, evidence suggested that ATII cells, despite no uptake, were vulnerable to AgNW exposure (indicated by increased IL-8 release and ROS generation and decreased intracellular SP-A levels one day post-exposure). This study provides unique findings that may be important for the study of lung epithelial-endothelial translocation of nanoparticles in general and associated toxicity within the alveolar unit.
机译:吸入的纳米颗粒在深肺的肺泡单元中具有较高的沉积速率。肺泡上皮由I型和II型上皮细胞(分别为ATI和ATII)组成,并浸入肺表面活性剂中。天然人类ATII细胞分泌物对纳米颗粒毒性的影响尚不清楚。我们研究了在不存在或存在Curosurf ®(天然猪)的情况下,银纳米线(AgNWs;直径70 nm,长度1.5μm)与人ATI样细胞(TT1)的细胞吸收和毒性。含少量蛋白质的肺表面活性剂)或收获的原代人ATII细胞分泌物(HAS;包含人肺表面活性剂的完整脂质和完整蛋白补体,即SP-A,SP-B,SP-C和SP- D)。我们假设Curosurf ®或HAS可以为TT1细胞提供更好的保护,从而限制AgNW的毒性。与我们的假设一致,HAS降低了暴露于TT1细胞的AgNWs产生炎症和活性氧(ROS)的可能性。例如,IL-8的释放和ROS的产生分别减少了38%和29%,从而导致与未处理的对照组相似的水平。但是,与我们的假设相反,Curosurf ®没有任何作用。我们发现在存在HAS而不是Curosurf的情况下,TT1细胞对AgNW的摄取显着降低。此外,我们发现SP-A和SP-D可能与该过程有关,因为它们被发现与AgNWs特异结合。尽管ATI细胞似乎受到HAS保护,但有证据表明,尽管没有摄取,ATII细胞仍容易受到AgNW暴露(暴露后一天IL-8释放量和ROS生成增加以及细胞内SP-A水平降低表明)。这项研究提供了独特的发现,这些发现对于研究肺泡上皮-内皮易位纳米颗粒的一般性以及相关的肺泡内毒性具有重要意义。

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