首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Early photon tomography allows fluorescence detection of lung carcinomas and disease progression in mice in vivo
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Early photon tomography allows fluorescence detection of lung carcinomas and disease progression in mice in vivo

机译:早期的光子断层扫描技术可以在小鼠体内进行荧光检测肺癌和疾病进展

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摘要

Imaging of targeted fluorescent probes offers significant advantages for investigating disease and tissue function in animal models in vivo. Conversely, macroscopic tomographic imaging is challenging because of the high scatter of light in biological tissue and the ill-posed nature of the reconstruction mathematics. In this work, we use the earliest-transmitted photons through Lewis Lung Carcinoma bearing mice, thereby dramatically reducing the effect of tissue scattering. By using a fluorescent probe sensitive to cysteine proteases, the method yielded outstanding imaging performance compared with conventional approaches. Accurate visualization of biochemical abnormalities was achieved, not only in the primary tumor, but also in the surrounding tissue related to cancer progression and inflammatory response at the organ level. These findings were confirmed histologically and with ex vivo fluorescence microscopy. The imaging fidelity demonstrated underscores a method that can use a wide range of fluorescent probes to accurately visualize cellular- and molecular-level events in whole animals in vivo.
机译:靶向荧光探针的成像为研究体内动物模型中的疾病和组织功能提供了显着优势。相反,由于在生物组织中的高光散射和重建数学的不适定性,因此宏观层析成像具有挑战性。在这项工作中,我们使用最早传播的光子通过带有Lewis Lung癌的小鼠,从而大大降低了组织散射的影响。与常规方法相比,通过使用对半胱氨酸蛋白酶敏感的荧光探针,该方法产生了出色的成像性能。不仅在原发性肿瘤中,而且在与癌症进展和器官水平的炎症反应有关的周围组织中,都可以实现对生化异常的准确可视化。这些发现在组织学和离体荧光显微镜下得到证实。所显示的成像保真度强调了一种方法,该方法可以使用多种荧光探针来准确地可视化整个体内动物体内的细胞和分子水平的事件。

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