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首页> 外文期刊>International Journal of Cancer =: Journal International du Cancer >Dual wavelength tumor targeting for detection of hypopharyngeal cancer using near-infrared optical imaging in an animal model
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Dual wavelength tumor targeting for detection of hypopharyngeal cancer using near-infrared optical imaging in an animal model

机译:在动物模型中使用近红外光学成像对双波长肿瘤靶向检测下咽癌

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Optical imaging is a promising technique to visualize cancer tissue during surgery. In this study, we explored the use of combinations of near-infrared (NIR) fluorescence agents that emit fluorescence signal at different wavelengths and each target specific tumor characteristics. Two combinations of agents (ProSense680 combined with 2DG CW800 and MMPSense680 combined with EGF CW800) were used to detect hypopharyngeal cancer in an animal model. ProSense680 and MMPSense680 detect increased activity of cathepsins and matrix metalloproteinases, respectively. These enzymes are mainly found in the invasive tumor border due to degradation of the extracellular matrix. 2DG CW800 detects tumor cells with high glucose metabolism and EGF CW800 is internalized by the epidermal growth factor receptor of tumor cells. Whole-body imaging revealed clear demarcation of tumor tissue using all four agents. The tumor-to-background ratio (standard deviation, p-value) was 3.69 (0.72, p < 0.001) for ProSense680; 4.26 (1.33, p < 0.001) for MMPSense680; 5.81 (3.59, p = 0.02) for 2DG CW800 and 4.84 (1.56, p < 0.001) for EGF CW800. Fluorescence signal corresponded with histopathology and immunohistochemistry, demonstrating signal of ProSense680 and MMPSense680 in the invasive tumor border, and signal of 2DG CW800 and EGF CW800 in the tumor tissue. In conclusion, we demonstrated the feasibility of dual wavelength tumor detection using different targeting strategies simultaneously in an animal model. Combined targeting at different wavelengths allowed simultaneous imaging of different tumor characteristics. NIR fluorescence optical imaging has the potential to be translated into the clinic in order to improve the complete removal of tumors by real-time image-guided surgery.
机译:光学成像是在手术期间可视化癌组织的有前途的技术。在这项研究中,我们探索了近红外(NIR)荧光剂组合的使用,这些组合物以不同的波长发射荧光信号,并且每种靶标都有特定的肿瘤特征。两种试剂组合(ProSense680与2DG CW800组合和MMPSense680与EGF CW800组合)用于检测动物模型中的咽咽癌。 ProSense680和MMPSense680分别检测组织蛋白酶和基质金属蛋白酶的活性增加。由于细胞外基质的降解,这些酶主要存在于浸润性肿瘤边界。 2DG CW800检测到具有高葡萄糖代谢的肿瘤细胞,EGF CW800被肿瘤细胞的表皮生长因子受体内化。全身成像显示,使用所有四种药物清楚地标明了肿瘤组织。 ProSense680的肿瘤与背景之比(标准差,p值)为3.69(0.72,p <0.001); MMPSense680为4.26(1.33,p <0.001); 2DG CW800为5.81(3.59,p = 0.02),EGF CW800为4.84(1.56,p <0.001)。荧光信号与组织病理学和免疫组织化学相对应,在浸润性肿瘤边界显示ProSense680和MMPSense680信号,在肿瘤组织中显示2DG CW800和EGF CW800信号。总之,我们证明了在动物模型中同时使用不同的靶向策略进行双波长肿瘤检测的可行性。结合在不同波长的靶向允许同时成像不同的肿瘤特征。 NIR荧光光学成像有潜力被转化为临床,以改善通过实时图像引导手术彻底清除肿瘤的能力。

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