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Magnetism and photo dual-controlled supramolecular assembly for suppression of tumor invasion and metastasis

机译:磁性和光双控超分子组装用于抑制肿瘤的侵袭和转移

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Supramolecular nanoassemblies that respond to multiple stimuli exhibit high therapeutic efficacy against malignant tumors. We report a new type of supramolecular nanofiber that integrates targeting peptide–coated magnetic nanoparticles with β-cyclodextrin–bearing polysaccharides in a complex held together by multivalent interactions. The nanofibers not only exhibited reversible photo-triggered association and disassociation depending on irradiation wavelength but also underwent magnetic field–controlled directional aggregation, even in the rather weak geomagnetic field. The nanofibers markedly suppressed invasion by and metastasis of cancer cells both in vitro and in vivo. Furthermore, compared with control mice, tumor-burdened mice treated with the nanofibers showed a lower rate of mortality from the metastatic spread of tumor cells. Our results suggest that these geomagnetism- and photo-controlled nanofibers may facilitate the rapid development of efficacious anticancer therapies.
机译:响应多种刺激的超分子纳米组件对恶性肿瘤表现出很高的治疗功效。我们报道了一种新型的超分子纳米纤维,该复合纤维将靶向肽包被的磁性纳米颗粒与带有β-环糊精的多糖结合在一起,并通过多价相互作用而结合在一起。纳米纤维不仅表现出可逆的光触发缔合和解离(取决于辐照波长),而且即使在相当弱的地磁场中,也经历了磁场控制的定向聚集。纳米纤维在体外和体内均显着抑制癌细胞的侵袭和转移。此外,与对照小鼠相比,用纳米纤维治疗的荷瘤小鼠显示出因肿瘤细胞转移性扩散而降低的死亡率。我们的结果表明,这些地磁和光控纳米纤维可以促进有效抗癌治疗的快速发展。

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