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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Multifunctional nanosheets based on hyaluronic acid modified graphene oxide for tumor-targeting chemophotothermal therapy
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Multifunctional nanosheets based on hyaluronic acid modified graphene oxide for tumor-targeting chemophotothermal therapy

机译:基于透明质酸修饰的氧化石墨烯的多功能纳米片用于肿瘤靶向化学光热疗法

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摘要

Graphene oxide (GO) with strong optical absorption in the near-infrared (NIR) region has shown great potential both in photothermal therapy and drug delivery. In this work, hyaluronic acid (HA)-functionalized GO (HA-GO) was successfully synthesized and controlled loading of mitoxantrone (MIT) onto HA-GO via pi-pi stacking interaction was investigated. The results revealed that drug-loaded nanosheets with high loading efficiency of 45 wt% exhibited pH-sensitive responses to tumor environment. Owing to the receptor-mediated endocytosis, cellular uptake analysis of HA-GO showed enhanced internalization. In vivo optical imaging test demonstrated that HA-GO nanosheets could enhance the targeting ability and residence time in tumor site. Moreover, the anti-tumor activity of free MIT, MIT/GO, and MIT/HA-GO in combination with NIR laser was investigated using human MCF-7 cells. In vitro cytotoxicity study revealed that HA-GO could stand as a biocompatible nanocarrier and MIT/HA-GO demonstrated remarkably higher toxicity than free MIT and MIT/GO, with IC50 of 0.79 mu g ml(-1). Tumor cell-killing potency was enhanced when MIT/HA-GO were combined with NIR irradiation, and the IC50 of MIT/HA-GO plus laser irradiation was 0.38 mu g ml(-1). In vivo, MIT/HA-GO plus NIR laser irradiation with the tumor growth inhibition of 93.52 % displayed greater anti-tumor effect compared with free MIT and MIT/GO with or without laser irradiation. Therefore, the MIT/HA-GO nanosheets may potentially be useful for further development of synergistic cancer therapy.
机译:在近红外(NIR)区域具有强光吸收的氧化石墨烯(GO)在光热疗法和药物递送中均显示出巨大潜力。在这项工作中,成功合成了透明质酸(HA)-官能化的GO(HA-GO),并研究了通过pi-pi堆叠相互作用将米托蒽醌(MIT)负载到HA-GO上的受控过程。结果表明,载药效率为45 wt%的纳米片表现出对肿瘤环境的pH敏感响应。由于受体介导的内吞作用,HA-GO的细胞摄取分析显示出增强的内在化。体内光学成像测试表明,HA-GO纳米片可以增强靶向能力和在肿瘤部位的停留时间。此外,使用人MCF-7细胞研究了游离MIT,MIT / GO和MIT / HA-GO与NIR激光联合使用的抗肿瘤活性。体外细胞毒性研究表明,HA-GO可以作为生物相容性纳米载体发挥作用,而MIT / HA-GO的毒性明显高于游离MIT和MIT / GO,IC50为0.79μg ml(-1)。当MIT / HA-GO与NIR照射结合使用时,肿瘤细胞的杀伤力增强,MIT / HA-GO加激光照射的IC50为0.38μg ml(-1)。在体内,与有或没有激光照射的游离MIT和MIT / GO相比,对肿瘤生长抑制率为93.52%的MIT / HA-GO加NIR激光照射显示出更大的抗肿瘤作用。因此,MIT / HA-GO纳米片可能潜在地用于协同癌症治疗的进一步发展。

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