分子成像
材料科学
荧光寿命成像显微镜
近红外光谱
生物结合
荧光
临床前影像学
显微镜
自体荧光
纳米技术
生物医学工程
生物物理学
体内
光学
生物
医学
生物技术
物理
作者
Shoujun Zhu,Sonia Herraiz,Jingying Yue,Mingxi Zhang,Hao Wan,Qinglai Yang,Zhuoran Ma,Yan Wang,Jiahuan He,Alexander L. Antaris,Yeteng Zhong,Shuo Diao,Yi Feng,Ying Zhou,Kuai Yu,Guosong Hong,Yongye Liang,Aaron J.W. Hsueh,Hongjie Dai
标识
DOI:10.1002/adma.201705799
摘要
Greatly reduced scattering in the second near-infrared (NIR-II) region (1000-1700 nm) opens up many new exciting avenues of bioimaging research, yet NIR-II fluorescence imaging is mostly implemented by using nontargeted fluorophores or wide-field imaging setups, limiting the signal-to-background ratio and imaging penetration depth due to poor specific binding and out-of-focus signals. A newly developed high-performance NIR-II bioconjugate enables targeted imaging of a specific organ in the living body with high quality. Combined with a home-built NIR-II confocal set-up, the enhanced imaging technique allows 900 µm-deep 3D organ imaging without tissue clearing techniques. Bioconjugation of two hormones to nonoverlapping NIR-II fluorophores facilitates two-color imaging of different receptors, demonstrating unprecedented multicolor live molecular imaging across the NIR-II window. This deep tissue imaging of specific receptors in live animals allows development of noninvasive molecular imaging of multifarious models of normal and neoplastic organs in vivo, beyond the traditional visible to NIR-I range. The developed NIR-II fluorescence microscopy will become a powerful imaging technique for deep tissue imaging without any physical sectioning or clearing treatment of the tissue.
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