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On Stability of Molecular Therapeutic Agents for Noninvasive Photoacoustic and Ultrasound Image-guided Photothermal Therapy

机译:无创光声和超声图像引导光热疗法的分子治疗剂的稳定性。

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Image-guided molecular photothermal therapy using targeted gold nanoparticles acting as photoabsorbers can be used to noninvasively treat various medical conditions including cancer. Among different types of gold nanoparticles, gold nanorods are an attractive candidate for both photothermal therapy and photoacoustic imaging due to their high and tunable optical absorption cross-section. However, nanorods are not thermodynamically stable; under laser exposure, the nanorods can easily transform to spheres, thus changing their desired optical properties. In this study, gold-silica core-shell nanorods were prepared by coating silica directly onto the surface of PEGylated gold nanorods using a modified Stober method. The nanorods were exposed to 800 nm wavelength, 7 ns pulses of light at a 10 Hz pulse repetition rate. For different fluences ranging from 0 to 8 mJ/cm2, the optical extinction spectrum was measured before and after the exposure to investigate their photothermal stability. Finally, the effectiveness of gold-silica core-shell nanoparticles as a photoacoustic contrast agent and photothermal nanoabsorber was tested using inclusion-embedded phantoms and a combined ultrasound and photoacoustic imaging system. The results of our study suggest that gold-silica core-shell nanorods are excellent candidates for image-guided molecular photothermal therapy.
机译:使用靶向金纳米粒子作为光吸收剂的图像引导分子光热疗法可用于非侵入性治疗包括癌症在内的各种医学疾病。在不同类型的金纳米颗粒中,金纳米棒由于其高且可调的光吸收截面而成为光热疗法和光声成像的有吸引力的候选者。但是,纳米棒不是热力学稳定的。在激光照射下,纳米棒可以轻松转变为球体,从而改变其所需的光学特性。在这项研究中,通过使用改良的Stober方法将二氧化硅直接涂覆到PEG化的金纳米棒的表面上,制备了金-二氧化硅核-壳纳米棒。纳米棒以10 Hz的脉冲重复频率暴露于800 nm波长,7 ns的光脉冲。对于从0到8 mJ / cm2的不同通量,在曝光前后测量消光光谱以研究其光热稳定性。最后,使用包裹体嵌入体模以及超声和光声成像组合系统测试了金-二氧化硅核-壳纳米粒子作为光声对比剂和光热纳米吸收剂的有效性。我们的研究结果表明,金-二氧化硅核-壳纳米棒是图像引导分子光热疗法的极佳候选者。

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