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首页> 外文期刊>Nucleic acids research >Regulation of in vitro Gene Expression Using Antisense Oligonucleotides or Antisense Expression Plasmids Transfected Using Starburst PAMAM Dendrimers
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Regulation of in vitro Gene Expression Using Antisense Oligonucleotides or Antisense Expression Plasmids Transfected Using Starburst PAMAM Dendrimers

机译:使用反义寡核苷酸或使用Starburst PAMAM树状大分子转染的反义表达质粒调节体外基因表达

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Starburst polyamidoamine (PAMAM) dendrimers are a new type of synthetic polymer characterized by a branched spherical shape and a high density surface charge. We have investigated the ability of these dendrimers to function as an effective delivery system for antisense oligonucleotides and ‘antisense expression plasmids' for the targeted modulation of gene expression. Dendrimers bind to various forms of nucleic acids on the basis of electrostatic interactions, and the ability of DNA-dendrimer complexes to transfer oligonucleotides and plasmid DNA to mediate antisense inhibition was assessed in an in vitro cell culture system. Cell lines that permanently express luciferase gene were developed using dendrimer mediated transfection. Transfections of antisense oligonucleotides or antisense cDNA plasmids into these cell lines using dendrimers resulted in a specific and dose dependent inhibition of luciferase expression. This inhibition caused ~25–50% reduction of baseline luciferase activity. Binding of the phosphodiester oligonucleotides to dendrimers also extended their intracellular survival. While dendrimers were not cytotoxic at the concentrations effective for DNA transfer, some non-specific suppression of luciferase expression was observed. Our results indicate that Starburst dendrimers can be effective carriers for the introduction of regulatory nucleic acids and facilitate the suppression of the specific gene expression.
机译:星爆型聚酰胺基胺(PAMAM)树状聚合物是一种新型的合成聚合物,其特征在于具有分支的球形形状和高密度的表面电荷。我们已经研究了这些树状分子作为反义寡核苷酸和“反义表达质粒”的有效传递系统的功能,以针对性地调控基因表达。树状聚合物根据静电相互作用与各种形式的核酸结合,并且在体外细胞培养系统中评估了DNA树状聚合物复合物转移寡核苷酸和质粒DNA介导反义抑制的能力。使用树状大分子介导的转染开发了永久表达萤光素酶基因的细胞系。使用树状聚合物将反义寡核苷酸或反义cDNA质粒转染到这些细胞系中导致荧光素酶表达的特异性和剂量依赖性抑制。这种抑制导致基线荧光素酶活性降低了约25-50%。磷酸二酯寡核苷酸与树状聚合物的结合也延长了它们的细胞内存活。虽然树状大分子在对DNA转移有效的浓度下没有细胞毒性,但观察到萤光素酶表达的一些非特异性抑制。我们的结果表明,Starburst树状聚合物可作为有效的载体,用于引入调节核酸并促进特定基因表达的抑制。

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