Kovar Joy L, Volcheck William, Sevick-Muraca Eva, Simpson Melanie A, Olive D Michael
Molecular Biology, LI-COR Biosciences, Lincoln, NE 68504, USA.
Anal Biochem. 2009 Jan 15;384(2):254-62. doi: 10.1016/j.ab.2008.09.050. Epub 2008 Oct 7.
Malignant neoplasms exhibit an elevated rate of glycolysis over normal cells. This characteristic can be exploited for optical imaging of tumors in mice. A near-infrared fluorophore, IRDye 800CW, emission maximum 794 nm, was conjugated to 2-deoxyglucose (2-DG). An immunofluorescent cell-based assay was used to evaluate specificity and sensitivity of the conjugate in cultured cell monolayers. Dose-dependent uptake was established with increasing concentrations of IRDye 800CW 2-DG for epithelial and prostate carcinomas. IRDye 800CW 2-DG was specifically blocked by an antibody against GLUT1 glucose transporter, and by excess unlabeled 2-DG or d-glucose. Signal was increased by a phorbol ester activator of glucose transport. Fluorescence microscopy data confirmed localization of the conjugate in the cytoplasm. Subsequent in vivo studies optimized dose, clearance, and timing for signal capture in nude mouse xenografts. In all cases, tumors were clearly imaged with good signal-to-noise characteristics. These data indicate that IRDye 800CW 2-DG is a broadly applicable optical imaging agent for in vivo imaging of neoplasms in mice.
恶性肿瘤细胞的糖酵解速率高于正常细胞。这一特性可用于小鼠肿瘤的光学成像。一种近红外荧光团IRDye 800CW,最大发射波长为794nm,与2-脱氧葡萄糖(2-DG)偶联。采用基于免疫荧光细胞的分析方法评估该偶联物在培养细胞单层中的特异性和敏感性。对于上皮癌和前列腺癌,随着IRDye 800CW 2-DG浓度的增加,建立了剂量依赖性摄取。IRDye 800CW 2-DG被抗GLUT1葡萄糖转运蛋白抗体、过量未标记的2-DG或d-葡萄糖特异性阻断。葡萄糖转运的佛波酯激活剂可增强信号。荧光显微镜数据证实了偶联物在细胞质中的定位。随后的体内研究优化了裸鼠异种移植瘤信号捕获的剂量、清除率和时间。在所有情况下,肿瘤均能清晰成像,具有良好的信噪比特性。这些数据表明,IRDye 800CW 2-DG是一种广泛适用的光学成像剂,可用于小鼠体内肿瘤的成像。