首页> 外文期刊>The journal of gene medicine >Galactosylated 2-hydroxypropyl methacrylamide-s-3-guanidinopropyl methacrylamide copolymer as a small hairpin RNA carrier for inhibiting human telomerase reverse transcriptase expression
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Galactosylated 2-hydroxypropyl methacrylamide-s-3-guanidinopropyl methacrylamide copolymer as a small hairpin RNA carrier for inhibiting human telomerase reverse transcriptase expression

机译:半乳糖基化的2-羟丙基甲基丙烯酰胺-s-3-胍基丙基甲基丙烯酰胺共聚物作为抑制人端粒酶逆转录酶表达的小发夹RNA载体

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Background In the present study, a well-defined glucose and guanidine based copolymer, galactosylated 2-hydroxypropyl methacrylamide-s-3-guanidinopropyl methacrylamide (HPMA-s-GPMA) abbreviated as GGH was prepared and self-assembled with small hairpin RNA (shRNA) to inhibit human telomerase reverse transcriptase (hTERT) gene expression in vitro to develop a shRNA carrier. Methods First, HPMA-s-APMA copolymers were synthesized by aqueous reversible addition-fragmentation chain transfer polymerization, followed by galactosylation and guanidinylation. Then, three target shRNAs containing green fluorescent protein gene as a reporter were combined with GGH to form shRNA/GGH polyplexes. Results GGH copolymers could condense shRNA to form shRNA/GGH polyplex particles with a diameter in the range 122.8-331.6 nm in phosphate-buffered saline, and zeta potential values ranging from +3.7 to +16.5 mV at various charge ratios (N/P). That the cytotoxicity of GGH copolymers was significantly lower than that of PEI in human hepatocellular liver carcinoma cells (HepG2) and human cervix epithelial carcinoma cells. The transfection efficiency of shRNA/GGH polyplexes was higher than that of PEI at a charge ratio of 12 in the HepG2 cell line. Furthermore, shRNA/GGH polyplexes could effectively silence hTERT mRNA expression in serum-free medium (p<0.01) and decrease the aggregation of protein in the medium with the presence of 10% serum. In addition, hTERT mRNA expression in HepG2 cells demosntrate a significant difference between siRNA/GGH polyplexes and blank samples (p<0.05). Conclusions GGH copolymers could integrate advantages relating to galactose content for hepatocyte targeting, guanidino groups for cell penetration and HPMA component for shielding, showing great potential for effective hepatocyte targeting gene delivery.
机译:背景技术在本研究中,制备了明确定义的葡萄糖和胍基共聚物,简称为GGH的半乳糖基化的2-羟丙基甲基丙烯酰胺-s-3-胍基丙基甲基丙烯酰胺(HPMA-s-GPMA),并与小发夹RNA(shRNA)自组装)在体外抑制人端粒酶逆转录酶(hTERT)基因表达以开发shRNA载体。方法首先,通过水可逆加成-断裂链转移聚合反应,然后进行半乳糖基化和胍基化反应,合成HPMA-s-APMA共聚物。然后,将三个含有绿色荧光蛋白基因作为报告基因的靶shRNA与GGH结合形成shRNA / GGH多聚体。结果GGH共聚​​物在磷酸盐缓冲液中可凝结shRNA,形成直径在122.8-331.6 nm范围内的shRNA / GGH多聚体颗粒,在不同的电荷比(N / P)下,ζ电位值在+3.7至+16.5 mV之间。 GGH共聚​​物在人肝细胞肝癌细胞(HepG2)和人宫颈上皮癌细胞中的细胞毒性明显低于PEI。在HepG2细胞系中,荷电比为12时,shRNA / GGH多聚体的转染效率高于PEI。此外,shRNA / GGH复合物可有效沉默无血清培养基中的hTERT mRNA表达(p <0.01),并减少存在10%血清的培养基中蛋白质的聚集。此外,HepG2细胞中的hTERT mRNA表达表明siRNA / GGH多聚体与空白样品之间存在显着差异(p <0.05)。结论GGH共聚​​物具有整合半乳糖含量,靶向肝细胞的胍基基团和用于屏蔽细胞的HPMA成分的优势,显示出有效靶向肝细胞的基因传递潜力。

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