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叶酸-聚乙二醇(PEG)接枝树枝状大分子(G3)与α-环糊精偶联物作为 DNA 载体向肿瘤细胞的潜在应用。

Potential use of folate-polyethylene glycol (PEG)-appended dendrimer (G3) conjugate with α-cyclodextrin as DNA carriers to tumor cells.

机构信息

Department of Physical Pharmaceutics, Graduate School of Pharmaceutical Sciences, Kumamoto University, Kumamoto, Japan.

出版信息

Cancer Gene Ther. 2012 May;19(5):358-66. doi: 10.1038/cgt.2012.9. Epub 2012 Mar 9.

Abstract

We previously reported that polyamidoamine STARBURST dendrimer (generation 3, G3) (dendrimer) conjugate with α-cyclodextrin (α-CyD) having an average degree of substitution of 2.4 of α-CyD (α-CDE) provided remarkable aspects as novel carriers for DNA and small-interfering RNA. To develop novel α-CDE derivatives with tumor cell specificity, we prepared folate-appended α-CDEs (Fol-α-CDEs) and folate-polyethylene glycol (PEG)-appended α-CDEs (Fol-PαCs) with the various degrees of substitution of folate (DSF), and evaluated in vitro and in vivo gene transfer activity, cytotoxicity, cellular association and physicochemical properties. In vitro gene transfer activity of Fol-α-CDEs (G3, DSF 2, 5 or 7) was lower than that of α-CDE (G3) in KB cells, folate receptor (FR)-overexpressing cancer cells. Of the three Fol-PαCs (G3, DSF 2, 5 or 7), Fol-PαC (G3, DSF 5) had the highest gene transfer activity in KB cells. The activity of Fol-PαC (G3, DSF 5) was significantly higher than that of α-CDE (G3) in KB cells, but not in A549 cells, FR-negative cells. Negligible cytotoxicity of the plasmid DNA (pDNA) complex with Fol-PαC (G3, DSF 5) was observed in KB cells or A549 cells up to a charge ratio of 100/1 (carrier/pDNA). The cellular association of the pDNA complex with Fol-PαC (G3, DSF 5) could be mediated by FR on KB cells, resulting in its efficient cellular uptake. Fol-PαC (G3, DSF 5) had a higher binding affinity with folate-binding protein than α-CDE (G3), although the physicochemical properties of pDNA complex with Fol-PαC (G3, DSF 5) were almost comparable to that with α-CDE (G3), although the onset charge ratio and the compaction ability of Fol-PαC (G3, DSF 5) were slightly different. Fol-PαC (G3, DSF 5) tended to show a higher gene transfer activity than α-CDE (G3) 12 h after intratumoral administration in mice. These results suggest that Fol-PαC (G3, DSF 5), not Fol-α-CDEs, could be potentially used as a FR-overexpressing cancer cell-selective DNA carrier.

摘要

我们之前曾报道过,聚酰胺-胺星形聚合物树枝状大分子(第 3 代,G3)(树枝状大分子)与具有平均取代度为 2.4 的α-环糊精(α-CyD)(α-CDE)的结合物作为 DNA 和小干扰 RNA 的新型载体具有显著的特性。为了开发具有肿瘤细胞特异性的新型 α-CDE 衍生物,我们制备了叶酸修饰的 α-CDE(Fol-α-CDE)和叶酸-聚乙二醇(PEG)修饰的 α-CDE(Fol-PαC),并具有不同的叶酸取代度(DSF),并评估了其在体外和体内的基因转导活性、细胞毒性、细胞结合和物理化学性质。在 FR 过表达的癌细胞 KB 细胞中,Fol-α-CDE(G3,DSF2、5 或 7)的体外基因转导活性低于 α-CDE(G3)。在三种 Fol-PαC(G3,DSF2、5 或 7)中,Fol-PαC(G3,DSF5)在 KB 细胞中的基因转导活性最高。Fol-PαC(G3,DSF5)的活性明显高于 KB 细胞中的 α-CDE(G3),但在 FR 阴性细胞 A549 细胞中则不然。在 KB 细胞或 A549 细胞中,Fol-PαC(G3,DSF5)与质粒 DNA(pDNA)复合物的细胞毒性可忽略不计,其载药比高达 100/1(载体/pDNA)。Fol-PαC(G3,DSF5)与 pDNA 复合物的细胞内结合可以通过 FR 介导 KB 细胞,从而使其能够有效地摄取细胞。Fol-PαC(G3,DSF5)与叶酸结合蛋白的结合亲和力高于 α-CDE(G3),尽管 Fol-PαC(G3,DSF5)与 pDNA 复合物的物理化学性质几乎与 α-CDE(G3)相当,尽管 Fol-PαC(G3,DSF5)的起始电荷比和压缩能力略有不同。与 α-CDE(G3)相比,Fol-PαC(G3,DSF5)在小鼠肿瘤内给药 12 小时后,其基因转导活性往往更高。这些结果表明,Fol-PαC(G3,DSF5)而非 Fol-α-CDE 可能可作为 FR 过表达癌细胞选择性 DNA 载体。

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