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Targeting of porous hybrid silica nanoparticles to cancer cells

机译:多孔杂化二氧化硅纳米粒子靶向癌细胞

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Mesoporous silica nanoparticles functionalized by surface hyperbranching polymerization of polyethylene imine), PEI, were further modified by introducing both fluorescent and targeting moieties, with the aim of specifically targeting cancer cells. Owing to the high abundance of folate receptors in many cancer cells as compared to normal cells, folic acid was used as the targeting ligand. The internalization of the particles in cell lines expressing different levels of folate receptors was studied. Flow cytometry was used to quantify the mean number of nanoparticles internalized per cell. Five times more particles were internalized by cancer cells expressing folate receptors as compared to the normal cells expressing low levels of the receptor. Not only the number of nanoparticles internalized per cell, but also the fraction of cells that had internalized nanoparticles was higher. The total number of particles internalized by the cancer cells was, therefore, about an order of magnitude higher than the total number of particles internalized by normal cells, a difference high enough to be of significant biological importance. In addition, the biospecifkally tagged hybrid PEI-silica particles were shown to be noncytotoxic and able to specifically target folate receptor-expressing cancer cells also under coculture conditions.
机译:通过引入荧光和靶向部分,进一步修饰了通过聚乙烯亚胺(PEI)的表面超支化聚合作用而功能化的介孔二氧化硅纳米粒子,目的是专门靶向癌细胞。由于与正常细胞相比,许多癌细胞中的叶酸受体含量很高,因此叶酸被用作靶向配体。研究了表达不同水平叶酸受体的细胞系中颗粒的内在化。流式细胞仪用于量化每个细胞内化的纳米颗粒的平均数量。与表达低水平受体的正常细胞相比,表达叶酸受体的癌细胞内化的颗粒多五倍。不仅每个细胞内化的纳米颗粒的数量更高,而且内化了纳米颗粒的细胞比例也更高。因此,癌细胞内化的粒子总数比正常细胞内化的粒子总数高大约一个数量级,其差异足够大,具有重要的生物学重要性。另外,经生物特异性标记的杂种PEI-二氧化硅颗粒显示出无细胞毒性,并且在共培养条件下也能够特异性靶向表达叶酸受体的癌细胞。

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