Mol Imaging. 2013 Nov-Dec;12(8). doi: 10.2310/7290.2013.00064.
Viewing individual cells and ambient microvasculature simultaneously is crucial for understanding tumor angiogenesis and microenvironments. We developed a confocal fluorescence microscopy (CFM) and photoacoustic microscopy (PAM) dual-modality imaging system that can assess fluorescent contrast and optical absorption contrast in biologic samples simultaneously. After staining tissues with fluorescent dye at an appropriate concentration, each laser pulse can generate not only sufficient fluorescent signals from cells for CFM but also sufficient photoacoustic signals from microvessels for PAM. To explore the potential of this system for diagnosis of bladder cancer, experiments were conducted on a rat bladder model. The CFM image depicts the morphology of individual cells, showing not only large polygonal umbrella cells but also intracellular components. The PAM image acquired at the same time provides complementary information on the microvascular distribution in the bladder wall, ranging from large vessels to capillaries. This device provides an opportunity to realize both histologic assay and microvascular characterization simultaneously. The combination of the information of individual cells and local microvasculature in the bladder offers the capability of envisioning the viability and activeness of these cells and holds promise for more comprehensive study of bladder cancer in vivo.
同时观察单个细胞和周围的微血管对于理解肿瘤血管生成和微环境至关重要。我们开发了一种共聚焦荧光显微镜 (CFM) 和光声显微镜 (PAM) 双模式成像系统,能够同时评估生物样本中的荧光对比和光吸收对比。将组织用适当浓度的荧光染料染色后,每个激光脉冲不仅可以从细胞中产生足够的 CFM 荧光信号,还可以从微血管中产生足够的 PAM 光声信号。为了探索该系统在膀胱癌诊断中的潜力,我们在大鼠膀胱模型上进行了实验。CFM 图像描绘了单个细胞的形态,不仅显示了大的多边形伞细胞,还显示了细胞内成分。同时获得的 PAM 图像提供了膀胱壁中小血管分布的补充信息,从大血管到毛细血管。该设备为同时实现组织学检测和微血管特征提供了机会。膀胱中单个细胞和局部微血管的信息结合,使我们能够预测这些细胞的活力和活性,有望更全面地研究膀胱癌的体内情况。