首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Lamellar to inverted hexagonal mesophase transition in DNA complexes with calamitic, discotic, and cubic shaped cationic lipids
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Lamellar to inverted hexagonal mesophase transition in DNA complexes with calamitic, discotic, and cubic shaped cationic lipids

机译:带有cal裂,盘状和立方形阳离子脂质的DNA复合物中的层状到反向六角形中间相过渡

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In this study, we report on the lipid tail molecular shape/size effect on the mesophase self-assembly behaviors of various cationic lipids complexed with double-stranded DNA. The molecular shape of the cationic lipids was tailored from rodlike (a cyanobiphenyl imidazolium salt) to discotic (a triphenylene imidazolium salt), and finally to cubic [a polyhedral oligomeric silsesquioxane (POSS) imidazolium salt]. An increase in the cross-sectional area of the hydrophobic tails with respect to the hydrophilic imidazolium head induced a negative spontaneous curvature of the cationic lipids. As a result, a morphological change from lamello-columnar (L-alpha(C)) phase for the DNA-cyanobiphenyl imidazolium salt(DNA-rod) and DNA-triphenylene imidazolium salt(DNA-disk) complexes to an inverted hexagonal columnar (H-II(C)) phase for the DNA-POSS imidazolium salt (DNA-cube) complex was observed. The DNA-rod complex had a typical smectic A (SmA) L-alpha(C) morphology, whereas the DNA-disk complex had a double lamello-columnar liquid crystalline phase. However, when the lipid tail changed to POSS, an H-II(C) morphology was achieved. These morphological changes were successfully characterized by X-ray diffraction and transmission electron microscopy. We expect that these liquid crystalline and crystalline DNA hybrid materials may become potential functional materials for various applications such as organic microelectronics and gene transfection.
机译:在这项研究中,我们报告了脂质尾巴分子形状/大小对与双链DNA复合的各种阳离子脂质的中间相自组装行为的影响。阳离子脂质的分子形状从棒状(氰基联苯咪唑盐)变成盘状(三亚苯基咪唑盐),最后变成立方[多面体低聚倍半硅氧烷(POSS)咪唑盐]。相对于亲水性咪唑鎓头,疏水尾部的横截面积的增加引起阳离子脂质的负自发曲率。结果,DNA-氰基联苯咪唑盐(DNA-rod)和DNA-三亚苯基咪唑盐(DNA-disk)复合物的层状柱(L-alpha(C))形态变为倒置的六角柱状(观察到DNA-POSS咪唑鎓盐(DNA-cube)复合物的H-II(C)相。 DNA杆复合物具有典型的近晶A(SmA)L-alpha(C)形态,而DNA磁盘复合物具有双层lamello-columnar液晶相。但是,当脂质尾巴变成POSS时,获得了H-II(C)形态。通过X射线衍射和透射电子显微镜成功地表征了这些形态变化。我们期望这些液晶和晶体DNA杂化材料可能成为潜在的功能材料,用于各种应用,例如有机微电子学和基因转染。

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