生物正交化学
四嗪
预定位
化学
荧光团
点击化学
体内
纳米探针
荧光寿命成像显微镜
荧光
生物物理学
前药
组合化学
纳米技术
临床前影像学
分子成像
材料科学
生物化学
有机化学
纳米颗粒
物理
生物技术
抗体
放射免疫疗法
量子力学
免疫学
单克隆抗体
生物
作者
He Li,João Conde,Ana Guerreiro,Gonçalo J. L. Bernardes
标识
DOI:10.1002/anie.202008012
摘要
Abstract The bioorthogonal inverse‐electron‐demand Diels–Alder (IEDDA) cleavage reaction between tetrazine and trans ‐cyclooctene (TCO) is a powerful way to control the release of bioactive agents and imaging probes. In this study, a pretargeted activation strategy using single‐walled carbon nanotubes (SWCNTs) that bear tetrazines (TZ@SWCNTs) and a TCO‐caged molecule was used to deliver active effector molecules. To optimize a turn‐on signal by using in vivo fluorescence imaging, we developed a new fluorogenic near‐infrared probe that can be activated by bioorthogonal chemistry and image tumours in mice by caging hemicyanine with TCO (tHCA). With our pretargeting strategy, we have shown selective doxorubicin prodrug activation and instantaneous fluorescence imaging in living cells. By combining a tHCA probe and a pretargeted bioorthogonal approach, real‐time, non‐invasive tumour visualization with a high target‐to‐background ratio was achieved in a xenograft mice tumour model. The combined advantages of enhanced stability, kinetics and biocompatibility, and the superior pharmacokinetics of tetrazine‐functionalised SWCNTs could allow application of targeted bioorthogonal decaging approaches with minimal off‐site activation of fluorophore/drug.
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