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Synergy in lipofection by cationic lipid mixtures: Superior activity at the gel-liquid crystalline phase transition

机译:阳离子脂质混合物在脂质转染中的协同作用:在凝胶-液晶相变方面具有出色的活性

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摘要

Some mixtures of two cationic lipids including phospholipid compounds (O-ethylphosphatidylcholines), as well as common, commercially available cationic lipids, such as dimethylammonium bromides and trimethylammonium propanes, deliver therapeutic DNA considerably more efficiently than do the separate molecules. In an effort to rationalize this widespread “mixture synergism”, we examined the phase behavior of the cationic lipid mixtures and constructed their binary phase diagrams. Among a group of more than 50 formulations, the compositions with maximum delivery activity resided unambiguously in the solid-liquid crystalline two-phase region at physiological temperature. Thus, the transfection efficacy of formulations exhibiting solid-liquid crystalline phase coexistence is more than 5× higher than that of formulations in the gel (solid) phase, and over twice that of liquid crystalline formulations; phase coexistence occurring at physiological temperature thus appears to contribute significantly to mixture synergism. This relationship between delivery activity and physical property can be rationalized on the basis of the known consequences of lipid phase transitions, namely the accumulation of defects and increased disorder at solid-liquid crystalline phase boundaries. Packing defects at the borders of coexisting solid and liquid crystalline domains, as well as large local density fluctuations, could be responsible for the enhanced fusogenicity of mixtures. This study leads to the important conclusion that manipulating the composition of the lipid carriers so their phase transition takes place at physiological temperature can enhance their delivery efficacy.
机译:包括磷脂化合物(O-乙基磷脂酰胆碱)在内的两种阳离子脂质的某些混合物,以及常见的可商购的阳离子脂质(如二甲基溴化铵和三甲基铵丙烷),比单独的分子更有效地递送治疗性DNA。为了合理化这种广泛的“混合物协同作用”,我们检查了阳离子脂质混合物的相行为并构建了其二元相图。在超过50种制剂的组中,具有最大递送活性的组合物在生理温度下明确地存在于固-液晶两相区域中。因此,表现出固液-液晶相共存的制剂的转染效率比凝胶(固相)制剂的转染效率高5倍以上,是液晶制剂的两倍。因此,在生理温度下发生的有机相共存似乎显着促进了混合物的协同作用。可以基于脂质相转变的已知结果,即缺陷的累积和在固-液晶相边界处的增加的无序性,来合理化输送活性和物理性质之间的这种关系。共存的固态和液晶域边界处的堆积缺陷以及较大的局部密度波动,可能是造成混合物融合性增强的原因。这项研究得出了重要的结论,即操纵脂质载体的组成,使其在生理温度下发生相变,可以增强其递送功效。

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