首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >EFFICIENT TRANSFER OF GENETIC MATERIAL INTO MAMMALIAN CELLS USING STARBURST POLYAMIDOAMINE DENDRIMERS
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EFFICIENT TRANSFER OF GENETIC MATERIAL INTO MAMMALIAN CELLS USING STARBURST POLYAMIDOAMINE DENDRIMERS

机译:星形爆裂多酰胺基树枝状分子有效地将遗传材料转移到哺乳动物细胞中

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Starburst polyamidoamine dendrimers are a new class of synthetic polymers with unique structural and physical characteristics. These polymers were investigated for the ability to bind DNA and enhance DNA transfer and expression in a variety of mammalian cell lines. Twenty different types of polyamidoamine dendrimers were synthesized, and the polymer structure was confirmed using well-defined analytical techniques. The efficiency of plasmid DNA transfection using dendrimers was examined using two reporter gene systems: firefly luciferase and bacterial beta-galactosidase. The transfections were performed using various dendrimers, and levels of expression of the reporter protein were determined. Highly efficient transfection of a broad range of eukaryotic cells and cell lines was achieved with minimal cytotoxicity using the DNA/dendrimer complexes. However, the ability to transfect cells was restricted to certain types of dendrimers and in some situations required the presence of additional compounds, such as DEAE-dextran, that appeared to alter the nature of the complex. A few cell lines demonstrated enhanced transfection with the addition of chloroquine, indicating endosomal localization of the complexes. The capability of a dendrimer to transfect cells appeared to depend on the size, shape, and number of primary amino groups on the surface of the polymer, However, the specific dendrimer most efficient in achieving transfection varied between different types of cells. These studies demonstrate that Starburst dendrimers can transfect a wide variety of cell types in vitro and offer an efficient method for producing permanently transfected cell lines. [References: 27]
机译:Starburst聚酰胺基胺树枝状聚合物是一类新型的合成聚合物,具有独特的结构和物理特征。研究了这些聚合物在各种哺乳动物细胞系中结合DNA以及增强DNA转移和表达的能力。合成了二十种不同类型的聚酰胺基胺树枝状聚合物,并使用定义明确的分析技术确认了聚合物结构。使用两个报告基因系统:萤火虫荧光素酶和细菌β-半乳糖苷酶检查了使用树状聚合物的质粒DNA转染的效率。使用各种树状聚合物进行转染,并确定报告蛋白的表达水平。使用DNA /树状大分子复合物,可以以最小的细胞毒性实现多种真核细胞和细胞系的高效转染。但是,转染细胞的能力仅限于某些类型的树状聚合物,并且在某些情况下需要存在其他化合物,例如DEAE-葡聚糖,这些化合物似乎会改变复合物的性质。少数细胞系通过添加氯喹表现出增强的转染,表明复合体的内体定位。树枝状大分子转染细胞的能力似乎取决于聚合物表面上伯氨基的大小,形状和数目,但是,最有效实现转染的特定树枝状大分子在不同类型的细胞之间有所不同。这些研究表明,Starburst树状聚合物可以在体外转染多种细胞类型,并提供了一种生产永久转染的细胞系的有效方法。 [参考:27]

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