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Fabrication of ultrafast temperature-responsive nanofibrous hydrogel with superelasticity and its 'on-off' switchable drug releasing capacity

机译:超快响应纳米纤维水凝胶制备超弹性及其“开关”可切换药物释放能力

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摘要

The temperature-responsive bulky hydrogel with fast response rate and satisfactory mechanical property has fascinating application potential in many aspects, such as the implantable macroscale controlled drug release carrier for post-surgical therapy; however, creating such a smart hydrogel was proven extremely challenging. Here a novel type of temperature-responsive bulky hydrogel with ultrafast response rate and super compressible elasticity was fabricated by the fibrous freeze-shaping technique using shortened temperature-responsive polymer based electrospun hollow nanofibers as building blocks, followed by heat treatment for endowing the hydrogel with high stability in water. Because the hydrogel has hierarchical porous structure and its constituent nanofibers have hollow structure, which are beneficial to diffusion of its embodied water during temperature-induced volume phase transition, its temperature-response time is less than 30 s. In addition, the hierarchical porous structure benefits dissipation of the compression stress exerted on the hydrogel. Fluorescein isothiocyanate (FITC)-dextran as a model biomacromolecular drug, was loaded into the shells of the hollow nanofibers during coaxial electrospinning, and the ultimately obtained nanofibrous hydrogel can release its loaded FITC-dextran in a 'on-off' switchable fashion in response to temperature alternation between 15 and 47 degrees C. Cell cytotoxicity test results demonstrate that the temperature-responsive nanofibrous hydrogel is biocompatible.
机译:温度响应性大体积水凝胶具有响应速度快、力学性能好等优点,在许多方面有着诱人的应用前景,如用于术后治疗的可植入大尺度控释药物载体;然而,制造这样一种智能水凝胶被证明是极具挑战性的。采用纤维冷冻成型技术,以缩短的温度响应性聚合物基电纺中空纳米纤维为基块,制备了一种具有超快响应速度和超可压缩弹性的新型温度响应性块状水凝胶,然后进行热处理,使水凝胶在水中具有高稳定性。由于水凝胶具有分级多孔结构,其组成的纳米纤维具有中空结构,这有利于在温度诱导体积相变期间其内含水的扩散,其温度响应时间小于30秒。此外,分级多孔结构有利于消散施加在水凝胶上的压缩应力。异硫氰酸荧光素(FITC)-葡聚糖作为一种模型生物大分子药物,在同轴静电纺丝过程中被加载到中空纳米纤维的外壳中,最终获得的纳米纤维水凝胶可以响应15到47摄氏度之间的温度变化,以“开-关”可切换的方式释放其负载的FITC葡聚糖。细胞毒性试验结果表明,温度响应型纳米纤维水凝胶具有生物相容性。

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