荧光团
荧光
体内
近红外光谱
光学成像
共轭体系
材料科学
生物物理学
化学
光学
生物
聚合物
物理
生物技术
复合材料
作者
Hak Soo Choi,Summer L. Gibbs,Jeong‐Heon Lee,Soon Hee Kim,Yoshitomo Ashitate,Fangbing Liu,Hoon Hyun,GwangLi Park,Yang Xie,Soochan Bae,Maged Henary,John V. Frangioni
摘要
Diagnostic and surgical procedures that rely on optical imaging are improved by using near-infrared fluorescent probes with low background signal. The signal-to-background ratio (SBR) is the key determinant of sensitivity, detectability and linearity in optical imaging. As signal strength is often constrained by fundamental limits, background reduction becomes an important approach for improving the SBR. We recently reported that a zwitterionic near-infrared (NIR) fluorophore, ZW800-1, exhibits low background. Here we show that this fluorophore provides a much-improved SBR when targeted to cancer cells or proteins by conjugation with a cyclic RGD peptide, fibrinogen or antibodies. ZW800-1 outperforms the commercially available NIR fluorophores IRDye800-CW and Cy5.5 in vitro for immunocytometry, histopathology and immunoblotting and in vivo for image-guided surgery. In tumor model systems, a tumor-to-background ratio of 17.2 is achieved at 4 h after injection of ZW800-1 conjugated to cRGD compared to ratios of 5.1 with IRDye800-CW and 2.7 with Cy5.5. Our results suggest that introducing zwitterionic properties into targeted fluorophores may be a general strategy for improving the SBR in diagnostic and therapeutic applications.
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