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Diffuse Fluorescence Tomography of Exo- and Endogenously Labeled Tumors

机译:外和内源性标记肿瘤的扩散荧光层析成像

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Strong light scattering and absorption limit observation of the internal structure of biological tissue. Only special tools for turbid media imaging, such as optical diffuse tomography, enable noninvasive investigation of the internal biological tissues, including visualization and intravital monitoring of deep tumors. In this work the preliminary results of diffuse fluorescence tomography (DFT) of small animals are presented. Usage of exogenous fluorophores, targeted specifically at tumor cells, and fluorescent proteins expressed endogenously can significantly increase the contrast of obtained images. Fluorescent compounds of different nature, such as sulphonated aluminium phthalocyanine (Photosens), red fluorescing proteins and CdTe/CdSe-core/shell nanocrystals (quantum dots) were applied. We tested diffuse fluorescence tomography method at model media, in post mortem and in vivo experiments. The animal was scanned in transilluminative configuration by low-frequency modulated light (1 kHz) from Nd:YAG laser with second harmonic generation at wavelength of 532 nm or semiconductor laser at wavelength of 655 nm. Quantum dots or protein DsRed2 in glass capsules (inner diameter 2-3 mm) were placed post mortem inside the esophagus of 7-day-old hairless rats to simulate marked tumors. Photosens was injected intravenously to linear mice with metastazing Lewis lung carcinoma. The reconstruction algorithm, based on Algebraic Reconstruction Technique, was created and tested numerically in model experiments. High contrast images of tumor simulating capsules with DsRed2 concentrations about 10~(-6) M and quantum dots about 5×10~(-11) M have been obtained. Organ distribution of Photosens and its accumulation in tumors and surrounding tissues of animals has been examined. We have conducted the monitoring of tumors, exogenously labeled by photosensitizer. This work demonstrates potential capabilities of DFT method for intravital detection and monitoring of deep fluorescent-labeled tumors in animal models. The comparative analysis of conventional photosensitizer, fluorescent proteins and quantum dots has been carried out.
机译:强烈的光散射和吸收限制了对生物组织内部结构的观察。只有用于混浊介质成像的特殊工具(例如光学漫射断层扫描)才能对内部生物组织进行无创检查,包括对深部肿瘤进行可视化和活体监测。在这项工作中,提出了小动物的弥散荧光层析成像(DFT)的初步结果。使用专门针对肿瘤细胞的外源荧光团和内源表达的荧光蛋白可以显着提高获得的图像的对比度。使用了不同性质的荧光化合物,例如磺化酞菁铝(Photosens),红色荧光蛋白和CdTe / CdSe核/壳纳米晶体(量子点)。我们在验尸和体内实验中,在模型培养基上测试了扩散荧光层析成像方法。用来自Nd:YAG激光器的低频调制光(1 kHz)以透射照明配置扫描动物,该激光器具有532 nm波长的二次谐波或655 nm波长的半导体激光器。将尸体中的量子点或蛋白质DsRed2(内径2-3 mm)放置在7天大无毛大鼠食道内的尸体中,以模拟明显的肿瘤。将光敏剂静脉内注射到转移性Lewis肺癌的线性小鼠中。建立了基于代数重建技术的重建算法,并在模型实验中对其进行了数值测试。获得了DsRed2浓度约为10〜(-6)M,量子点约为5×10〜(-11)M的肿瘤模拟胶囊的高对比度图像。已经检查了光子的器官分布及其在动物的肿瘤和周围组织中的积累。我们已经进行了由光敏剂外源标记的肿瘤的监测。这项工作演示了DFT方法在动物模型中活体检测和监测深荧光标记的肿瘤的潜在功能。已对常规光敏剂,荧光蛋白和量子点进行了比较分析。

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