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首页> 外文期刊>Nanoscale >Five-nanometer ZnSn2O4: Cr, Eu ultra-small nanoparticles as new near infrared-emitting persistent luminescent nanoprobes for cellular and deep tissue imaging at 800 nm
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Five-nanometer ZnSn2O4: Cr, Eu ultra-small nanoparticles as new near infrared-emitting persistent luminescent nanoprobes for cellular and deep tissue imaging at 800 nm

机译:欧盟Five-nanometer ZnSn2O4: Cr,超薄纳米粒子作为新的近红外线发光持续发光nanoprobes细胞在800纳米和深层组织成像

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摘要

Until now, the afterglow emissions of most developed near infrared (NIR)-emitting persistent luminescent nanoparticles (NPLNPs) were located at approximately 700 nm, at the edge of the first tissue transparency window (from 650 to 900 nm), which resulted in relatively low tissue penetration and signal-to-noise ratio (SNR) for in vivo imaging. Herein, 5 nm ZnSn2O4: Cr, Eu (ZSO) NPLNPs with NIR afterglow emission at 800 nm are synthesized via a direct aqueous-phase synthesis method. The longer NIR afterglow emission of ZSO NPLNPs can easily penetrate approximately 3 cm of pork tissue. Furthermore, even though the backbones blocked part of the NIR afterglow light, high SNR (25.5) in vivo images of the backs of mice can be observed and can be maintained for more than 15 min. The ZSO nanoprobes conjugated with folic acid exhibited excellent in vitro and in vivo tumor targeting capacity, which was advantageous for accurate tumor diagnosis. More importantly, the ZSO NPLNPs can be re-excited in situ and in vivo using NIR light to realize renewable near-infrared persistent luminescence in vivo, which was helpful for very long term and higher SNR in vitro and in vivo imaging.
机译:直到现在,大多数的余辉排放发展近红外(NIR)发出持久的发光纳米粒子(NPLNPs)所在地在大约700海里,在第一次的边缘组织透明窗(从650年到900海里),导致相对较低的组织吗渗透和信噪比(信噪比)体内成像。(ZSO) NPLNPs NIR余辉发射,享年800岁通过直接水相纳米合成合成方法。排放ZSO NPLNPs很容易穿透大约3厘米的猪肉组织。尽管脊椎封锁了近红外光谱的一部分余辉光、高信噪比(25.5)体内图像可以观察到的老鼠的背上,可以超过15分钟。ZSO维护与叶酸展出nanoprobes共轭优秀的体外和体内肿瘤靶向能力,便于准确肿瘤的诊断。可以使用近红外光谱原位re-excited和体内光,实现可再生近红外持续发光体内,有利于长期和更高的信噪比体外和体内成像。

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