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首页> 外文期刊>Chembiochem: A European journal of chemical biology >Synthesis and transfection activity of new cationic phosphoramidate lipids: High efficiency of an imidazolium derivative
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Synthesis and transfection activity of new cationic phosphoramidate lipids: High efficiency of an imidazolium derivative

机译:新型阳离子氨基磷酸酯脂质的合成和转染活性:咪唑衍生物的高效率

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In an effort to enhance the gene-transfer efficiencies of cationic lipids and to decrease their toxicities, a series of new phosphoramidate lipids with chemical similarity to cell membrane phospholipids was synthesised. These lipids contained various cationic headgroups, such as arginine methyl ester, lysine methyl ester, homoarginine methyl ester, ethylenediamine, diaminopropane, guanidinium and imidazolium. Their transfection abilities, either alone or with the co-lipid DOPE, were evaluated in HEK293-T7 cells. We found that imidazolium lipophosphoramidate 7a/DOPE lipoplexes gave the most efficient transfection with low toxicity (75916). The luciferase activity was 100 times higher than that obtained with DOTAP/DOPE lipoplexes. The size, zeta potential, pDNA-liposome interactions and cellular uptakes of the lipoplexes were determined. No definitive correlation between the zeta potential values and the transfection efficiencies could be established, but the uptake of lipoplexes by the cells was correlated with their final transfection efficiencies. Our results show that imidazolium phosphoramidate lipids constitute a potential new class of cationic lipids for gene transfer.
机译:为了增强阳离子脂质的基因转移效率并降低其毒性,合成了一系列与细胞膜磷脂化学相似的新的氨基磷酸酯脂质。这些脂质包含各种阳离子头基,例如精氨酸甲酯,赖氨酸甲酯,高精氨酸甲酯,乙二胺,二氨基丙烷,胍和咪唑鎓。在HEK293-T7细胞中评估了它们单独或与脂质DOPE的转染能力。我们发现,脂质体氨基磷酸咪唑鎓7a / DOPE脂质复合物可产生最有效的转染且毒性低(75916)。荧光素酶活性比用DOTAP / DOPE脂质复合物获得的荧光素酶活性高100倍。测定脂质复合物的大小,ζ电位,pDNA-脂质体相互作用和细胞摄取。 zeta电位值与转染效率之间没有确定的相关性,但细胞对脂质复合物的摄取与其最终转染效率相关。我们的结果表明,氨基磷酸咪唑鎓脂质构成了基因转移的潜在新型阳离子脂质。

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