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Fluorescence diffuse tomography for detection of RFP-expressed tumors in small animals

机译:用于检测小动物的RFP表达肿瘤的荧光弥漫性断层扫描

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Conventional optical imaging is restricted with tumor size due to high tissue scattering. Labeling of tumors by fluorescent markers improves sensitivity of tumor detection thus increasing the value of optical imaging dramatically. Creation of tumor cell lines transfected with fluorescent proteins gives the possibility not only to detect tumor, but also to conduct the intravital monitoring studies. Cell lines of human melanomas Mel-P, Mel-Kor and human embryonic kidney HEK-293 Phoenix were transfected with DsRed-Express and TurboRFP genes. Emission of RFP in the long-wave optical range permits detection of the deeply located tumors, which is essential for whole-body imaging. Only special tools for turbid media imaging, such as fluorescent diffusion tomography (FDT), enable noninvasive investigation of the internal structure of biological tissue. FDT setup for monitoring of tumor growth in small animals has been created. An animal is scanned in the transilluminative configuration by low-frequency modulated light (1 kHz) from Nd:YAG laser with second harmonic generation at the 532 nm wavelength. In vivo experiments were conducted immediately after the subcutaneously injection of fluorescing cells into small animals. It was shown that FDT method allows to detect the presence of fluorescent cells in small animals and can be used for monitoring of tumor growth and anticancer drug responce.
机译:由于高组织散射,常规光学成像受到肿瘤大小的限制。通过荧光标记标记肿瘤的标记提高了肿瘤检测的敏感性,从而提高了光学成像的值。用荧光蛋白转染的肿瘤细胞系的造成不仅可以检测肿瘤,而且还可以进行膀胱内监测研究。用DSRED-EXPRESS和Turborfp基因转染人黑色素组,Mel-K和人胚胎肾HEK-293凤凰的细胞系。在长波光学范围内的RFP的发射允许检测深度定位的肿瘤,这对于全身成像至关重要。只有用于浊度介质成像的特殊工具,例如荧光扩散断层扫描(FDT),可以进行非侵入性研究生物组织的内部结构。已经创建了用于监测小动物肿瘤生长的FDT设置。通过从Nd:YAG激光的低频调制光(1kHz)在经发光的光(1kHz)中扫描一种动物,在532nm波长下具有第二谐波产生。在将荧光细胞皮下注射到小动物后立即进行体内实验。结果表明,FDT方法允许检测小动物中荧光细胞的存在,可用于监测肿瘤生长和抗癌药物应答。

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