The microstructure of DNA-egg yolk phosphatidylcholine-gemini surfactants complexes: effect of the spacer length.

Daniela Uhríková, Petra Pullmannová, Adriana Sabíková, Ferdinand Devínsky, Sergio S Funari
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引用次数: 3

Abstract

Background: The length of spacer of gemini surfactants affects the DNA packing in DNA-neutral phospholipid-gemini surfactant complexes.

Methods: The microstructure of complexes DNA-egg yolk phosphatidylcholine (EYPC)-alkane-α,ω-diyl-bis(dodecyl\xaddimethylammonium bromides) (CnGS, spacer n=2-12, n is even) was studied using small angle X-ray diffraction.

Results: At EYPC:CnGS=1:1 mol/mol, the condensed lamellar phase was identified in complexes with CnGS, n=2-4, whereas longer spacer (n≥6) induced a hexagonal phase. The condensed lamellar phase Lαc was observed in the range 2\≤ EYPC:GnGS≤10 (mol/mol) in all complexes. The distance between adjacent DNA strands increases linearly with decreasing surface charge density of EYPC-CnGS vesicles. We determined the increase in dDNA 0.40±0.03 nm/1 mol of EYPC from the slope of dDNA=f (molEYPC/molCnGS) in the range of molar ratios 2≤EYPC:CnGS≤5. At lower surface charge density, EYPC:CnGS>5 mol/mol, the length of CnGS spacer (n=6-10) modulates the DNA-DNA distance.

Conclusions: Both the short spacer of CnGS and the low molar ratio EYPC:CnGS result in the closest DNA-DNA packing. A high surface charge density of membrane was reported as a key parameter for transfection efficiency of Lαc phase-forming complexes.

dna -卵黄磷脂酰胆碱-gemini表面活性剂复合物的微观结构:间隔长度的影响。
背景:gemini表面活性剂的间隔长度影响DNA中性磷脂-gemini表面活性剂复合物中DNA的填充。方法:用小角x射线衍射研究了dna -卵黄磷脂酰胆碱(EYPC)-烷烃-α,ω-二烷基-二(十二烷基\二甲基溴化铵)(CnGS,间隔段n=2-12, n为偶数)配合物的微观结构。结果:在EYPC:CnGS=1:1 mol/mol时,与CnGS配合物形成凝聚层状相,n=2 ~ 4,而较长的间隔物(n≥6)形成六方相。所有配合物在2\≤EYPC:GnGS≤10 (mol/mol)范围内均可见到凝聚层状相Lαc。相邻DNA链之间的距离随着EYPC-CnGS囊泡表面电荷密度的降低而线性增加。在摩尔比2≤EYPC:CnGS≤5的范围内,由dDNA=f (molEYPC/molCnGS)的斜率确定了dDNA增加0.40±0.03 nm/1 molEYPC。在较低表面电荷密度下,EYPC:CnGS>5 mol/mol时,CnGS间隔段长度(n=6 ~ 10)调节DNA-DNA距离。结论:CnGS的间隔时间短,epypc:CnGS的摩尔比低,都能使DNA-DNA的堆积更紧密。高膜表面电荷密度是影响l - αc相形成配合物转染效率的关键参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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