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Pulmonary surfactant is indispensable in order to simulate the in vivo situation

机译:为了模拟体内情况肺表面活性剂必不可少

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摘要

The article of Gasser et al. [Part Fibre Toxicol. 24; 9:17, 2012] describes the interaction of carbon nanotubes with cells within a complex cell culture model. Besides various toxicity parameters, the influence of coating with pulmonary surfactant was investigated. Pulmonary surfactant covers the entire alveolar region with the main function of decreasing the surface tension in the alveoli to prevent alveolar collapse. Although each inhaled nanoparticle, reaching the alveoli, will come into contact with pulmonary surfactant which will probably lead to a surfactant coating, pulmonary surfactant components are not commonly integrated in in vitro systems. Gasser and co-workers have shown that this surfactant coating is able to influence the further interaction with cellular systems. Hence, each scientist, working with in vitro systems and nanoparticles, should think of integrating pulmonary surfactant structures in order to harmonize the in vitro systems with the in vivo situation. In the present commentary we discuss the most important points of the manuscript of Gasser et al. and discuss where the usage of pulmonary surfactant can be further optimized.
机译:Gasser等人的文章。 [部分纤维毒物。 24; [9:17,2012]描述了碳纳米管与复杂细胞培养模型中细胞的相互作用。除了各种毒性参数外,还研究了用肺表面活性剂涂层的影响。肺表面活性剂覆盖整个肺泡区域,其主要功能是降低肺泡表面张力以防止肺泡塌陷。尽管到达肺泡的每个吸入的纳米颗粒都将与肺表面活性剂接触,这可能会导致表面活性剂被覆,但肺表面活性剂的成分在体外系统中通常并不集成。 Gasser及其同事表明,这种表面活性剂涂层能够影响与细胞系统的进一步相互作用。因此,每位从事体外系统和纳米粒子研究的科学家都应考虑整合肺表面活性剂结构,以使体外系统与体内情况协调一致。在当前的评论中,我们讨论了Gasser等人手稿中最重要的部分。并讨论在哪里可以进一步优化肺表面活性剂的使用。

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