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首页> 外文期刊>The journal of gene medicine >Lipid-mediated siRNA delivery down-regulates exogenous gene expression in the mouse brain at picomolar levels
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Lipid-mediated siRNA delivery down-regulates exogenous gene expression in the mouse brain at picomolar levels

机译:脂质介导的siRNA传递以皮摩尔水平下调小鼠大脑中的外源基因表达

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Background Efficient in vivo vectors are needed to exploit the enormous potential of RNA interference (RNAi). Such methods require optimisation for specific delivery routes, tissues and usages. We tested the capacity of different non-viral vectors and formulation methods for inhibition of exogenous (luciferase) gene expression when used to introduce small interfering RNA (siRNA) into the mouse brain in vivo.Methods Polyethylenimine (PEI)-based polyplexes and JetSI(TM) (a mixture of cationic lipids)-based lipoplexes were used to vectorise plasmid DNA encoding the firefly Photinus pyralis luciferase gene and picomolar amounts of siRNA directed against this gene. Two controls were used, DNA encoding an unrelated luciferase from Renilla reniformis and a mutated siRNA sequence.Results First, we found that linear PEI, although efficient for delivering nucleic acids to cells, did not permit development of siRNA activity within the dose range tested (<0.5 pmol). Second, various combinations of cationic lipids were tried and the best formulation was found to be a combination of JetSI(TM) with the fusogenic lipid dioleoylphosphatidylethanolamine (DOPE). Efficient inhibition of target, firefly luciferase was obtained with exceedingly low amounts of siRNA: 78 +/- 6% inhibition at 24 h post-transfection with 0.2 pmol siRNA. This inhibition was dose-dependent and specific. No effect was seen on the control gene, co-transfected Renilla luciferase, and the control mutated siRNA sequence had no effect on the targeted firefly luciferase.Conclusions We have optimised an efficient cationic lipoplex method for delivery of siRNA into the newborn mouse brain. Specific inhibition of exogenous target gene expression is obtained with picomolar amounts of siRNA. Copyright (C) 2004 John Wiley Sons, Ltd.
机译:背景技术需要有效的体内载体来开发RNA干扰(RNAi)的巨大潜力。此类方法需要针对特定​​的递送途径,组织和用途进行优化。我们测试了用于将小干扰RNA(siRNA)引入小鼠体内的不同非病毒载体和配制方法对外源(萤光素酶)基因表达的抑制能力。方法基于聚乙烯亚胺(PEI)的复合物和JetSI(基于TM)(阳离子脂质的混合物)的脂质复合物用于向量化编码萤火虫萤火虫萤光素酶基因的质粒DNA和针对该基因的皮摩尔量的siRNA。使用了两个对照,即编码来自肾性肾小球菌的不相关的荧光素酶的DNA和siRNA突变的序列。结果首先,我们发现线性PEI尽管可以有效地将核酸递送至细胞,但在所测试的剂量范围内并不能发展siRNA的活性( <0.5 pmol)。其次,尝试了阳离子脂质的各种组合,发现最佳的配方是JetSI™与融合脂质二油酰基磷脂酰乙醇胺(DOPE)的组合。用极少量的siRNA获得了对目标萤火虫荧光素酶的有效抑制:0.2 pmol siRNA转染后24 h,抑制率为78 +/- 6%。这种抑制是剂量依赖性的和特异性的。对对照基因,共转染的海藻荧光素酶无影响,而对照突变的siRNA序列对靶向萤火虫荧光素酶无影响。结论我们优化了一种有效的阳离子脂质复合物方法,用于将siRNA递送至新生小鼠脑中。用皮摩尔量的siRNA获得对外源靶基因表达的特异性抑制。版权所有(C)2004 John Wiley Sons,Ltd.

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