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Multicolor fluorescence imaging using a single RGB-IR CMOS sensor for cancer detection with smURFP-labeled probiotics

机译:使用单个RGB-IR CMOS传感器进行多色荧光成像用于通过smURFP标记的益生菌进行癌症检测

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摘要

A multicolor fluorescence imaging device was recently developed for image-guided surgery. However, conventional systems are typically bulky and function with two cameras. To overcome these issues, we developed an economical home-built fluorescence imaging device based on a single RGB-IR sensor that can acquire both color and fluorescence images simultaneously. The technical feasibility of RGB-IR imaging was verified in chicken breast tissue using fluorescein isothiocyanate (FITC), cyanine 5 (Cy5), and indocyanine green (ICG) as fluorescent agents. The minimum sensitivities for FITC, Cy5, and ICG were 0.200 µM, 0.130 µM, and 0.065 µM, respectively. In addition, we validated the fluorescence imaging of this device during a minimally invasive procedure using smURFP-labeled probiotics, which emit a spectrum similar to that of Cy5. Our preliminary study of the tissue suggests that Cy5 and ICG are good candidates for deep tissue imaging. In addition, the tumor-specific amplification process was visualized using cancer cells incubated with probiotics that had been labeled with a fluorescent protein. Our approach indicates the potential for screening of tumors in rodent tumor models.
机译:最近开发了一种多色荧光成像设备,用于图像引导手术。但是,常规系统通常很笨重,并且具有两个摄像头。为了克服这些问题,我们开发了一种基于单个RGB-IR传感器的经济型家用荧光成像设备,该传感器可以同时获取彩色和荧光图像。使用异硫氰酸荧光素(FITC),花青5(Cy5)和吲哚菁绿(ICG)作为荧光剂,在鸡胸组织中验证了RGB-IR成像的技术可行性。 FITC,Cy5和ICG的最小灵敏度分别为0.200 µM,0.130 µM和0.065 µM。此外,我们使用smURFP标记的益生菌在微创过程中验证了该设备的荧光成像,该光谱发射出类似于Cy5的光谱。我们对组织的初步研究表明Cy5和ICG是深层组织成像的良好候选者。另外,使用与已经用荧光蛋白标记的益生菌孵育的癌细胞,可以观察到肿瘤特异性扩增过程。我们的方法表明了在啮齿动物肿瘤模型中筛选肿瘤的潜力。

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