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Photo-thermal cancer therapy using intravenously injected near infrared- absorbing nanoparticles

机译:使用静脉注射近红外吸收纳米粒子的光热癌症疗法

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This report focuses on the treatment parameters leading to successful nanoshell-assisted photo-thermal therapy (NAPT). NAPT takes advantage of the strong near infrared (NIR) absorption of gold-silica nanoshells, a new class of nanoparticles with tunable optical absorptivities that are capable of passive extravasation from the abnormal tumor vasculature due to their nanoscale size. Under controlled conditions nanoshells accumulate in tumors with superior efficiency compared to surrounding tissues. For this treatment: (1) tumors were inoculated in immune-competent mice by subcutaneous injection, (2) polyethylene glycol coated nanoshells (≈150 nm diameter) with peak optical absorption in the NIR were intravenously injected and allowed to circulate for 6-48 hours, and (3) tumors were then extracorporeally illuminated with a collimated diode laser (808 nm, 2-6 W/cm2, 2-4 min). Nanoshell accumulations were quantitatively assessed in tumors and surrounding tissues using neutron activation analysis for gold. In order to assess temperature elevation, laser therapies were monitored in real-time using a mid-infrared thermal sensor. NAPT resulted in complete tumor regression in >90% of the subjects. This simple, non-invasive procedure shows great promise as a technique for selective photo-thermal tumor treatment.
机译:本报告重点介绍了成功实现纳米壳辅助光热疗法(NAPT)的治疗参数。 NAPT充分利用了金-二氧化硅纳米壳的强近红外(NIR)吸收能力,这是一类具有可调光吸收率的新型纳米颗粒,由于其纳米级尺寸,它们能够从异常的肿瘤血管中被动渗出。在受控条件下,纳米壳在肿瘤中的蓄积效率要高于周围组织。对于该治疗:(1)通过皮下注射在具有免疫能力的小鼠中接种肿瘤;(2)静脉注射在NIR中具有最大光吸收的聚乙二醇涂层纳米壳(直径约150 nm),使其循环6-48 3小时,然后用准直二极管激光器(808nm,2-6W / cm 2,2-4min)体外照射肿瘤。使用金的中子活化分析定量评估了肿瘤和周围组织中的纳米壳积累。为了评估温度升高,使用中红外热传感器实时监测激光疗法。 NAPT导致> 90%的受试者完全肿瘤消退。这种简单的,非侵入性的方法作为选择性光热肿瘤治疗技术具有广阔的前景。

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