Department of Chemistry-Biology, University of Québec at Trois-Rivières, Trois-Rivières, Québec, Canada.
Biomacromolecules. 2011 Feb 14;12(2):511-7. doi: 10.1021/bm1013102. Epub 2010 Dec 30.
Dendrimers are unique synthetic macromolecules of nanometer dimensions with a highly branched structure and globular shape. Among dendrimers, polyamidoamine (PAMAM) have received most attention as potential transfection agents for gene delivery, because these macromolecules bind DNA at physiological pH. The aim of this study was to examine the interaction of calf-thymus DNA with several dendrimers of different compositions, such as mPEG-PAMAM (G3), mPEG-PAMAM (G4), and PAMAM (G4) at physiological conditions, using constant DNA concentration and various dendrimer contents. FTIR, UV-visible, and CD spectroscopic methods, as well as atomic force microscopy (AFM), were used to analyze the macromolecule binding mode, the binding constant, and the effects of dendrimer complexation on DNA stability, aggregation, condensation, and conformation. Structural analysis showed a strong dendrimer-DNA interaction via major and minor grooves and the backbone phosphate group with overall binding constants of K(mPEG-G3) = 1.5 (±0.5) × 10(3) M(-1), K(mPEG-G4) = 3.4 (±0.80) × 10(3) M(-1), and K(PAMAM-G4) = 8.2 (±0.90) × 10(4) M(-1). The order of stability of polymer-DNA complexation is PAMAM-G4 > mPEG-G4 > mPEG-G3. Both hydrophilic and hydrophobic interactions were observed for dendrimer-DNA complexes. DNA remained in the B-family structure, while biopolymer particle formation and condensation occurred at high dendrimer concentrations.
树状高分子是具有高度支化结构和球形的纳米尺寸的独特合成大分子。在树状高分子中,聚酰胺-胺(PAMAM)由于在生理 pH 值下与 DNA 结合,因此作为基因传递的潜在转染剂受到了最多的关注。本研究旨在研究几种不同组成的树状高分子与小牛胸腺 DNA 的相互作用,例如甲氧基聚乙二醇-聚酰胺-胺(G3)、甲氧基聚乙二醇-聚酰胺-胺(G4)和 PAMAM(G4),在生理条件下,使用恒定的 DNA 浓度和各种树状高分子含量。使用傅里叶变换红外光谱(FTIR)、紫外-可见光谱(UV-可见光谱)和圆二色光谱(CD 光谱)以及原子力显微镜(AFM)分析大分子结合模式、结合常数以及树状高分子复合物对 DNA 稳定性、聚集、缩合和构象的影响。结构分析表明,树状高分子-DNA 之间通过主沟和小沟以及磷酸骨架发生强烈相互作用,总结合常数为 K(mPEG-G3)=1.5(±0.5)×10(3)M(-1)、K(mPEG-G4)=3.4(±0.80)×10(3)M(-1)和 K(PAMAM-G4)=8.2(±0.90)×10(4)M(-1)。聚合物-DNA 络合的稳定性顺序为 PAMAM-G4>mPEG-G4>mPEG-G3。观察到树状高分子-DNA 复合物中存在亲水和疏水相互作用。DNA 保持在 B 型结构,而生物聚合物颗粒形成和缩合则在高树状高分子浓度下发生。
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