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首页> 外文期刊>Small >915 nm Light-Triggered Photodynamic Therapy and MR/CT Dual-Modal Imaging of Tumor Based on the Nonstoichiometric Na0.52YbF3.52:Er Upconversion Nanoprobes
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915 nm Light-Triggered Photodynamic Therapy and MR/CT Dual-Modal Imaging of Tumor Based on the Nonstoichiometric Na0.52YbF3.52:Er Upconversion Nanoprobes

机译:基于非化学计量的Na0.52YbF3.52:Er上转换纳米探针的915 nm光触发的光动力疗法和MR / CT双模态成像

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摘要

Lanthanide (Ln(3+))-doped upconversion nanoparticles (UCNPs) as a new generation of multimodal bioprobes have attracted great interest for theranostic purpose. Herein, red emitting nonstoichiometric Na0.52YbF3.52:Er UCNPs of high luminescence intensity and color purity are synthesized via a facile solvothermal method. The red UC emission from the present nanophosphors is three times more intense than the well-known green emission from the approximate to 30 nm sized hexagonal-phase NaYF4:Yb,Er UCNPs. By utilizing Na0.52YbF3.52:Er@SrF2 UCNPs as multifunctional nanoplatforms, highly efficient in vitro and in vivo 915 nm light-triggered photodynamic therapies are realized for the first time, with dramatically diminished overheating yet similar therapeutic effects in comparison to those triggered by 980 nm light. Moreover, by virtue of the high transverse relaxivity (r(2)) and the strong X-ray attenuation ability of Yb3+ ions, these UCNPs also demonstrate good performances as contrast agents for high contrast magnetic resonance and X-ray computed tomography dual-modal imaging. Our research shows the great potential of the red emitting Na0.52YbF3.52:Er UCNPs for multimodal imaging-guided photodynamic therapy of tumors.
机译:镧系元素(Ln(3+))掺杂的上转换纳米颗粒(UCNPs)作为新一代的多峰生物探针已经引起了治疗上的广泛兴趣。在本文中,通过简便的溶剂热法合成了具有高发光强度和色纯度的发红非化学计量的Na0.52YbF3.52:Er UCNP。本纳米磷光体发出的红色UC发射的光比大约30纳米大小的六角相NaYF4:Yb,Er UCNPs产生的绿色发射的强度高三倍。通过将Na0.52YbF3.52:Er @ SrF2 UCNPs用作多功能纳米平台,首次实现了高效的915 nm体外和体内光触发光动力疗法,与显着降低的过热度和相似的治疗效果相比980 nm的光此外,凭借较高的横向弛豫性(r(2))和强的Yb3 +离子X射线衰减能力,这些UCNP还表现出良好的性能,可作为高对比度磁共振和X射线计算机断层扫描双模态造影剂成像。我们的研究表明,发射红色的Na0.52YbF3.52:Er UCNP具有巨大的潜力,可用于肿瘤的多峰成像引导光动力疗法。

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