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PET and NIR Optical Imaging Using Self-Illuminating 64Cu-Doped Chelator-Free Gold Nanoclusters

机译:使用自发光的64Cu掺杂无螯合剂金纳米团簇进行PET和NIR光学成像

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摘要

Self-illuminating fluorescence imaging without autofluorescence background interference has recently aroused more research interests in molecular imaging. Currently, only a few self-illuminating probes were developed, based mainly on toxic quantum dots such as CdSe, CdTe. Herein, we report a novel design of nontoxic self-illuminating gold nanocluster (64Cu-doped AuNCs) for dual-modality positron emission tomography (PET) and near-infrared (NIR) fluorescence imaging based on Cerenkov resonance energy transfer (CRET). PET radionuclide 64Cu was introduced by a chelator-free doping method, which played dual roles as the energy donor and the PET imaging source. Meanwhile, AuNCs acted as the energy acceptor for NIR fluorescence imaging. 64Cu-doped AuNCs exhibited efficient CRET-NIR and PET imaging both in vitro and in vivo. In a U87MG glioblastoma xenograft model, 64Cu-doped AuNCs showed high tumor uptake (14.9%ID/g at 18 h) and produced satisfactory tumor self-illuminating NIR images in the absence of external excitation. This self-illuminating nanocluster with non-toxicity and good biocompatibility can be employed as a novel imaging contrast agent for biomedical applications, especially for molecular imaging.
机译:没有自发荧光背景干扰的自发光荧光成像最近引起了分子成像领域的更多研究兴趣。目前,仅基于主要有毒量子点(例如CdSe,CdTe)开发了几种自发光探针。本文中,我们报道了基于Cerenkov的双模态正电子发射断层扫描(PET)和近红外(NIR)荧光成像的无毒自发光金纳米簇( 64 Cu掺杂AuNCs)的新颖设计。共振能量转移(CRET)。通过无螯合掺杂方法引入了PET放射性核素 64 Cu,它在能量供体和PET成像源中起着双重作用。同时,AuNCs用作近红外荧光成像的能量受体。 64 Cu掺杂的AuNCs在体外和体内均表现出有效的CRET-NIR和PET成像。在U87MG胶质母细胞瘤异种移植模型中,掺杂了 64 Cu的AuNCs具有很高的肿瘤吸收率(在18 h时为14.9%ID / g),并且在没有外部激发的情况下产生令人满意的肿瘤自发光NIR图像。这种无毒且具有良好生物相容性的自发光纳米簇可用作生物医学应用特别是分子成像的新型成像造影剂。

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