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首页> 外文期刊>Nucleic Acids Research >Trends in lipoplex physical properties dependent on cationic lipidstructure, vehicle and complexation procedure do not correlate withbiological activity
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Trends in lipoplex physical properties dependent on cationic lipidstructure, vehicle and complexation procedure do not correlate withbiological activity

机译:脂质复合物物理性质的趋势取决于阳离子脂质结构,媒介物和络合程序,与生物活性无关

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Using a group of structurally related cytofectins, the effects of different vehicle constituents and mixing techniques on the physical properties and biological activity of lipoplexes were systematically examined. Physical properties were examined using a combination of dye accessibility assays, centrifugation, gel electrophoresis and dynamic light scattering, Biological activity was examined using in vitro transfection. Lipoplexes were formulated using two injection vehicles commonly used for in vivo delivery (PBS pH 7.2 and 0.9% saline), and a sodium phosphate vehicle previously shown to enhance the biological activity of naked pDNA and lipoplex formulations. Phosphate was found to be unique in its effect on lipoplexes. Specifically, the accessible pDNA in lipoplexes formulated with cytofectins containing a gamma -amine substitution in the headgroup was dependent on alkyl side chain length and sodium phosphate concentration, but the same effects were not observed when using cytofectins containing a beta -OH headgroup substitution. The physicochemical features of the phosphate anion, which give rise to this effect in gamma -amine cytofectins, were deduced using a series of phosphate analogs, The effects of the formulation vehicle on transfection were found to be cell type-dependent; however, of the formulation variables examined, the liposome/pDNA mixing method had the greatest effect on transgene expression in vitro, Thus, though predictive physical structure relationships involving the vehicle and cytofectin components of the lipoplex were uncovered, they did not extrapolate to trends in biological activity.
机译:使用一组与结构相关的细胞转染素,系统地研究了不同媒介物成分和混合技术对脂复合物的物理性质和生物学活性的影响。使用染料可及性测定,离心,凝胶电泳和动态光散射的组合检查物理性质,并使用体外转染检查生物活性。使用两种通常用于体内递送的注射媒介物(PBS pH 7.2和0.9%盐水)和以前显示出可增强裸露的pDNA和lipoplex制剂的生物活性的磷酸钠媒介物来配制脂质体。发现磷酸盐对脂质复合物的作用是独特的。具体地,用在头基中包含γ-胺取代的细胞转染剂配制的脂质复合物中可及的pDNA取决于烷基侧链长度和磷酸钠浓度,但是当使用包含β-OH头基取代的细胞转染剂时,未观察到相同的效果。使用一系列磷酸酯类似物推导了在γ-胺细胞转染蛋白中引起这种作用的磷酸根阴离子的理化特征。发现制剂载体对转染的影响是细胞类型依赖性的。然而,在检查的制剂变量中,脂质体/ pDNA混合方法对体外转基因表达的影响最大。因此,尽管未发现涉及脂质复合体的媒介物和细胞转染因子的预测性物理结构关系,但它们并未推断出趋势。生物活性。

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