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Exploring physical stability characteristics of positively charged catanionic vesicle/DNA complexes

机译:探索带正电荷的阳离子小泡/ DNA复合物的物理稳定性特征

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Cationic vesicles fabricated from various novel materials have been recently developed for DNA delivery applications, and the physical stability of the vesicle/DNA complexes played an important role in the transfection efficiency. In this study, positively charged catanionic vesicles composed of hexadecyltrimethylammonium-dodecylsulfate (HTMA-DS), ditetradecyldimethylammonium bromide (DTDAB), and cholesterol were prepared in buffer solution by a forced formation approach, and the association behavior of the catanionic vesicles with two types of DNA molecules with the consideration of the vesicle/DNA complex stability was explored by dynamic light scattering, fluorescence polarization, and DNA electrophoresis techniques. In a buffer solution of pH 7.4, HTMA-DS/DTDAB/cholesterol catanionic vesicles with high physical stability and positive charge character were successfully fabricated. A toxicity examination then implied that the catanionic vesicles have the potential of being applied in transfection applications. It is noted that the catanionic vesicle dispersions became unstable as prepared from a concentrated one by dilution due to the less charged vesicle surfaces and the more rigid vesicular bilayers, which could be explained by the enhanced dissolution of HTMA(+) from the vesicles. The physical stability and charge character of the catanionic vesicle/DNA complexes were found strongly dependent on the mixing ratio of the vesicle to DNA. The formation of the catanionic vesicle/DNA complexes was also confirmed by an electrophoresis analysis. Moreover, not only the electrostatic repulsion between the vesicle/DNA complexes but also the molecular packing of the vesicular bilayers played roles in governing the physical stability of the vesicle/DNA complexes.
机译:最近已经开发了由各种新型材料制成的阳离子囊泡,用于DNA递送应用,并且囊泡/ DNA复合物的物理稳定性在转染效率中起着重要作用。在这项研究中,通过强制形成方法在缓冲溶液中制备了由十六烷基三甲基十二烷基硫酸铵(HTMA-DS),二十四烷基二甲基溴化铵(DTDAB)和胆固醇组成的带正电荷的阳离子囊泡,并且阳离子囊泡与两种类型的阳离子缔合行为通过动态光散射,荧光偏振和DNA电泳技术探索了考虑囊泡/ DNA复合物稳定性的DNA分子。在pH 7.4的缓冲溶液中,成功制备了具有高物理稳定性和正电荷特性的HTMA-DS / DTDAB /胆固醇阳离子小泡。毒性检查表明,阳离子阳离子囊泡具有被应用于转染应用的潜力。应当指出,由于带电荷的囊泡表面较少且囊泡双层更坚硬,因此由稀释的浓缩溶液制备的阳离子阳离子囊泡分散体变得不稳定,这可以通过HTMA(+)从囊泡的溶解增强来解释。发现阳离子阳离子囊泡/ DNA复合物的物理稳定性和电荷特性强烈依赖于囊泡与DNA的混合比。还通过电泳分析确认了阳离子小泡/ DNA复合物的形成。而且,不仅小泡/ DNA复合物之间的静电排斥,而且小泡双层的分子堆积在控制小泡/ DNA复合物的物理稳定性中也起着作用。

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