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Complex formation between cationic polymethacrylates and oligonucleotides

机译:阳离子聚甲基丙烯酸酯和寡核苷酸之间的络合物形成

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With regard to the development of pharmaceutical carriers for oligonucleotides, the interactions between a cationic polymer, poly(2-dimethylamino)ethyl methacrylate (pDMAEMA), and rhodamine-labeled 25-mer phosphodiester oligonucleotides (Rh-ONs) were studied. The composition of the pDMAEMA/Rh-ON complexes was investigated as a function of the charge ratio (phi; +/-) by increasing the pDMAEMA concentration and keeping the Rh-ON concentration constant. Gel electrophoresis revealed that at phi < 1 only a fraction of the short Rh-ONs bind the longer pDMAEMA chains. Dynamic light scattering and zeta potential () indicated that at phi < 1 only a fraction of the phosphate anions on the Rh-ONs are involved in complex formation which results in "dangling" of the Rh-ONs. Moreover, from fluorescence measurements, multimolecular complexes (i.e., several Rh-ONs per pDMAEMA chain) were revealed. At 1 < phi < 3, approximated zero. This led to a clustering of individual complexes. At phi > 3, all the Rh-ONs were bound while, compared to complexes at phi < 1, the average number of Rh-ONs bound to one pDMAEMA chain was decreased. The presence of multimolecular complexes was confirmed from fluorescence correlation spectroscopy (FCS) measurements. The multimolecular complexes were observed as highly intense fluorescent particles upon their diffusion through the confocal volume of the FCS instrument. Also, the decrease in the average number of Rh-ONs bound to one pDMAEMA chain, upon increasing hi>, was confirmed by FCS. [References: 32]
机译:关于用于寡核苷酸的药物载体的开发,研究了阳离子聚合物,聚(2-二甲基氨基)甲基丙烯酸甲酯(pDMAEMA)和若丹明标记的25-mer磷酸二酯寡核苷酸(Rh-ONs)之间的相互作用。通过增加pDMAEMA浓度并保持Rh-ON浓度恒定,研究了pDMAEMA / Rh-ON复合物的组成随电荷比(φ; +/-)的变化。凝胶电泳显示,在phi <1时,只有一小部分短Rh-ON与较长的pDMAEMA链结合。动态光散射和ζ电位(ζ)表明,在phi <1时,Rh-ON上仅一部分磷酸根阴离子参与络合物的形成,这导致Rh-ON“悬空”。此外,从荧光测量中,揭示了多分子复合物(即,每个pDMAEMA链的几个Rh-ON)。在1 hi <3时,近似为零。这导致单个复合物的聚集。在phi> 3时,所有Rh-ON均被结合,而与在phi <1处的复合物相比,与一条pDMAEMA链结合的Rh-ON的平均数量减少。通过荧光相关光谱法(FCS)测量证实了多分子复合物的存在。当多分子复合物通过FCS仪器的共焦体积扩散时,观察到为高强度荧光颗粒。另外,FCS证实了随着φ的增加,与一条pDMAEMA链结合的Rh-ON的平均数目减少。 [参考:32]

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