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首页> 外文期刊>Biomaterials >Laser-triggered aggregated cubic alpha-Fe2O3@Au nanocomposites for magnetic resonance imaging and photothermal/enhanced radiation synergistic therapy
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Laser-triggered aggregated cubic alpha-Fe2O3@Au nanocomposites for magnetic resonance imaging and photothermal/enhanced radiation synergistic therapy

机译:激光触发聚集的立方α-Fe2O3 @ Au纳米复合材料,用于磁共振成像和光热/增强辐射协同疗法

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Theranostic nanoparticles (NPs) have recently generated substantial interest in translational cancer research due to their capabilities for multimodal diagnostic imaging and anti-cancer therapy. We herein developed cubic alpha-iron(III) oxide (alpha-Fe2O3) nanoparticles coated with ultrasmall gold nanoseeds, abbreviated as alpha-Fe2O3@Au, for the synergistic treatment of radiotherapy and photothermal therapy in breast cancer. The resultant NPs, with an average diameter of 49 nm, exhibited satisfactory biosafety profiles and provided tumor contrast in T-2-weighted magnetic resonance (MR) imaging. The coating of ultrasmall Au nanoseeds exhibited strong absorption of near-infrared (NIR) laser that enabled to an efficacious photothermal therapy. It also sensitized radiotherapy, X-ray in this study, by generating large quantities of tumoricidal reactive oxygen species (ROS). Moreover, with the aid of NIR laser irradiation, the alpha-Fe2O3 substrate showed partial ablation and the Au NPs on its surface aggregated into a larger size (similar to 13 nm), which has been proven to be the optimized size for radiotherapy. When tested in 4T1 murine breast cancer model, the alpha-Fe2O3@Au NPs significantly suppressed tumor growth (P < 0.01) when irradiated with a low-power laser (1.5 W/cm(2) for 3 min) and an intermediate X-ray dose (6 Gy). Our results demonstrate that alpha-Fe2O3@Au, integrated with MRI, photothermal therapy, and radiosensitization, is a promising multifunctional theranostic nanomedicine for clinical applications.
机译:由于其对多式诊断成像和抗癌治疗的能力,Histanostic Nanoparly(NPS)最近对翻译癌症研究产生了大量兴趣。在此开发的立方α-氧化铁(III)氧化物(α-Fe2O3)纳米颗粒,其涂有超级醛金纳米酶,缩写为Alpha-Fe 2 O 3 @ Au,用于乳腺癌放射治疗和光热疗的协同处理。平均直径为49nm的所得NPS表现出令人满意的生物安全型材,并提供T-2加权磁共振(MR)成像中的肿瘤对比。超大Au纳米酶的涂层表现出近红外(NIR)激光的强烈吸收,使能有效的光热疗法。它还通过产生大量肿瘤反应性氧物质(ROS)来敏感放射疗法,X射线。此外,借助于NIR激光照射,α-Fe2O3底物显示出部分消融,并且其表面的Au NP聚集成更大的尺寸(类似于13nm),已被证明是放射疗法的优化尺寸。当在4T1鼠乳腺癌模型中测试时,用低功率激光(1.5W / cm(2)持续3分钟)和中间X-当辐射时,α-Fe2O3 @ Au NPS显着抑制肿瘤生长(P <0.01))和中间X-射线剂量(6 GY)。我们的结果表明,与MRI,光热疗和放射胶质化集成的Alpha-Fe2O3 @ Au是一个有助于多功能的临床应用的多官能治疗纳米胺。

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