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Facile Fabrication of Near-Infrared-Resonant and Magnetic Resonance Imaging-Capable Nanomediators for Photothermal Therapy

机译:用于光热疗法的具有近红外和磁共振成像能力的纳米介体的简便制备

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摘要

Although many techniques exist for fabricating near-infrared (NIR)-resonant and magnetic resonance imaging (MRI)-capable nanomediators for photothermal cancer therapy, preparing them in an efficient and scalable process remains a significant challenge. In this report, we exploit one-step siloxane chemistry to facilely conjugate NIR-absorbing satellites onto a well-developed polysiloxane-containing polymer-coated iron oxide nanoparticle (IONP) core to generate dual functional core satellite nanomediators for photothermal therapy. An advantage of this nanocomposite design is the variety of potential satellites that can be simply attached to impart NIR resonance, which we demonstrate using NIR-resonant gold sulfide nanoparticles (Au(2)SNPs) and the NIR dye IR820 as two example satellites. The core satellite nanomediators are fully characterized by using absorption spectra, dynamic light scattering, zeta potential measurements, and transmission electron microscopy. The enhanced photothermal effect under the irradiation of NIR laser light is identified through in vitro solutions and in vivo mice studies. The MRI capabilities as contrast agents are demonstrated in mice. Our data suggest that polysiloxane-containing polymer-coated IONPs can be used as a versatile platform to build such dual functional nanomediators for translatable, MRI-guided photothermal cancer therapy.
机译:尽管存在用于制造用于光热癌症治疗的具有近红外(NIR)共振和磁共振成像(MRI)功能的纳米介体的许多技术,但是以有效且可扩展的方法制备它们仍然是一项重大挑战。在本报告中,我们利用一步法硅氧烷化学方法将吸收近红外光谱的卫星轻松共轭到发达的含聚硅氧烷的聚合物包覆的氧化铁纳米粒子(IONP)核上,以产生用于光热疗法的双功能核卫星纳米介体。这种纳米复合材料设计的优点是,可以简单地附加各种潜在的卫星以实现NIR共振,我们使用NIR共振硫化金纳米粒子(Au(2)SNPs)和NIR染料IR820作为两个示例卫星,进行了演示。通过使用吸收光谱,动态光散射,ζ电势测量和透射电子显微镜,可以充分表征核心卫星纳米介体。通过体外溶液和体内小鼠研究确定了近红外激光照射下增强的光热效应。在小鼠中证明了MRI作为造影剂的功能。我们的数据表明,含聚硅氧烷的聚合物包被的IONP可以用作构建此类双功能纳米介体的多功能平台,用于可翻译,MRI引导的光热癌症治疗。

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