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Photothermal cancer therapy using graphitic carbon–coated magnetic particles prepared by one-pot synthesis

机译:使用一锅合成制备的石墨碳涂层磁性粒子进行光热癌症治疗

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摘要

We describe here a simple synthetic strategy for the fabrication of carbon-coated Fe3O4 (Fe3O4@C) particles using a single-component precursor, iron (III) diethylenetriaminepentaacetic acid complex. Physicochemical analyses revealed that the core of the synthesized particles consists of ferromagnetic Fe3O4 material ranging several hundred nanometers, embedded in nitrogen-doped graphitic carbon with a thickness of ~120 nm. Because of their photothermal activity (absorption of near-infrared [NIR] light), the Fe3O4@C particles have been investigated for photothermal therapeutic applications. An example of one such application would be the use of Fe3O4@C particles in human adenocarcinoma A549 cells by means of NIR-triggered cell death. In this system, the Fe3O4@C can rapidly generate heat, causing >98% cell death within 10 minutes under 808 nm NIR laser irradiation (2.3 W cm−2). These Fe3O4@C particles provided a superior photothermal therapeutic effect by intratumoral delivery and NIR irradiation of tumor xenografts. These results demonstrate that one-pot synthesis of carbon-coated magnetic particles could provide promising materials for future clinical applications and encourage further investigation of this simple method.
机译:我们在这里描述了一种简单的合成策略,用于使用单组分前体铁(III)二亚乙基三胺五乙酸络合物制造碳包覆的Fe3O4(Fe3O4 @ C)颗粒。物理化学分析表明,合成颗粒的核心由几百纳米的铁磁性Fe3O4材料组成,嵌入到氮掺杂的石墨碳中,厚度约为120 nm。由于其光热活性(吸收近红外[NIR]光),已经对Fe3O4 @ C颗粒进行了光热治疗应用的研究。一种这样的应用的例子是通过NIR触发的细胞死亡在人腺癌A549细胞中使用Fe 3 O 4 C颗粒。在该系统中,Fe3O4 @ C可以快速产生热量,在808 nm NIR激光照射(2.3 W cm -2 )下,在10分钟内导致> 98%的细胞死亡。这些Fe3O4 @ C颗粒通过肿瘤内递送和异种移植物的NIR照射提供了卓越的光热治疗效果。这些结果表明,一锅法合成的碳包覆磁性颗粒可以为未来的临床应用提供有希望的材料,并鼓励对该简单方法的进一步研究。

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