Natali F, Castellano C, Pozzi D, Congiu Castellano A
INFM-OGG, Grenoble, France.
Biophys J. 2005 Feb;88(2):1081-90. doi: 10.1529/biophysj.104.042788. Epub 2004 Nov 12.
The formation of lipid-DNA (CL-DNA) complexes called lipoplexes, proposed as DNA vectors in gene therapy, is obtained by adding DNA to a solution containing liposomes composed of cationic and neutral lipids. The structural and dynamic properties of such lipoplexes are determined by a coupling between the electrostatic interactions and the elastic parameters of the lipid mixture. An attempt to achieve a better understanding of the structure-dynamics relationship is reported herein. In particular, an elastic neutron scattering investigation of DOTAP-DOPC (dioleoyl trimethylammonium propane-dioleoyl phosphatidylcoline) complexed with DNA is described. Proton dynamics in this oriented CL-DNA lipoplex is found to be strongly dependent upon DNA concentration. Our results show that a substantial modification of the membrane dynamics is accompanied by the balancing of the total net charge inside the complex, together with the consequent displacement of interlayer water molecules.
脂质-DNA(CL-DNA)复合物即脂质体转染复合物,被提议作为基因治疗中的DNA载体,它是通过将DNA添加到含有由阳离子脂质和中性脂质组成的脂质体的溶液中形成的。此类脂质体转染复合物的结构和动力学性质由静电相互作用与脂质混合物的弹性参数之间的耦合作用决定。本文报道了为更好地理解结构-动力学关系所做的尝试。特别描述了对与DNA复合的DOTAP-DOPC(二油酰基三甲基氯化铵-二油酰基磷脂酰胆碱)进行的弹性中子散射研究。发现这种定向的CL-DNA脂质体转染复合物中的质子动力学强烈依赖于DNA浓度。我们的结果表明,复合物内部总净电荷的平衡以及随之而来的层间水分子的位移伴随着膜动力学的实质性改变。