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首页> 外文期刊>Saudi Pharmaceutical Journal >Interaction of folate – Linked silica nanoparticles with HeLa cells: Analysis and investigation the effect of polymer length
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Interaction of folate – Linked silica nanoparticles with HeLa cells: Analysis and investigation the effect of polymer length

机译:叶酸硅纳米粒子与HeLa细胞的相互作用:分析和调查聚合物长度的影响

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This work is a continuance to our previous findings on silica nanoparticles (NPs) modified with diamine polymer, carboxymethyl-β-cyclodextrin (CM-β-CD) and folic acid (FA), respectively. When four different polymer lengths (D230, D400, D2000 and D4000) were analyzed, the release rate of anticancer agents was inversely related to the polymer length while the cell toxicity was directly related to the length. We investigate here the effect of polymer length on the extent of cellular interaction with HeLa cells. The mean particle size, the polydispersity (PD) and the zeta potential of the NPs were measured using dynamic light scattering (DLS), the quantitative analysis of the extent of NPs' interaction was studied using fluorescence microscopy and transmission electron microscopy (TEM) was used to qualitatively visualize them. The particle size increased by increasing the polymer length, the PD values were within the acceptable ranges (0.3?0.5) and the zeta potential was in the range of (?16 to ?20?mV). A direct relation was observed between the fluorescence intensity and the length. All modified NPs were capable of entering the cells, however a greater number of NPs with long polymers was observed compared to short polymers. Thus, the direct relation of polymer length to the cell toxicity is due to the release rate behavior and the enhanced interaction of NPs which possess long polymers.
机译:这项工作是我们在用二胺聚合物,羧甲基-β-环糊精(CM-β-CD)和叶酸(FA)改性的二氧化硅纳米颗粒(NPS)上的先前发现的延续。当分析四种不同的聚合物长度(D230,D400,D2000和D4000)时,抗癌剂的释放速率与聚合物长度与聚合物长度相反,而细胞毒性与长度直接相关。我们研究了聚合物长度对与HeLa细胞的细胞相互作用程度的影响。使用动态光散射(DLS)测量NPS的平均粒度,多分散性(Pd)和Zeta电位,使用荧光显微镜和透射电子显微镜(TEM)研究了NPS相互作用程度的定量分析用于定性可视化它们。通过增加聚合物长度来增加粒度,Pd值在可接受的范围内(0.3≤0.5),ζ电位在(α16至20≤mv)的范围内。在荧光强度和长度之间观察到直接关系。所有修饰的NPS都能够进入细胞,然而,与短聚合物相比,观察到具有长聚合物的较多具有长聚合物的NPS。因此,聚合物长度与细胞毒性的直接关系是由于释放速率行为和具有长聚合物的NP的增强相互作用。

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