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首页> 外文期刊>Journal of Colloid and Interface Science >Temperature and pH dual-stimuli-responsive phase-change microcapsules for multipurpose applications in smart drug delivery
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Temperature and pH dual-stimuli-responsive phase-change microcapsules for multipurpose applications in smart drug delivery

机译:用于智能药物递送中多用途应用的温度和pH双刺激相变微胶囊

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Temperature/pH dual-stimuli-responsive phase-change microcapsules (Dual-SR-MEPCM) were designed that can form the basis of smart drug delivery systems. They employed n-eicosane as a phase change material (PCM) microencapsulated in an acrylate-functionalized silica shell via emulsion-templated interfacial polycondensation. A poly(N-isopropylacrylamide-co-acrylate acid) functional layer was then fabricated on the surface of the silica shell through surfactant-assisted radical polymerization. The combination of phase-change microcapsules and stimuli-responsive material results in a system that synchronously implements thermal self-regulation by its PCM core together with controllable drug release through its polymeric functional layer. The resultant Dual-SR-MEPCM exhibits regularly spherical morphology, uniform particle-size distribution and well-defined core-shell microstructure, which indicates successful construction according to our design principle. This system has been further evaluated for multipurpose applications in thermal regulation and drug delivery with independent temperature and pH triggering. The Dual-SR-MEPCM not only shows a high thermal energy-storage capacity of over 160 J/g, but also good anti-leakage performance, thermal cycle stability and high-temperature shape stability. Our studies also reveal independent stimuli-responsive behaviors for temperature and pH when using bovine serum albumin and doxorubicin hydrochloride as model drugs. All of these features indicate that the Dual-SR-MEPCM designed in this study can serve as a promising candidate for smart drug delivery systems, with great potential for future multipurpose applications in advanced pharmaceutical areas. (C) 2020 Elsevier Inc. All rights reserved.
机译:设计了温度/pH双刺激响应相变微胶囊(dual-SR-MEPCM),可构成智能药物递送系统的基础。他们采用正二十烷作为相变材料(PCM),通过乳液模板界面缩聚将其微胶囊化在丙烯酸酯功能化二氧化硅壳中。然后,通过表面活性剂辅助自由基聚合在二氧化硅壳表面制备了聚(N-异丙基丙烯酰胺-丙烯酸共聚物)功能层。相变微胶囊和刺激响应材料的结合产生了一个系统,该系统通过其PCM核心同步实现热自我调节,并通过其聚合物功能层实现可控药物释放。合成的双SR-MEPCM具有规则的球形形貌、均匀的粒度分布和清晰的核壳微观结构,这表明根据我们的设计原则成功构建了双SR-MEPCM。该系统在独立温度和pH触发的热调节和药物输送方面的多用途应用得到了进一步评估。双SR-MEPCM不仅具有超过160j/g的高蓄热能力,而且具有良好的抗泄漏性能、热循环稳定性和高温形状稳定性。我们的研究还揭示了以牛血清白蛋白和盐酸阿霉素为模型药物时,对温度和pH值的独立刺激反应行为。所有这些特征表明,本研究设计的双SR MEPCM可以作为智能药物递送系统的一个有前途的候选,在先进的制药领域具有巨大的未来多用途应用潜力。(C) 2020爱思唯尔公司版权所有。

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