Institute of Nanochemistry and Nanobiology, Shanghai University, Shanghai, 200444, China.
Beijing National Laboratory for Molecular Sciences, Department of Chemical Biology, College of Chemistry and Molecular Engineering, Peking University, Beijing, 100871, China.
Small. 2019 Sep;15(38):e1901687. doi: 10.1002/smll.201901687. Epub 2019 Jul 26.
The size effect on the cellular uptake of nanoparticles (NPs) has been extensively studied, but it is still not well understood. Herein, a reductionist approach is used to minimize all influencing factors except the particle size, and co-exposure of different-sized silica nanoparticles (SNPs) is adopted instead of the common single exposure. SNPs are found being internalized by Hela cells in serum-free medium mainly via clathrin-dependent endocytosis, thus simplifying the data analysis for reliable attribution to size effects. Remarkably, even though at conditions that the size effects seem very small or even undetectable in the common single exposure experiments, the co-exposure experiments reveal significant size effects due to an unexpected interplay between two different-sized SNPs. Namely, the bigger SNPs significantly promote the cellular uptake of the smaller ones, while the smaller SNPs inhibit the internalization of the bigger ones, with a total uptake increase of the particle number of SNPs in the cells. This strong interplay between different-sized NPs might unavoidably exist within most "single-sized" NP products, whose sizes actually distribute in certain ranges, thus urging reconsideration of the size effect on the cellular uptake of NPs, for the benefits of both bioapplications and safety assessment of nanomaterials.
纳米颗粒(NPs)的细胞摄取的尺寸效应已经得到了广泛的研究,但仍未得到很好的理解。在这里,采用了一种简化的方法,除了粒径之外,尽量减少所有的影响因素,并采用不同粒径的二氧化硅纳米颗粒(SNPs)的共暴露代替常见的单一暴露。研究发现,SNPs 在无血清培养基中主要通过网格蛋白依赖的内吞作用被 Hela 细胞内化,从而简化了数据分析,以便可靠地归因于尺寸效应。值得注意的是,即使在常见的单一暴露实验中,尺寸效应似乎很小甚至无法检测到的条件下,共暴露实验由于两种不同尺寸的 SNPs 之间的意外相互作用,揭示了显著的尺寸效应。也就是说,较大的 SNPs 显著促进了较小的 SNPs 的细胞摄取,而较小的 SNPs 抑制了较大的 SNPs 的内化,导致细胞内 SNPs 的颗粒总数增加。不同尺寸的 NPs 之间这种强烈的相互作用可能不可避免地存在于大多数“单一尺寸”NP 产品中,其尺寸实际上分布在一定的范围内,因此有必要重新考虑 NP 细胞摄取的尺寸效应,这对于生物应用和纳米材料的安全评估都有好处。