Sheth Rahul A, Wen Xiaoxia, Li Junjie, Melancon Marites P, Ji Xin, Wang Y Andrew, Hsiao Cheng-Hui, Chow Diana S-L, Whitley Elizabeth M, Li Chun, Gupta Sanjay
Department of Interventional Radiology, The University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA.
Department of Cancer Systems Imaging, The University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA.
Cancer Nanotechnol. 2020;11(1). doi: 10.1186/s12645-020-00062-8. Epub 2020 Jul 1.
Doxorubicin-loaded hollow gold nanospheres (Dox@HAuNS) are a promising technology for simultaneous trans-arterial tumor-targeted chemotherapy delivery and thermal ablation. We evaluated the efficacy of intra-arterial delivery of Dox@HAuNS followed by photothermal ablation (PTA) in a rabbit model of liver cancer. Adult New Zealand white rabbits (N=25) were inoculated with VX2 tumors into the left lobe of the liver. The animals were then randomized to sham surgery (N=5), PTA only (N=3), Dox@HAuNS only (N=5), HAuNS + PTA (N=5), and Dox@HAuNS + PTA (N=7). Nanoparticles were delivered as an emulsion with Lipiodol (Guerbet, France) via a trans-arterial approach. Following nanoparticle delivery, PTA was performed using an 808nm fibered laser at 1.5W for 3 minutes. Thermography during PTA demonstrated a sustained elevation in tumoral temperature in both HAuNS + laser and Dox@HAuNS + laser treatment groups relative to animals that underwent laser treatment without prior nanoparticle delivery.
There was a significant decrease in tumor volumes in all three treatment arms relative to control arms ( = 0.004). Concentrations of intratumoral doxorubicin were significantly greater in animals treated with laser compared to those that were not treated with laser (< 0.01).
Doxorubicin-loaded HAuNS is a promising therapeutic agent for dual ablation/chemoembolization treatment of liver cancer.
负载阿霉素的中空金纳米球(Dox@HAuNS)是一种用于同时进行经动脉肿瘤靶向化疗给药和热消融的有前景的技术。我们在兔肝癌模型中评估了经动脉递送Dox@HAuNS后进行光热消融(PTA)的疗效。成年新西兰白兔(N = 25)在肝脏左叶接种VX2肿瘤。然后将动物随机分为假手术组(N = 5)、单纯PTA组(N = 3)、单纯Dox@HAuNS组(N = 5)、HAuNS + PTA组(N = 5)和Dox@HAuNS + PTA组(N = 7)。纳米颗粒通过经动脉途径与碘油(法国加柏公司)制成乳剂进行递送。纳米颗粒递送后,使用808nm光纤激光以1.5W功率进行3分钟的PTA。PTA期间的热成像显示,相对于未预先递送纳米颗粒而接受激光治疗的动物,HAuNS +激光和Dox@HAuNS +激光治疗组的肿瘤温度持续升高。
与对照组相比,所有三个治疗组的肿瘤体积均显著减小(P = 0.004)。与未接受激光治疗的动物相比,接受激光治疗的动物瘤内阿霉素浓度显著更高(P < 0.01)。
负载阿霉素的HAuNS是一种有前景的用于肝癌双重消融/化疗栓塞治疗的治疗剂。