Au@MnO核壳纳米材料用于肿瘤诊断与治疗

Au@MnO Core-shell Nanomaterials for Tumor Diagnosis and Therapy

  • 摘要: 利用高温热分解法合成了球形Au纳米颗粒,并在其表面生长一层MnO,构建了Au@MnO核壳结构纳米材料.磁共振成像结果表明,顺磁性MnO壳层能够加速水分子中1H原子核的纵向弛豫,具有磁共振成像诊断能力.光热转换实验表明,Au核表现出明显的近红外吸收和良好的光热升温效果.通过尾静脉将Au@MnO核壳结构纳米材料注射进小鼠体内,发现在磁共振图像中肿瘤部位信号强度提高到181%,与周围正常组织产生明显对比.在808 nm激光照射下,肿瘤部位温度迅速升高到约60℃,产生了良好的治疗效果.这些结果为Au@MnO核壳纳米在肿瘤诊断与治疗方面的研究提供了实验依据.

     

    Abstract: Spherical Au nanoparticles were synthesized by thermal decomposition at high temperature, then were coated with a layer of MnO to form Au@MnO core-shell nanomaterial. MRI results show that the paramagnetic MnO shell could accelerate the longitudinal relaxation of proton in water molecules, with magnetic resonance imaging diagnostic capability; photothermal conversion results indicated that Au core possessed obvious near-infrared absorption and good photothermal heating effect. The as-prepared Au@MnO core-shell nanomaterial was injected into mice through tail vein, and it was found that the magnetic resonance signal in tumor area enhanced significantly to 181%, which was obviously different with the surrounding normal tissues. Under 808 nm laser irradiation, tumor temperature increased rapidly to about 60℃. These results provided an experimental example of Au@MnO nanomaterial for tumor diagnosis and treatment.

     

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