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氧化石墨烯调节 3D 可打印软纳米复合水凝胶中的颗粒间相互作用,恢复磁热疗响应。

Graphene oxide modulates inter-particle interactions in 3D printable soft nanocomposite hydrogels restoring magnetic hyperthermia responses.

机构信息

School of Chemistry, University College Dublin, Belfield, Dublin 4, Ireland.

Conway Institute of Biomolecular and Biomedical Research, University College Dublin, Belfield, Dublin 4, Ireland; School of Physics, University College Dublin, Belfield, Dublin 4, Ireland.

出版信息

J Colloid Interface Sci. 2022 Apr;611:533-544. doi: 10.1016/j.jcis.2021.12.048. Epub 2021 Dec 11.

Abstract

Hydrogels loaded with magnetic iron oxide nanoparticles that can be patterned and which controllably induce hyperthermic responses on AC-field stimulation are of interest as functional components of next-generation biomaterials. Formation of nanocomposite hydrogels is known to eliminate any Brownian contribution to hyperthermic response (reducing stimulated heating) while the Néel contribution can also be suppressed by inter-particle dipolar interactions arising from aggregation induced before or during gelation. We describe the ability of graphene oxide (GO) flakes to restore the hyperthermic efficiency of soft printable hydrogels formed using Pluronics F127 and PEGylated magnetic nanoflowers. Here, by varying the amount of GO in mixed nanocomposite suspensions and gels, we demonstrate GO-content dependent recovery of hyperthemic response in gels. This is due to progressively reduced inter-nanoflower interactions mediated by GO, which largely restore the dispersed-state Néel contribution to heating. We suggest that preferential association of GO with the hydrophobic F127 blocks increases the preponderance of cohesive interactions between the hydrophilic blocks and the PEGylated nanoflowers, promoting dispersion of the latter. Finally we demonstrate extrusion-based 3D printing with excellent print fidelity of the magnetically-responsive nanocomposites, for which the inclusion of GO provides significant improvement in the spatially-localized open-coil heating response, rendering the prints viable components for future cell stimulation and delivery applications.

摘要

水凝胶负载磁性氧化铁纳米粒子,可以进行图案化,并在交流场刺激下可控地诱导热响应,作为下一代生物材料的功能组件具有重要意义。纳米复合水凝胶的形成被认为消除了热响应的任何布朗贡献(降低了刺激加热),而由于在凝胶形成之前或期间的聚集引起的颗粒间偶极相互作用也可以抑制奈尔贡献。我们描述了氧化石墨烯 (GO) 薄片恢复使用 Pluronic F127 和 PEG 化磁性纳米花形成的软可打印水凝胶的热效率的能力。在这里,通过改变混合纳米复合材料悬浮液和凝胶中 GO 的量,我们证明了凝胶中热响应的 GO 含量依赖性恢复。这是由于 GO 介导的纳米花之间的相互作用逐渐减少,这在很大程度上恢复了分散状态下奈尔对加热的贡献。我们认为,GO 与疏水性 F127 块的优先缔合增加了亲水性块与 PEG 化纳米花之间的内聚相互作用的优势,促进了后者的分散。最后,我们展示了基于挤出的 3D 打印,具有出色的磁响应纳米复合材料的打印保真度,其中 GO 的包含提供了对空间局部开线圈加热响应的显著改善,使打印品成为未来细胞刺激和输送应用的可行组件。

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