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Optimization of Bi3+ in Upconversion Nanoparticles Induced Simultaneous Enhancement of Near-Infrared Optical and X-ray Computed Tomography Imaging Capability

机译:上转换纳米粒子中Bi3 +的优化诱导同时增强近红外光学和X射线计算机断层扫描成像能力

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Bioimaging probes have been extensive studied for many years, while it is still a challenge to further improve the image quality for precise diagnosis in clinical medicine. Here, monodisperse NaGdF4:Yb3+,Tm3+,x% Bi3+ (abbreviated as GYT-x% Bi3+, x = 0, 5, 10, 15, 20, 25, 30) upconversion nanoparticles (UCNPs) have been prepared through the solvothermal method. The near-infrared upconversion emission intensity of GYT-25% Bi3+ has been enhanced remarkably than that of NaGdF4:Yb3+,Tm3+ (GYT) with a factor of similar to 60. Especially, the near-infrared upconversion emission band centered at 802 nm is 150 times stronger than the blue emission band of GYT-25% Bi3+ UCNPs. Such high ratio of NIR/blue UCL intensity could reduce the damage to tissues in the bioimaging process. The possibility of using GYT-25% Bi3+ UCNPs with strong near-infrared upconversion emission for optical imaging in vitro and in vivo was performed. Encouragingly, the UCL imaging penetration depth can be achieved as deep as 20 mm. Importantly, GYT-25% Bi3+ UCNPs exhibit a much higher X-ray computed tomography (CT) contrast efficiency than GYT and iodine-based contrast agent under the same clinical conditions, due to the high X-ray attenuation coefficient of bismuth. Hence, simultaneous remarkable enhancement of NIR emission and X-ray CT signal in upconversion nanoparticles could be achieved by optimizing the doping concentration of Bi3+ ions. Additionally, Gd3+ ions in the UCNPs endow GYT-25% Bi3+ UCNPs with T1-weighted magnetic resonance (MR) imaging capability.
机译:生物成像探针已经被广泛研究了很多年,而进一步改善用于临床医学的精确诊断的图像质量仍然是一个挑战。在此,已经通过溶剂热法制备了单分散的NaGdF 4:Yb 3+,Tm3 +,x%Bi3 +(缩写为GYT-x%Bi3 +,x = 0、5、10、15、20、25、30)。与NaGdF4:Yb3 +,Tm3 +(GYT)相比,GYT-25%Bi3 +的近红外上转换发射强度显着提高,尤其是以802 nm为中心的近红外上转换发射带为比GYT-25%Bi3 + UCNPs的蓝光发射带强150倍。这样高的NIR /蓝色UCL强度比率可以减少生物成像过程中对组织的损害。使用GYT-25%Bi3 + UCNPs具有强近红外上转换发射的可能性进行了体外和体内光学成像。令人鼓舞的是,UCL成像穿透深度可达到20毫米。重要的是,由于铋的X射线衰减系数高,在相同的临床条件下,GYT-25%Bi3 + UCNPs的X射线计算机断层扫描(CT)造影剂效率要比GYT和基于碘的造影剂高得多。因此,通过优化Bi3 +离子的掺杂浓度,可以同时显着提高上转换纳米粒子中的NIR发射和X射线CT信号。此外,UCNP中的Gd3 +离子赋予GYT-25%Bi3 + UCNP具有T1加权磁共振(MR)成像功能。

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