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首页> 外文期刊>Journal of Colloid and Interface Science >Non-ionic, thermo-responsive DEA/DMA nanogels: Synthesis, characterization, and use for DNA separations by microchip electrophoresis
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Non-ionic, thermo-responsive DEA/DMA nanogels: Synthesis, characterization, and use for DNA separations by microchip electrophoresis

机译:非离子型,热响应性DEA / DMA纳米凝胶:微芯片电泳的合成,表征和用于DNA分离

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摘要

Thermo-responsive polymer "nanogels" (crosslinked hydrogel particles with sub-100 nm diameters) are intriguing for many potential applications in biotechnology and medicine. There have been relatively few reports of electrostatically neutral, thermosensitive nanogels comprising a high fraction of hydrophilic co-monomer. Here we demonstrate the syntheses and characterization of novel, non-ionic nanogels based on random N,. N-diethylacrylamide (DEA)/. N,. N-dimethylacrylamide (DMA) copolymers, made by free-radical, surfactant-free dispersion polymerization. The volume-phase transition temperatures of these DEA/DMA nanogels are strongly affected by co-monomer composition, providing a way to "tune" the phase transition temperature of these non-ionic nanogels. While DEA nanogels (comprising no DMA) can be obtained at 70. °C by standard emulsion precipitation, DEA/DMA random co-polymer nanogels can be obtained only in a particular range of temperatures, above the initial phase transition temperature and below the critical precipitation temperature of the DEA/DMA copolymer, controlled by co-monomer composition. Increasing percentages of DMA in the nanogels raises the phase transition temperature, and attenuates and broadens it as well. We find that concentrated DEA/DMA nanogel dispersions are optically clear at room temperature. This good optical clarity was exploited for their use in a novel DNA sieving matrix for microfluidic chip electrophoresis. An ultrafast, high-efficiency dsDNA separation was achieved in less than 120 s for dsDNA ranging from 75 bp to 15,000 bp.
机译:热响应性聚合物“纳米凝胶”(直径小于100 nm的交联水凝胶颗粒)吸引了生物技术和医学领域的许多潜在应用。包含高比例的亲水共聚单体的静电中性热敏纳米凝胶的报道相对较少。在这里,我们演示了基于随机N的新型非离子纳米凝胶的合成与表征。 N-二乙基丙烯酰胺(DEA)/。 N, N-二甲基丙烯酰胺(DMA)共聚物,通过自由基,无表面活性剂的分散聚合反应制得。这些DEA / DMA纳米凝胶的体积相变温度受到共聚单体组成的强烈影响,从而提供了一种“调节”这些非离子纳米凝胶的相变温度的方法。尽管可以通过标准乳液沉淀法在70°C下获得DEA纳米凝胶(不包含DMA),但仅在特定的温度范围内,高于初始相变温度和低于临界温度下才能获得DEA / DMA无规共聚物纳米凝胶。 DEA / DMA共聚物的沉淀温度受共聚单体组成的控制。纳米凝胶中DMA百分比的增加会提高相变温度,并使其衰减和展宽。我们发现浓缩的DEA / DMA纳米凝胶分散体在室温下是光学透明的。这种良好的光学清晰度被开发用于微流控芯片电泳的新型DNA筛分基质中。对于75 bp至15,000 bp的dsDNA,在不到120 s的时间内即可实现超快速,高效的dsDNA分离。

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