Bilyy Rostyslav, Bila Galyna, Vishchur Oleg, Vovk Volodymyr, Herrmann Martin
Danylo Halytsky Lviv National Medical University, 79010 Lviv, Ukraine.
Institute of Animal Biology NAAS, 79034 Lviv, Ukraine.
Nanomaterials (Basel). 2020 Jun 29;10(7):1273. doi: 10.3390/nano10071273.
Many nano/microparticles (n/µP), to which our body is exposed, have no physiological way of removal. Our immune system sense these "small particulate objects", and tries to decrease their harmfulness. Since oxidation, phagocytosis and other methods of degradation do not work with small, chemically resistant, and hydrophobic nanoparticles (nP). This applies to soot from air pollution, nano-diamonds from cosmic impact, polishing and related machines, synthetic polymers, and dietary n/µP. Our body tries to separate these from the surrounding tissue using aggregates from neutrophil extracellular traps (NETs). This effectively works in soft tissues where n/µP are entrapped into granuloma-like structures and isolated. The interactions of hydrophobic nanocrystals with circulating or ductal patrolling neutrophils and the consequent formation of occlusive aggregated NETs (aggNETs) are prone to obstruct capillaries, bile ducts in gallbladder and liver, and many more tubular structures. This may cause serious health problems and often fatality. Here we describe how specific size and surface properties of n/µP can activate neutrophils and lead to aggregation-related pathologies. We discuss "natural" sources of n/µP and those tightly connected to unhealthy diets.
我们的身体接触到的许多纳米/微粒(n/µP)没有生理上的清除途径。我们的免疫系统感知这些“小颗粒物体”,并试图降低它们的危害性。由于氧化、吞噬作用和其他降解方法对小的、化学性质稳定的疏水性纳米颗粒(nP)不起作用。这适用于空气污染产生的烟尘、宇宙撞击产生的纳米金刚石、抛光及相关机器产生的颗粒、合成聚合物以及饮食中的n/µP。我们的身体试图利用中性粒细胞胞外陷阱(NETs)形成的聚集体将这些物质与周围组织隔离开来。这在软组织中有效地发挥作用,n/µP被困在肉芽肿样结构中并被隔离。疏水性纳米晶体与循环或导管巡逻的中性粒细胞的相互作用以及由此形成的闭塞性聚集NETs(aggNETs)容易阻塞毛细血管、胆囊和肝脏中的胆管以及许多其他管状结构。这可能导致严重的健康问题,甚至常常导致死亡。在这里,我们描述了n/µP的特定尺寸和表面性质如何激活中性粒细胞并导致与聚集相关的病理状况。我们讨论了n/µP的“天然”来源以及那些与不健康饮食紧密相关的来源。