Smith Ryan J, Beck Rachel W, Prevette Lisa E
Department of Chemistry, University of St. Thomas, 2115 Summit Ave., St. Paul, MN 55105-1079, United States.
Department of Chemistry, University of St. Thomas, 2115 Summit Ave., St. Paul, MN 55105-1079, United States.
Biophys Chem. 2015 Aug-Sep;203-204:12-21. doi: 10.1016/j.bpc.2015.04.005. Epub 2015 May 7.
Poly(ethylene glycol) (PEG) is often conjugated to polyethylenimine (PEI) to provide colloidal stability to PEI-DNA polyplexes and shield charge leading to toxicity. Here, a library of nine cationic copolymers was synthesized by grafting three molecular weights (750, 2000, 5000Da) of PEG to linear PEI at three conjugation ratios. Using isothermal titration calorimetry, we have quantified the thermodynamics of the associations between the copolymers and DNA and determined the extent to which binding is hindered as a function of PEG molecular weight and conjugation ratio. Low conjugation ratios of 750Da PEG to PEI resulted in little decrease in DNA affinity, but a significant decrease-up to two orders of magnitude-was found for the other copolymers. We identified limitations in determination of affinity using indirect assays (electrophoretic mobility shift and ethidium bromide exclusion) commonly used in the field. Dynamic light scattering of the DNA complexes at physiological ionic strength showed that PEI modifications that did not reduce DNA affinity also did not confer significant colloidal stability, a finding that was supported by calorimetric data on the aggregation process. These results quantify the DNA interaction thermodynamics of PEGylated polycations for the first time and indicate that there is an optimum PEG chain length and degree of substitution in the design of agents that have desirable properties for effective in vivo gene delivery.
聚乙二醇(PEG)常与聚乙烯亚胺(PEI)共轭,以赋予PEI-DNA多聚体胶体稳定性,并屏蔽电荷从而降低毒性。在此,通过将三种分子量(750、2000、5000Da)的PEG以三种共轭比例接枝到线性PEI上,合成了一个包含九种阳离子共聚物的文库。利用等温滴定量热法,我们量化了共聚物与DNA之间缔合的热力学,并确定了结合受阻碍的程度与PEG分子量和共轭比例的函数关系。750Da PEG与PEI的低共轭比例导致DNA亲和力几乎没有降低,但其他共聚物的DNA亲和力显著降低——高达两个数量级。我们发现了该领域常用的间接检测方法(电泳迁移率变动和溴化乙锭排除法)在亲和力测定方面的局限性。在生理离子强度下对DNA复合物进行动态光散射表明,未降低DNA亲和力的PEI修饰也未赋予显著的胶体稳定性,这一发现得到了关于聚集过程的量热数据的支持。这些结果首次量化了聚乙二醇化聚阳离子与DNA相互作用的热力学,并表明在设计具有有效体内基因传递所需特性的试剂时,存在最佳的PEG链长和取代度。