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具有适用于热疗性能的生物相容性壳聚糖基复合材料。

Biocompatible chitosan-based composites with properties suitable for hyperthermia therapy.

机构信息

CICECO - Aveiro Institute of Materials, University of Aveiro, 3810-193 Aveiro, Portugal.

Physics Department, University of Coimbra, 3004-516 Coimbra, Portugal and Biosystems and Integrative Sciences Institute (BioISI), Faculdade de Ciências, Universidade de Lisboa, 1749-016 Lisboa, Portugal.

出版信息

J Mater Chem B. 2020 Feb 14;8(6):1256-1265. doi: 10.1039/c9tb02067e. Epub 2020 Jan 21.

Abstract

Sustainably made, flexible and biocompatible composites, having environmentally friendly compositions and multifunctional capabilities, are promising materials for several emerging biomedical applications. Here, the development of flexible and multifunctional chitosan-based bionanocomposites with a mixed reduced graphene oxide-iron oxide (rGO-FeO) filler is described. The filler is prepared by one-pot synthesis, ensuring good dispersibility of the FeO nanoparticles and rGO within the chitosan matrix during solvent casting. The resulting bionanocomposites present superparamagnetic response at room temperature. The antioxidant activity is 9 times higher than that of pristine chitosan. The mechanical properties of the films can be tuned from elastic (∼8 MPa) chitosan films to stiff (∼285 MPa) bionanocomposite films with 50% filler. The magnetic hyperthermia tests showed a temperature increase of 40 °C in 45 s for the 50% rGO-FeO film. Furthermore, the composites have no cytotoxicity to the nontumorigenic (HaCat) cell line, which confirms their biocompatibility and highlights the potential of these materials for biomedical applications, such as hyperthermia treatments.

摘要

可持续制造、灵活且生物相容的复合材料具有环保的组成和多功能特性,是几种新兴生物医学应用的有前途的材料。在这里,描述了具有混合还原氧化石墨烯-氧化铁(rGO-FeO)填料的柔性多功能壳聚糖基生物纳米复合材料的开发。该填料通过一锅合成制备,确保了在溶剂浇铸过程中 FeO 纳米颗粒和 rGO 在壳聚糖基质中的良好分散性。所得的生物纳米复合材料在室温下表现出超顺磁响应。抗氧化活性比原始壳聚糖高 9 倍。薄膜的机械性能可以从弹性(约 8 MPa)壳聚糖薄膜调节到刚性(约 285 MPa)生物纳米复合材料薄膜,填充率为 50%。磁热疗测试表明,50%rGO-FeO 薄膜在 45 秒内温度升高 40°C。此外,这些复合材料对非致瘤(HaCat)细胞系没有细胞毒性,这证实了它们的生物相容性,并突出了这些材料在生物医学应用(如热疗)中的潜力。

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