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Reducing the cytotoxicity of inhalable engineered nanoparticles via in situ passivation with biocompatible materials

机译:通过与生物相容性材料的原位钝化降低可吸入工程纳米颗粒的细胞毒性

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The cytotoxicity of model welding nanoparticles was modulated through in situ passivation with soluble biocompatible materials. A passivation process consisting of a spark discharge particle generator coupled to a collison atomizer as a co-flow or counter-flow configuration was used to incorporate the model nanoparticles with chitosan. The tested model welding nanoparticles are inhaled and that A549 cells are a human lung epithelial cell line. Measurements of in vitro cytotoxicity in A549 cells revealed that the passivated nanoparticles had a lower cytotoxicity (>65% in average cell viability, counter-flow) than the untreated model nanoparticles. Moreover, the co-flow incorporation between the nanoparticles and chitosan induced passivation of the nanoparticles, and the average cell viability increased by >80% compared to the model welding nanoparticles. As a more convenient way (additional chitosan generation and incorporation devices may not be required), other passivation strategies through a modification of the welding rod with chitosan adhesive and graphite paste did also enhance average cell viability (>58%). The approach outlined in this work is potentially generalizable as a new platform, using only biocompatible materials in situ, to treat nanoparticles before they are inhaled. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过使用可溶性生物相容性材料进行原位钝化,可调节模型焊接纳米颗粒的细胞毒性。钝化过程由火花放电颗粒发生器与Collison雾化器以同流或逆流配置耦合而成,用于将模型纳米颗粒与壳聚糖结合在一起。吸入经测试的模型焊接纳米颗粒,并且A549细胞是人肺上皮细胞系。测量A549细胞的体外细胞毒性表明,与未处理的模型纳米颗粒相比,钝化的纳米颗粒具有较低的细胞毒性(平均细胞生存力> 65%,逆流)。此外,与模型焊接纳米颗粒相比,纳米颗粒与壳聚糖之间的共流引入诱导了纳米颗粒的钝化,并且平均细胞活力提高了> 80%。作为一种更方便的方式(可能不需要额外的壳聚糖生成和掺入装置),通过使用壳聚糖粘合剂和石墨糊修饰焊条的其他钝化策略也可以提高平均细胞存活率(> 58%)。这项工作中概述的方法有可能被推广为一个新平台,即仅使用生物相容性材料在吸入纳米颗粒之前对其进行处理。 (C)2015 Elsevier B.V.保留所有权利。

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