Center for Medical Research, Medical University of Graz, Stiftingtalstr. 24, A-8010 Graz, Austria.
Environ Toxicol Pharmacol. 2016 Sep;46:90-94. doi: 10.1016/j.etap.2016.07.003. Epub 2016 Jul 11.
Exposure of the general population to nanoparticles (NPs) occurs mainly by dermal and oral uptake of consumer products, food and pharmaceutical applications and by inhalation. While cellular uptake mechanisms have been intensely studied it is less well known how NPs are eliminated from the cells. Quantification of the amount of excreted particles is complicated by inherent limitations of the technologies that are suitable to study excretion. Among the mechanisms to decrease intracellular particle concentration active excretion by lysosomal exocytosis appears to be the most important. Lysosomal localization, small particle size and high intracellular and low extracellular particle levels facilitate exocytosis. Transporting epithelia, cells with secretory function and highly proliferative cells are expected to be able to decrease intracellular particle concentrations more efficiently than cells lacking these characteristics. As NPs can influence the extent of exocytosis it is possible that NPs can stimulate their excretion.
一般公众主要通过皮肤和口腔摄入消费品、食品和药物应用以及吸入接触纳米颗粒(NPs)。虽然细胞摄取机制已被深入研究,但纳米颗粒如何从细胞中排出的情况了解较少。由于适合研究排泄的技术存在固有局限性,因此排泄颗粒的定量很复杂。在减少细胞内颗粒浓度的机制中,溶酶体胞吐作用的主动排泄似乎是最重要的。溶酶体定位、小颗粒尺寸以及高细胞内和低细胞外颗粒水平有利于胞吐作用。预计具有分泌功能和高度增殖能力的转运上皮细胞比缺乏这些特性的细胞能够更有效地降低细胞内颗粒浓度。由于 NPs 可以影响胞吐作用的程度,因此 NPs 有可能刺激它们的排泄。
Environ Toxicol Pharmacol. 2016-7-11
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