Ciani Laura, Ristori Sandra, Salvati Anna, Calamai Luca, Martini Giacomo
Department of Chemistry, University of Florence, Polo Scientifico, Via della Lastruccia, 3 50019 Sesto F. no, Florence, Italy.
Biochim Biophys Acta. 2004 Jul 1;1664(1):70-9. doi: 10.1016/j.bbamem.2004.04.003.
Non-viral vectors represent an important alternative in gene delivery. Among these vectors, cationic liposomes are widely studied, because of their ability to form stable complexes with DNA fragments (lipoplexes). In the present work, we report on the characterization by electron spin resonance (ESR) spectroscopy and zeta potential measurements of cationic liposomes and of their complexes with oligonucleotides. Liposomes were made with a zwitterionic lipid, DOPE, and a cationic lipid, either DOTAP or DC-Chol. Oligonucleotides were the 20-base single strand polyA, the 20-base single strand polyT, and the corresponding double strand dsAT. The zeta potential as a function of the oligonucleotide/lipid+ ratio gave an S-shaped titration curve. Well-defined surface potential changes took place upon charge compensation between the cationic lipid heads and the phosphate groups on the oligonucleotides. The inversion point depended on the specific system under study. The bilayer properties and the changes that occurred with the incorporation of DNA fragments were also monitored by ESR spectroscopy of appropriately tailored spin probes. For all the systems investigated, the ESR spectra showed that no major alteration took place after lipoplex formation and molecular packing remained substantially unchanged. Both zeta potential and ESR measurements were in favor of an external mode of packing of the lipoplexes.
非病毒载体是基因递送中的一种重要替代物。在这些载体中,阳离子脂质体因其能够与DNA片段形成稳定复合物(脂质体复合物)而被广泛研究。在本研究中,我们报告了通过电子自旋共振(ESR)光谱和zeta电位测量对阳离子脂质体及其与寡核苷酸复合物的表征。脂质体由两性离子脂质DOPE和阳离子脂质DOTAP或DC-Chol制成。寡核苷酸为20碱基的单链聚A、20碱基的单链聚T以及相应的双链dsAT。zeta电位作为寡核苷酸/脂质 + 比例的函数给出了一条S形滴定曲线。在阳离子脂质头部与寡核苷酸上的磷酸基团之间进行电荷补偿时,发生了明确的表面电位变化。反转点取决于所研究的特定体系。还通过对适当定制的自旋探针进行ESR光谱监测了双层性质以及DNA片段掺入后发生的变化。对于所有研究的体系,ESR光谱表明脂质体复合物形成后没有发生重大改变,分子堆积基本保持不变。zeta电位和ESR测量均支持脂质体复合物的外部堆积模式。