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Temperature-responsive electrospun nanofibers for ‘on–off’ switchable release of dextran

机译:温度响应性电纺纳米纤维用于开关葡聚糖的开-关切换释放

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摘要

We propose a new type of ‘smart’ nanofiber (NF) with dynamically and reversibly tunable properties for the ‘on–off’ controlled release of the polysaccharide dextran. The fibers are produced by electrospinning copolymers of N-isopropylacrylamide (NIPAAm) and N-hydroxymethylacrylamide (HMAAm). The OH groups of HMAAm are subsequently crosslinked by thermal curing. The copolymers were successfully fabricated into a well-defined nanofibrous structure with a diameter of about 600–700 nm, and the fibers preserved their morphology even after thermal curing. The resulting crosslinked NFs showed rapid and reversible volume changes in aqueous media in response to cycles of temperature alternation. The fibrous morphology was maintained for the crosslinked NFs even after the cycles of temperature alternation, while non-crosslinked NFs collapsed and dispersed quickly in the aqueous solution. Dextran-containing NFs were prepared by electrospinning the copolymers blended with fluorescein isothiocyanate (FITC)-dextran, and the ‘on–off’ switchable release of FITC-dextran from the crosslinked NFs was observed. Almost all the FITC-dextran was released from the NFs after six heating cycles, whereas only a negligible amount of FITC-dextran was evolved during the cooling process. The reported incorporation of smart properties into NFs takes advantage of their extremely large surface area and porosity and is expected to provide a simple platform for on–off drug delivery.
机译:我们提出了一种新型的“智能”纳米纤维(NF),它具有动态和可逆的可调节特性,可以“开-关”控制多糖葡聚糖的释放。纤维是通过电纺N-异丙基丙烯酰胺(NIPAAm)和N-羟甲基丙烯酰胺(HMAAm)的共聚物生产的。随后通过热固化使HMAAm的OH基交联。共聚物成功地制成了直径约600-700 nm的轮廓分明的纳米纤维结构,即使在热固化后,纤维也能保持其形态。生成的交联NFs在水介质中显示出响应温度交替循环的快速且可逆的体积变化。即使在温度交替循环之后,交联的NF仍保持纤维形态,而未交联的NF塌陷并迅速分散在水溶液中。通过静电纺丝与异硫氰酸荧光素(FITC)-右旋糖酐共混的共聚物,可以制备含葡聚糖的NF,观察到FITC-右旋糖酐从交联的NFs的“开-关”可转换释放。在六个加热周期后,几乎所有的FITC-右旋糖酐都从NFs中释放出来,而在冷却过程中仅产生了可忽略不计的FITC-右旋糖酐。据报道,将智能特性结合到NFs中可利用其极大的表面积和孔隙率,并有望为开关药物的输送提供一个简单的平台。

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