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Modulationof Silica Nanoparticle Uptake into Human Osteoblast Cells by Variationof the Ratio of Amino and Sulfonate Surface Groups: Effects of Serum

机译:调制变化对人成骨细胞中二氧化硅纳米颗粒的吸收和磺酸盐表面基团比率的测定:血清的影响

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摘要

To study the importance of the surface charge for cellular uptake of silica nanoparticles (NPs), we synthesized five different single- or multifunctionalized fluorescent silica NPs (FFSNPs) by introducing various ratios of amino and sulfonate groups into their surface. The zeta potential values of these FFSNPs were customized from highly positive to highly negative, while other physicochemical properties remained almost constant. Irrespective of the original surface charge, serum proteins adsorbed onto the surface, neutralized the zeta potential values, and prevented the aggregation of the tailor-made FFSNPs. Depending on the surface charge and on the absence or presence of serum, two opposite trends were found concerning the cellular uptake of FFSNPs. In the absence of serum, positively charged NPs were more strongly accumulated by human osteoblast (HOB) cells than negatively charged NPs. In contrast, in serum-containing medium, anionic FFSNPs were internalized by HOB cells more strongly, despite the similar size and surface charge of all types of protein-covered FFSNPs. Thus, at physiological condition,when the presence of proteins is inevitable, sulfonate-functionalizedsilica NPs are the favorite choice to achieve a desired high rateof NP internalization.
机译:为了研究表面电荷对二氧化硅纳米颗粒(NPs)的细胞摄取的重要性,我们通过将各种比例的氨基和磺酸盐基团引入其表面,从而合成了五种不同的单官能或多功能荧光二氧化硅NP(FFSNP)。这些FFSNP的zeta电位值从高正值定制为高负值,而其他理化特性几乎保持不变。不管最初的表面电荷如何,血清蛋白都会吸附到表面上,中和zeta电位值,并阻止特制FFSNP的聚集。根据表面电荷和血清的存在与否,发现关于FFSNPs的细胞摄取有两个相反的趋势。在没有血清的情况下,人成骨细胞(HOB)细胞比带负电荷的NP更强地积累带正电荷的NP。相反,在含血清的培养基中,尽管所有类型的蛋白质覆盖的FFSNPs的大小和表面电荷相似,但HOB细胞却更强烈地将阴离子FFSNPs内在化。因此,在生理条件下,当不可避免地存在蛋白质时,将磺酸盐官能化二氧化硅NP是达到所需高速率的首选NP内部化。

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