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Preparation of Magneto-Sensitive Polymer Nanocomposite Microparticles from Copolyesterurethanes via Electrospraying

机译:通过电喷雾制备来自共聚酯乙烷的磁敏聚合物纳米复合微粒

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Small stimuli-responsive magneto-sensitivemicroparticles (<5μm) have attracted broad interest for biomedical applications, since they can be delivered minimal-invasively (e.g. via injection) and guided to a specific site or organ,while using their magnetic properties. In addition, such particles can be remotely heated, e.g., for hyperthermia therapy approaches. In this study, we prepared magneto-sensitive polymer-based nanocomposite microparticles by electrospraying of a 1,1,1,3,3,3 hexafluoro-2-propanol solution containing a mixture of a copolyetheresterurethane (PDC) and magnetic Fe3O4 nanoparticles (MNPs). Thermal gravimetric analysis (TGA) revealed a weight content of 23±0.5 wt-% MNPs in the PDC magneto-sensitive nanocomposite microparticles, which was identical with the initial starting composition. Scanning electronmicroscopy (SEM) results indicated a bimodal particle size distribution for the prepared magneto-sensitive nanocomposite microparticles around 1.2±0.3μm and 400±100 nm, respectively. Decreasing the size of the magneto-sensitive nanocomposite microparticles resulted in an increase in their reducedmodulus, which was obtained via nanoindentation testing. The PDCmagnetosensitive nanocomposite microparticles could be successfully manipulated in dispersion medium suspension with a permanent magnet, demonstrating their magneto-sensitivity. In addition, the inductive heating capability of the microparticulate nanocomposites could be demonstrated for a thin compression molded test specimen, which could be heated to 44 °C in an alternating magnetic field. The results indicated that such magneto-sensitive nanocomposite microparticles can be potentially used asmagneto-responsive shape-memory microparticles for on-demand and remotely controlled drug delivery.
机译:小刺激响应磁性敏感性微生物(<5μm)吸引了生物医学应用的广泛兴趣,因为它们可以在使用它们的磁性性质的同时以最小侵入性(例如通过注射)递送至特定部位或器官。此外,这种颗粒可以远程加热,例如,用于热疗治疗方法。在这项研究中,我们通过包含copolyetheresterurethane(PDC)和四氧化三铁磁性纳米粒子的混合物中的1,1,1,3,3,3-六氟-2-丙醇溶液的电喷雾(的MNP制备磁敏基于聚合物的纳米复合材料微粒)。热重分析(TGA)在PDC磁敏纳米复合材料微粒中显示出23±0.5重量%MNP的重量含量,其与初始起始组合物相同。扫描电子镜(SEM)结果表明制备的磁敏纳米复合材料微粒分别为约1.2±0.3μm和400±100nm的双峰粒度分布。降低磁敏纳米复合材料微粒的尺寸导致其减少模划线的增加,其通过纳米压突测试获得。可以在具有永磁体的分散介质悬浮液中成功地操纵PdcMagnetoSiscy纳米复合材料微粒,展示其磁敏度。另外,微粒纳米复合材料的感应加热能力可以用于薄压缩模制试样,其可以在交替磁场中加热至44℃。结果表明,这种磁敏纳米复合材料微粒可以是潜在的响应形状记忆微粒,用于按需和远程控制的药物递送。

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