State Key Laboratory of Heavy Oil Processing, Center for Bioengineering and Biotechnology, College of Chemical Engineering, China University of Petroleum (East China), Qingdao 266580, China.
College of Science, China University of Petroleum (East China), Qingdao 266580, China.
Nanoscale. 2017 Jul 27;9(29):10193-10204. doi: 10.1039/c7nr00890b.
Single-walled carbon nanotubes (SWCNTs) are at present synthesized on a large scale with a variety of applications. The increasing likelihood of exposure to SWCNTs, however, puts human health at a high risk. As the front line of the innate host defense system, the pulmonary surfactant monolayer (PSM) at the air-water interface of the lungs interacts with the inhaled SWCNTs, which in turn inevitably perturb the ultrastructure of the PSM and affect its biophysical functions. Here, using molecular dynamics simulations, we demonstrate how the diameter and length of SWCNTs critically regulate their interactions with the PSM. Compared to their diameters, the inhalation toxicity of SWCNTs was found to be largely affected by their lengths. Short SWCNTs with lengths comparable to the monolayer thickness are found to vertically insert into the PSM with no indication of translocation, possibly leading to accumulation of SWCNTs in the PSM with prolonged retention and increased inflammation potentials. The perturbation also comes from the forming water pores across the PSM. Longer SWCNTs are found to horizontally insert into the PSM during inspiration, and they can be wrapped by the PSM during deep expiration via a tube diameter-dependent self-rotation. The potential toxicity of longer SWCNTs comes from severe lipid depletion and the PSM-rigidifying effect. Our findings could help reveal the inhalation toxicity of SWCNTs, and pave the way for the safe use of SWCNTs as vehicles for pulmonary drug delivery.
单壁碳纳米管(SWCNTs)目前已大规模合成,具有多种应用。然而,由于 SWCNTs 暴露的可能性增加,人类健康面临着巨大的风险。作为先天宿主防御系统的前沿,肺部气-水界面处的肺表面活性剂单层(PSM)与吸入的 SWCNTs 相互作用,这不可避免地扰乱了 PSM 的超微结构,并影响了其生物物理功能。在这里,我们使用分子动力学模拟,展示了 SWCNTs 的直径和长度如何对其与 PSM 的相互作用进行关键调节。与直径相比,SWCNTs 的吸入毒性主要受其长度影响。与单层厚度相当的短 SWCNTs 被发现垂直插入 PSM 而没有明显的迁移迹象,这可能导致 SWCNTs 在 PSM 中积累,延长保留时间并增加炎症潜力。这种扰动也来自穿过 PSM 的形成水孔。在吸气过程中,较长的 SWCNTs 被发现水平插入 PSM,并且在深呼气过程中可以通过管直径依赖性的自旋转被 PSM 包裹。较长 SWCNTs 的潜在毒性来自于严重的脂质耗竭和 PSM 刚性化效应。我们的发现可以帮助揭示 SWCNTs 的吸入毒性,并为安全使用 SWCNTs 作为肺部药物输送载体铺平道路。