Li Meng-Lin, Wang James Chunjay, Schwartz Jon A, Gill-Sharp Kelly L, Stoica George, Wang Lihong V
National Tsing Hua University, Department of Electrical Engineering, Hsinchu, 30013, Taiwan.
J Biomed Opt. 2009 Jan-Feb;14(1):010507. doi: 10.1117/1.3081556.
In this study, high resolution backward-mode photoacoustic microscopy (PAM) is used to noninvasively image progressive extravasation and accumulation of nanoshells within a solid tumor in vivo. PAM takes advantage of the strong near-infrared absorption of nanoshells and their extravasation tendency from leaky tumor vasculatures for imaging. Subcutaneous tumors are grown on immunocompetent BALB/c mice. Polyethylene glycol (PEGylated) nanoshells with a peak optical absorption at approximately 800 nm are intravenously administered. With an 800-nm laser source, a prescan prior to nanoshell injection is taken to determine the background that is free of nanoshell accumulation. After injection, the 3-D nanoshell distribution at the tumor foci is monitored by PAM for 6 h. Experimental results show that accumulated nanoshells delineate the tumor position. Nanoshell accumulation is heterogeneous in tumors: more concentrated within the tumor cortex and largely absent from the tumor core. Because nanoshells have been recently demonstrated to enhance thermal therapy of subcutaneous tumors, we anticipate that PAM will be an important aid before, during, and after nanoshell thermal therapy.
在本研究中,高分辨率反向模式光声显微镜(PAM)用于在体内对实体瘤内纳米壳的渐进性外渗和积累进行无创成像。PAM利用纳米壳强烈的近红外吸收特性及其从渗漏的肿瘤血管中渗出的倾向来进行成像。在具有免疫活性的BALB/c小鼠身上生长皮下肿瘤。静脉注射在约800nm处具有峰值光吸收的聚乙二醇(聚乙二醇化)纳米壳。使用800nm激光源,在纳米壳注射前进行预扫描以确定无纳米壳积累的背景。注射后,通过PAM监测肿瘤病灶处的三维纳米壳分布6小时。实验结果表明,积累的纳米壳勾勒出肿瘤位置。纳米壳在肿瘤中的积累是异质性的:在肿瘤皮层内更集中,而在肿瘤核心中基本不存在。由于最近已证明纳米壳可增强皮下肿瘤的热疗,我们预计PAM在纳米壳热疗之前、期间和之后将是一项重要的辅助手段。