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pH-responsive superstructures prepared via the assembly of Fe3O4 amphipathic Janus nanoparticles

机译:通过组装Fe3O4两亲性Janus纳米粒子制备的pH响应上层建筑

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摘要

The strategy of using Fe3O4 amphiphilic Janus nanoparticles (Fe3O4@AJNPs) bearing β-cyclodextrin (β-CD) and aminopyridine (APD) functionalized polymethyl methacrylate (PGMA) to construct pH-stimuli responsive co-assemblies through host-guest interactions between β-CD and APD was proposed. The spherical co-assemblies with an average diameter about 210 nm were excellent magnetic responsive and quite stable even up to 2 months in deionized water. The pH-liable capability of these co-assemblies was revealed by disassembly of the formed superstructures with destruction of the built inclusion complexes. The disassembly process was monitored by SEM, TEM, DLS and fluorescent molecules probe. After disassembly of the co-assemblies caused by protonation of nitrogens in APD, hydrophobic PGMA-APD lacking of interactions with the Fe3O4@AJNPs chains was precipitated, and the remained Fe3O4@AJNPs turned to re-assemble to self-assemblies. Besides, the recyclable Fe3O4@APJNs could reassembly with additional PGMA-APD to build co-assemblies with a uniform morphology for several times. These pH-sensitive co-assemblies with high stability, good magnetic responsiveness and cytocompatibility could be used as pH-responsive vehicles within which to encapsulate drugs for subsequent controlled release.
机译:使用带有β-环糊精(β-CD)和氨基吡啶(APD)官能化的聚甲基丙烯酸甲酯(PGMA)的Fe3O4两亲性Janus纳米颗粒(Fe3O4 @ AJNPs)通过β-受体之间的客体相互作用构建pH刺激响应性协同组件建议使用CD和APD。平均直径约为210 nm的球形组件具有良好的磁响应性,甚至在去离子水中长达2个月也相当稳定。通过分解形成的上部结构并破坏内置的包合物,揭示了这些共装配体的pH值可靠的能力。通过SEM,TEM,DLS和荧光分子探针监测拆卸过程。在由APD中的氮质子化引起的共组装体解体后,缺乏与Fe3O4 @ AJNPs链相互作用的疏水性PGMA-APD沉淀出来,剩余的Fe3O4 @ AJNPs重新组装成自组装体。此外,可回收的Fe3O4 @ APJNs可以与其他PGMA-APD重新组装,以多次构建具有均匀形态的共组装件。这些具有高稳定性,良好的磁响应性和细胞相容性的pH敏感组合件可用作pH敏感载体,可在其中封装药物以进行后续控制释放。

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