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Nanofiber-nanorod composites exhibiting light-induced reversible lower critical solution temperature transitions

机译:纳米纤维-纳米纤维复合材料表现出光诱导的可逆下临界溶液温度转变

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摘要

Stimuli-responsive materials are promising as smart materials for a range of applications. In this work, a photo-crosslinkable, thermoresponsive macromer was electrospun into fibrous scaffolds containing gold nanorods (AuNRs). The resulting fibrous nanocomposites composed of poly(N-isopropylacrylamide-co- polyethylene glycol acrylate) (PNPA) and PEGylated AuNRs were crosslinked and swollen in water. AuNRs strongly absorb in the near-infrared (NIR) region to generate heat, which triggered the fiber thermal transition upon NIR light exposure. During the thermal transition, scaffolds collapsed both macroscopically and microscopically, with individual fibers deswelling and pulling together. Exposure to a 1.1W NIR laser decreased the diameter of swollen fibers by 34.7% from 1332 193.3 to 868.9 168.3nm, and increased fiber density 116% from 209.5 26.34 to 451.9 23.68fibersmm~(-1). This transition was dependent on the incorporation of the AuNRs, and was utilized to trigger the release of encapsulated proteins from the nanocomposite fiber mats. The expulsion of water from fibers upon NIR exposure caused the release rate of incorporated protein to increase greater than tenfold, from 0.038 0.052 without external stimulus to 0.462 0.227νgprotein/mgpolymer/min with NIR exposure. These results suggest that light-responsive fibrous nanocomposites can be utilized in applications such as drug delivery.
机译:刺激响应材料有望作为智能材料用于多种应用。在这项工作中,将一种可光交联的热响应性大分子单体静电纺入含有金纳米棒(AuNRs)的纤维支架中。将所得的由聚(N-异丙基丙烯酰胺-共聚聚乙二醇丙烯酸酯)(PNPA)和PEG化AuNR组成的纤维状纳米复合材料交联并在水中溶胀。 AuNRs在近红外(NIR)区域强烈吸收以产生热量,这在暴露NIR时触发了光纤的热转变。在热转变过程中,脚手架在宏观和微观上都崩溃了,各个纤维都溶胀并拉在一起。暴露于1.1W NIR激光使溶胀纤维的直径从1332 193.3减小了86.7%至868.9 168.3nm,纤维密度从209.5 26.34增大了116%至451.9 23.68fibersmm〜(-1)。该转变取决于AuNRs的掺入,并被用于触发包封的蛋白质从纳米复合纤维垫的释放。 NIR暴露时从纤维中排出水导致掺入的蛋白质的释放速率增加十倍以上,从无外部刺激时的0.038 0.052增至暴露于NIR时的0.4620.227μg蛋白质/毫克聚合物/分钟。这些结果表明,光响应性纤维纳米复合材料可用于诸如药物递送的应用中。

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