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Interaction between nanoparticles and cytokine proteins: Impact on protein and particle functionality

机译:纳米粒子和细胞因子蛋白之间的相互作用:对蛋白质和粒子功能的影响

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摘要

There is increased use of nanomaterials in many applications due to their unique properties, such as their high surface area and surface reactivity. However, the potential health effects to workers, consumers and the environment exposed to nanoparticles (NPs) is unknown. The aim of this study was to investigate whether NPs which may enter the body could adsorb proteins and whether this interaction affects both the particle and the protein function. The cytokines IL-8 and TNF-α were adsorbed significantly more by 14nm carbon black (CB) compared with a similar dose of 260nm CB. Uncoated 14nm CB particles produced a significant increase in intracellular calcium [Ca~(2 +)] _i which was greater than a similar mass dose of 260nm CB. The 260nm CB produced an increase in ICAM-1 expression in A549 epithelial cells at a comparable dose of 14nm CB, and after coating with TNF-α 260nm CB produced significantly more ICAM-1 expression compared with control cells. TNF-α bound to 14nm CB induced a level of ICAM-1 expression that was no greater than the control level, suggesting that the TNF-α activity may be inhibited. These results suggest that NP-protein interaction results both in a decrease in protein function and particle activity in the cellular assays tested and this is currently being investigated.
机译:纳米材料由于其独特的特性(例如高表面积和表面反应性)而在许多应用中得到了越来越多的使用。但是,对工人,消费者和暴露于纳米颗粒(NPs)的环境的潜在健康影响尚不清楚。这项研究的目的是调查可能进入人体的NP是否可以吸收蛋白质,以及这种相互作用是否同时影响颗粒和蛋白质功能。与相似剂量的260nm CB相比,14nm炭黑(CB)吸附的细胞因子IL-8和TNF-α明显更多。未涂覆的14nm CB颗粒产生的细胞内钙[Ca〜(2 +)] _i显着增加,大于类似质量剂量的260nm CB。 260nm CB在14nm CB的相当剂量下在A549上皮细胞中产生了ICAM-1表达的增加,并且用TNF-α包被后,与对照细胞相比,260nm CB产生了更多的ICAM-1表达。与14nm CB结合的TNF-α诱导的ICAM-1表达水平不高于对照水平,表明TNF-α活性可能受到抑制。这些结果表明,在测试的细胞测定中,NP-蛋白质相互作用会导致蛋白质功能和颗粒活性的降低,目前正在对此进行研究。

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