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Characterization of complexation of poly (N-isopropylacrylamide-co-2-(dimethylamino) ethyl methacrylate) thermoresponsive cationic nanogels with salmon sperm DNA

机译:聚(N-异丙基丙烯酰胺共聚物-甲基-2-(二甲氨基)乙基甲基丙烯酸乙酯)热响应性阳离子纳米凝胶与鲑鱼精DNA的络合特性

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摘要

Thermoresponsive cationic nanogel (TCNG) networks based on N-isopropylacrylamide (NIPAM), 2-(dimethylamino)ethyl methacrylate (DMAEMA), and quaternary alkyl ammonium halide salts of DMAEMA (DMAEMAQ) were synthesized by dispersion polymerization technique. The thermoresponsive properties of TCNGs and TCNG-salmon sperm DNA (sasDNA) polyplexes were characterized in aqueous media of various pH and ionic strength. P[NIPAM] and P[NIPAM/DMAEMA] TCNGs exhibited sharp volume phase transition (VPT) in water at critical temperatures (Tc) of 32 °C and 36 °C, respectively. Quaternized P[NIPAM/DMAEMAQ] TCNGs did not undergo sharp VPT up to 50 °C. The VPT of uncomplexed TCNGs were sensitive to the ionic composition and ionic strength of salts in solution, but were insensitive to pH in the range 5.0 to 7.4. The VPT of P[NIPAM/DMAEMAQ]/sasDNA diminished in magnitude with increasing Wp/Wd suggesting greater compaction of the polyplexes. The distinct phase-transition properties of P[NIPAM/DMAEMA]/sasDNA and P[NIPAM/DMAEMAQ]/sasDNA polyplexes were attributed to the condensing capability of polycations and to differences in the spatial distribution of structural charges in quaternized and nonquaternized networks. The findings demonstrate that stable TCNGs can be prepared with controllable responsive properties determined by the nature of the cationic charge incorporated and may have potential as vehicles for DNA delivery.
机译:通过分散聚合技术合成了基于N-异丙基丙烯酰胺(NIPAM),甲基丙烯酸2-(二甲氨基)乙酯(DMAEMA)和季烷基卤化铵的DMAMA(DMAEMAQ)的热响应性阳离子纳米凝胶(TCNG)网络。 TCNGs和TCNG鲑鱼精子DNA(sasDNA)复合物的热响应特性在各种pH和离子强度的水性介质中进行了表征。 P [NIPAM]和P [NIPAM / DMAEMA] TCNG在临界温度(Tc)分别为32°C和36°C的水中表现出明显的体积相变(VPT)。季铵化的P [NIPAM / DMAEMAQ] TCNG在高达50°C的温度下均未经历剧烈的VPT。未络合的TCNG的VPT对溶液中盐的离子组成和离子强度敏感,但对pH值在5.0至7.4之间不敏感。 P [NIPAM / DMAEMAQ] / sasDNA的VPT随Wp / Wd的增加而减小,这表明多链体的压实度更高。 P [NIPAM / DMAEMA] / sasDNA和P [NIPAM / DMAEMAQ] / sasDNA复合物的独特相变特性归因于聚阳离子的凝聚能力以及季铵化和非季铵化网络中结构电荷空间分布的差异。这些发现表明,可以制备稳定的TCNG,并具有可控制的响应特性,该响应特性由所结合的阳离子电荷的性质决定,并且可能具有作为DNA传递载体的潜力。

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