Department of Chemistry, University of Illinois at Urbana-Champaign , Urbana, Illinois 61801, United States.
Beckman Institute, University of Illinois at Urbana-Champaign , Urbana, Illinois 61801, United States.
ACS Nano. 2015 Oct 27;9(10):10227-36. doi: 10.1021/acsnano.5b03909. Epub 2015 Sep 14.
The functional groups displayed on the surface of nanoparticles (NP) are known to play an important role in NP cellular uptake. However, only a few systematic studies have been reported to address their role, in large part because of the difficulty in regularly varying the number and structure of the functional groups on the NP surface. We employ a bottom-up strategy for the synthesis of water-soluble organic nanoparticles (ONPs) with different sizes and functional groups, using readily available monomers. Utilizing flow cytometry, we measured the HeLa cell uptake efficiency of ONPs that contain side-chains with a different (a) length, (b) number of hydroxyl groups, and (c) number of methyl groups. We have also investigated ONPs with the same functional groups but different sizes. The potential formation and influence of protein corona was examined using the same approach but in the presence of serum. The results demonstrate that under both serum and serum-free conditions the surface-exposed functional groups determine the efficiency of cellular uptake of the particles, and that the trend can be partially predicted by the lipophilicity of the polymeric ONP's repeating units. Also, by using a "masking" strategy, these particles' cellular uptake behavior could be altered conveniently.
纳米粒子(NP)表面显示的官能团已知在 NP 细胞摄取中起着重要作用。然而,由于难以定期改变 NP 表面上官能团的数量和结构,因此仅报道了少数系统研究来解决其作用。我们采用自下而上的策略,使用现成的单体合成具有不同大小和官能团的水溶性有机纳米粒子(ONP)。利用流式细胞术,我们测量了含有不同(a)长度、(b)羟基数量和(c)甲基数量侧链的 ONP 对 HeLa 细胞的摄取效率。我们还研究了具有相同官能团但不同大小的 ONP。使用相同的方法但在存在血清的情况下检查了蛋白质冠的潜在形成和影响。结果表明,在血清和无血清条件下,表面暴露的官能团决定了颗粒的细胞摄取效率,并且该趋势可以部分通过聚合物 ONP 的重复单元的疏水性来预测。此外,通过使用“掩蔽”策略,可以方便地改变这些颗粒的细胞摄取行为。