Süleymanoglu Erhan
The Slovak Academy of Sciences, Institute of Experimental Physics, Department of Biophysics, Košice, Slovak Republic; ; Swammerdam Institute for Life Sciences, BioCentrum Amsterdam, University of Amsterdam, 1098 SM Amsterdam, Netherlands.
Int J Biomed Sci. 2006 Dec;2(4):344-55.
Thermodynamic features related to preparation and use of self-assemblies formed between multilamellar and unilamellar zwitterionic liposomes and polynucleotides with various conformation and sizes are presented. The divalent metal cation induced adsorption, aggregation and adhesion between single- and double-stranded polyribonucleotides and phosphatidylcholine vesicles was followed by differential adiabatic scanning microcalorimetry. Nucleic acid condensation and compaction mediated by Mg(2+) was followed, with regard to interfacial interaction with unilamellar vesicles. Microcalorimetric measurements of synthetic phospholipid vesicles and poly(ribo) nucleotides and their ternary complexes with inorganic cations were used to build the thermodynamic model of their structural transitions. The increased thermal stability of the phospholipid bilayers is achieved by affecting their melting transition temperature by nucleic acid induced electrostatic charge screening. Measurements give evidence for the stabilization of polynucleotide helices upon their association with liposomes in presence of divalent metal cations. Such an induced aggregation vesicles either leads to heterogeneous multilamellar DNA-lipid arrangements, or to DNA-induced bilayer destabilization and lipid fusion. The further employment of these polyelectrolyte nanostructures as an improved formulations in therapeutic gene delivery trials, as well as in DNA chromatography is discussed.
本文介绍了与多层和单层两性离子脂质体与各种构象和大小的多核苷酸之间形成的自组装体的制备和使用相关的热力学特征。通过差示绝热扫描量热法研究了二价金属阳离子诱导的单链和双链多核糖核苷酸与磷脂酰胆碱囊泡之间的吸附、聚集和粘附。研究了Mg(2+)介导的核酸缩合和压实过程,以及与单层囊泡的界面相互作用。通过测量合成磷脂囊泡、聚(核糖)核苷酸及其与无机阳离子的三元复合物的微量热,建立了它们结构转变的热力学模型。通过核酸诱导的静电荷筛选影响磷脂双层的熔融转变温度,从而提高了磷脂双层的热稳定性。测量结果表明,在二价金属阳离子存在下,多核苷酸螺旋与脂质体结合时会发生稳定。这种诱导的聚集囊泡要么导致异质多层DNA-脂质排列,要么导致DNA诱导的双层不稳定和脂质融合。还讨论了这些聚电解质纳米结构在治疗性基因递送试验以及DNA色谱中作为改进制剂的进一步应用。