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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Biophysical and lipofection studies of DOTAP analogs
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Biophysical and lipofection studies of DOTAP analogs

机译:DOTAP类似物的生物物理和脂质转染研究

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In order to investigate the relationship between lipid structure and liposome-mediated gene transfer, we have studied biophysical parameters and transfection properties of monocationic DOTAP analogs, systematically modified in their nonpolar hydrocarbon chains. Stability, size and (by means of anisotropy profiles) membrane fluidity of liposomes and lipoplexes were determined, and lipofection efficiency was tested in a luciferase reporter gene assay. DOTAP analogs were used as single components or combined with a helper lipid, either DOPE or cholesterol. Stability of liposomes was a precondition for formation of temporarily stable lipoplexes. Addition of DOPE or cholesterol improved liposome and lipoplex stability. Transfection efficiencies of lipoplexes based on pure DOTAP analogs could be correlated with stability data and membrane fluidity at transfection temperature. Inclusion of DOPE led to rather uniform transfection and anisotropy profiles, corresponding to lipoplex stability. Cholesterol-containing lipoplexes were generally stable, showing high transfection efficiency at low relative fluidity. Our results demonstrate that the efficiency of gene transfer mediated by monocationic lipids is greatly influenced by lipoplex biophysics due to lipid composition. The measurement of fluorescence anisotropy is an appropriate method to characterize membrane fluidity within a defined system of liposomes or lipoplexes and may be helpful to elucidate structure-activity relationships.
机译:为了研究脂质结构与脂质体介导的基因转移之间的关系,我们研究了在其非极性烃链中系统修饰的单阳离子DOTAP类似物的生物物理参数和转染特性。测定脂质体和脂质复合物的稳定性,大小和(通过各向异性分布)膜流动性,并在荧光素酶报道基因试验中测试脂质转染效率。 DOTAP类似物用作单一成分或与DOPE或胆固醇的辅助脂质结合使用。脂质体的稳定性是形成暂时稳定的脂质复合物的前提。加入DOPE或胆固醇可改善脂质体和脂质复合物的稳定性。基于纯DOTAP类似物的脂质体的转染效率可以与转染温度下的稳定性数据和膜流动性相关。包含DOPE导致相当均匀的转染和各向异性,与lipoplex稳定性相对应。含胆固醇的脂质复合物通常是稳定的,在低相对流动性下显示出高转染效率。我们的结果表明,单阳离子脂质介导的基因转移效率受脂质复合物的脂质复合物生物学影响很大。荧光各向异性的测量是表征脂质体或脂质复合物定义系统中膜流动性的合适方法,可能有助于阐明结构-活性关系。

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