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3-D 光声和脉冲回波成像在小鼠窗室中检测前列腺肿瘤的进展。

3-D photoacoustic and pulse echo imaging of prostate tumor progression in the mouse window chamber.

机构信息

University of Arizona, Department of Radiology, 1609 North Warren Avenue, Tucson, Arizona 85724, USA.

出版信息

J Biomed Opt. 2011 Feb;16(2):026012. doi: 10.1117/1.3540668.

Abstract

Understanding the tumor microenvironment is critical to characterizing how cancers operate and predicting their response to treatment. We describe a novel, high-resolution coregistered photoacoustic (PA) and pulse echo (PE) ultrasound system used to image the tumor microenvironment. Compared to traditional optical systems, the platform provides complementary contrast and important depth information. Three mice are implanted with a dorsal skin flap window chamber and injected with PC-3 prostate tumor cells transfected with green fluorescent protein. The ensuing tumor invasion is mapped during three weeks or more using simultaneous PA and PE imaging at 25 MHz, combined with optical and fluorescent techniques. Pulse echo imaging provides details of tumor structure and the surrounding environment with 100-μm(3) resolution. Tumor size increases dramatically with an average volumetric growth rate of 5.35 mm(3)/day, correlating well with 2-D fluorescent imaging (R = 0.97, p < 0.01). Photoacoustic imaging is able to track the underlying vascular network and identify hemorrhaging, while PA spectroscopy helps classify blood vessels according to their optical absorption spectrum, suggesting variation in blood oxygen saturation. Photoacoustic and PE imaging are safe, translational modalities that provide enhanced depth resolution and complementary contrast to track the tumor microenvironment, evaluate new cancer therapies, and develop molecular contrast agents in vivo.

摘要

了解肿瘤微环境对于描述癌症的运作方式和预测其对治疗的反应至关重要。我们描述了一种新颖的、高分辨率的共配准光声(PA)和脉冲回波(PE)超声系统,用于成像肿瘤微环境。与传统的光学系统相比,该平台提供了互补的对比度和重要的深度信息。将三只老鼠植入背部皮肤瓣窗室,并注射转染绿色荧光蛋白的 PC-3 前列腺肿瘤细胞。使用 25 MHz 的同时 PA 和 PE 成像,结合光学和荧光技术,在三周或更长时间内对随后的肿瘤侵袭进行映射。脉冲回波成像以 100-μm(3)的分辨率提供肿瘤结构和周围环境的详细信息。肿瘤大小显著增加,平均体积增长率为 5.35 mm(3)/天,与 2-D 荧光成像相关性良好(R = 0.97,p < 0.01)。光声成像能够跟踪潜在的血管网络并识别出血,而 PA 光谱学有助于根据其光吸收光谱对血管进行分类,表明血液氧饱和度存在差异。光声和 PE 成像都是安全的、可转化的模式,可以提供增强的深度分辨率和互补的对比度,用于跟踪肿瘤微环境、评估新的癌症疗法和开发体内分子对比剂。

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