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Precision Nanomedicine Using Dual PET and MR Temperature Imaging–Guided Photothermal Therapy

机译:使用PET和MR双温度成像引导的光热疗法进行精密纳米医学

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摘要

Imaging-based techniques have enabled the direct integration of noninvasive imaging with minimally invasive interventions such as photothermal therapy (PTT) to improve the precision of treatment. >Methods: We investigated the feasibility of PTT for ovarian cancer under the guidance of PET and MR temperature imaging using copper sulfide nanoparticles (CuS NPs). The tumor distribution of the CuS NPs after systemic administration was assessed using highly sensitive, quantifiable PET imaging. Two wavelengths of near-infrared (NIR) lasers—808 and 980 nm—were tested for PTT using noninvasive MR temperature imaging real-time monitoring. >Results: The in vivo studies revealed that the 980-nm NIR laser had better photothermal effects than the 808-nm NIR laser. These results were in accord with the histologic findings. In vivo PTT using CuS NPs combined with 980-nm laser irradiation achieved significant tumor ablation compared with no treatment control in both subcutaneous (P = 0.007) and orthotopic (P < 0.001) models of ovarian cancer with regard to the percentage of necrotic damage. >Conclusion: Our results indicate that real-time monitoring of the accuracy of PTT is a promising approach for future clinical translation of this emerging thermal ablation technique.
机译:基于成像的技术已使无创成像与诸如光热疗法(PTT)的微创干预措施直接集成在一起,从而提高了治疗的准确性。 >方法:我们在使用硫化铜纳米粒子(CuS NPs)进行PET和MR温度成像的指导下,研究了PTT治疗卵巢癌的可行性。使用高灵敏度,可量化的PET成像评估全身给药后CuS NPs的肿瘤分布。使用无创MR温度成像实时监控,对两种波长的近红外(NIR)激光器808和980 nm进行了PTT测试。 >结果:体内研究表明,980 nm NIR激光器比808 nm NIR激光器具有更好的光热效应。这些结果与组织学结果一致。在卵巢癌皮下(P = 0.007)和原位(P <0.001)模型中,就坏死损伤的百分比而言,使用CuS NPs结合980 nm激光照射的体内PTT与无治疗对照相比,实现了显着的肿瘤消融。 >结论:我们的结果表明,实时监测PTT的准确性是该新兴热消融技术未来临床翻译的有希望的方法。

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