Department of Geriatric, Chongqing General Hospital (University of Chinese Academy of Sciences Chongqing Hospital), Chongqing 400014, China.
Department of Ultrasound, Chongqing General Hospital (University of Chinese Academy of Sciences Chongqing Hospital), Chongqing 400014, China.
Biomed Res Int. 2020 Sep 18;2020:6863231. doi: 10.1155/2020/6863231. eCollection 2020.
Gold nanorods exhibit a wide variety of applications such as tumor molecular imaging and photothermal therapy (PTT) due to their tunable optical properties. Several studies have demonstrated that the combination of other therapeutic strategies may improve PTT efficiency. A method called optical droplet vaporization (ODV) was considered as another noninvasive imaging and therapy strategy. Via the ODV method, superheated perfluorocarbon droplets can be vaporized to a gas phase for enhancing ultrasound imaging; meanwhile, this violent process can cause damage to cells and tissue. In addition, active targeting through the functionalization with targeting ligands can effectively increase nanoprobe accumulation in the tumor area, improving the sensitivity and specificity of imaging and therapy. Our study prepared a nanoparticle loaded with gold nanorods and perfluorinated hexane and conjugated to a monoclonal antibody (MAGE-1 antibody) to melanoma-associated antigens (MAGE) targeting melanoma, investigated the synergistic effect of PTT/ODV therapy, and monitored the therapeutic effect using ultrasound. The prepared MAGE-Au-PFH-NPs achieved complete eradication of tumors. Meanwhile, the MAGE-Au-PFH-NPs also possess significant ultrasound imaging signal enhancement, which shows the potential for imaging-guided tumor therapy in the future.
金纳米棒由于其可调谐的光学性质,在肿瘤分子成像和光热治疗(PTT)等方面具有广泛的应用。有几项研究表明,结合其他治疗策略可能会提高 PTT 的效率。一种名为光液滴蒸发(ODV)的方法被认为是另一种非侵入性的成像和治疗策略。通过 ODV 方法,过热的全氟碳液滴可以蒸发到气相中以增强超声成像;同时,这个剧烈的过程会对细胞和组织造成损伤。此外,通过与靶向配体的功能化进行主动靶向,可以有效地增加纳米探针在肿瘤区域的积累,提高成像和治疗的灵敏度和特异性。我们的研究制备了负载金纳米棒和全氟己烷的纳米颗粒,并与针对黑色素瘤相关抗原(MAGE)的单克隆抗体(MAGE-1 抗体)偶联,以靶向黑色素瘤,研究了 PTT/ODV 治疗的协同作用,并使用超声监测治疗效果。所制备的 MAGE-Au-PFH-NPs 实现了肿瘤的完全根除。同时,MAGE-Au-PFH-NPs 还具有显著的超声成像信号增强,这显示了未来用于成像引导肿瘤治疗的潜力。