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Synthesis and evaluation of a glutamic acid-modified hPAMAM complex as a promising versatile gene carrier

机译:谷氨酸改性的HPAMAM复合物的合成与评价为有前途的通用基因载体

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Hyperbranched poly(amidoamine) (HPAMAM), structurally analogous to polyamidoamine dendrimer (PAMAM) dendrimers, has been suggested to be an effective carrier for gene delivery. In the present study, glutamic acid-modified hPAMAM was developed as a novel non-viral gene carrier for the first time. The hPAMAM was synthesized by using a modified one-pot method. DNA was found to be bound to hPAMAM at different weight ratios (W-hPAMAM/W-DNA). The resulting HPAMAM-Glu20 was able to efficiently protect the encapsulated-DNA against degradation for over 2 h. In addition to low cytotoxicity, the transfection efficiency of hPAMAM-Glu20 represented much higher (p < 0.05) than that of Lipofectamine 2000 in both MCF7 and MDA-MB231 cells. Cellular uptake of the hPAMAM-Glu20 in MDA-MB231 cells, 173.56 +/- 1.37%, was significantly higher than that of MCF7 cells, 65.00 +/- 1.73% (p < 0.05). The results indicated that hPAMAM-Glu20-mediated gene delivery to breast cancer cells is a feasible and effective strategy that may provide a new therapeutic avenue as a non-viral gene delivery carrier. In addition, it was found that hPAMAM-glutamic amino acid (Glu)-based gene delivery is an economical, effective and biocompatible method.
机译:已经表明,在结构上类似于聚酰胺胺树枝状体(PAMAM)树枝状体(PAMAM)树枝状过分器的超支化聚(酰胺)(HPAMAM)是基因递送的有效载体。在本研究中,首次开发谷氨酸改性的HPamam作为新型非病毒基因载体。通过使用改性的单罐方法合成HPAMAM。发现DNA以不同重量比(W-HPAMAM / W-DNA)结合于HPAMAM。得到的HPamam-glu20能够有效地保护包封的DNA免于降解超过2小时。除了低细胞毒性外,HPAMAM-GLU20的转染效率比MCF7和MDA-MB231细胞中的Lipofectamine 2000的转染效率高得多(P <0.05)。 MDA-MB231细胞中HPAMAM-GLU20的细胞吸收,173.56 +/- 1.37%显着高于MCF7细胞,65.00 +/- 1.73%(P <0.05)。结果表明,HPamam-glu20介导的基因递送至乳腺癌细胞是一种可行且有效的策略,可提供作为非病毒基因递送载体的新治疗大道。此外,发现HPamam-谷氨酸氨基酸(Glu)基因递送是一种经济,有效和生物相容性的方法。

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