首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >PEGylated (NH4)(x)WO3 nanorods as efficient and stable multifunctional nanoagents for simultaneous CT imaging and photothermal therapy of tumor
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PEGylated (NH4)(x)WO3 nanorods as efficient and stable multifunctional nanoagents for simultaneous CT imaging and photothermal therapy of tumor

机译:Pegymated(NH4)(X)WO3纳米杆作为高效且稳定的多功能纳米片,用于同时CT成像和肿瘤的光热疗法

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摘要

The simultaneous imaging and photothermal therapy of tumors have attracted much attention, and a prerequisite is to obtain multifunctional nanomaterials. Ideally, one kind of nanoparticles with single component can be used as both imaging agent and photothermal agent. Herein, we have developed the PEGylated (NH4)(x)WO3 (denoted as (NH4)(x)WO3-PEG) nanorods as multifunctional nanoparticles with single semiconductor component. (NH4)(x)WO3-PEG nanorods with about 30 nm diameter and length of several hundred nanometers have been obtained through a solvothermal synthesis-PEGylation two-step route. Under the irradiation of 980-nm laser with intensity of 0.72 W cm(-2), aqueous dispersion of (NH4)(x)WO3-PEG nanorods (0.67-5.44 mmol/L) displays high elevation (17.6-34.5 degrees C) of temperature in 400 s, accompanied by an excellent long-term photo thermal stability. Furthermore, (NH4)(x)WO3-PEG nanorods exhibit as high as 6 times X-ray attenuation ability compared to that of the clinically used iodine-based X-ray computed tomography (CT) contrast agent (Iopromide). More importantly, after PBS solution of (NH4)(x)WO3-PEG nanorods is injected into the tumor of mice, the tumor can be effectively detected by CT imaging. Moreover, cancer cells in vivo can be further destroyed by the photothermal effects of (NH4)(x)WO3-PEG nanorods, under the irradiation of 980-nm laser with the safe intensity of 0.72 W cm(-2) for 10 min. Therefore, (NH4)(x)WO3-PEG nanorods can be used as a new kind of stable and efficient multifunctional nanoagent with single component for simultaneous CT imaging and photothermal therapy of tumor.
机译:肿瘤的同时成像和光热疗疗法引起了很多关注,并且先决条件是获得多官能纳米材料。理想情况下,具有单个组分的一种纳米颗粒可用作成像剂和光热试剂。在此,我们已经开发了具有单半导体组分的多官能纳米颗粒的聚乙二醇化(NH 4)(X)WO3(表示为(NH 4)(X)WO3-PEG)纳米芯片。 (NH4)(X)通过溶剂热合成聚乙二醇化二步途径获得了约30nm直径和长度的长度为几百纳米的WO3-PEG纳米码。在980-nm激光的照射下,强度为0.72W cm(-2),(NH4)(x)WO3-PEG纳米棒(0.67-5.44mmol / L)的水分散体显示高升高(17.6-34.5℃)温度在400秒内,伴随着优异的长期照片热稳定性。此外,与临床使用的碘基X射线计算机断层扫描(CT)造影剂(IOPROMIDE)相比,(NH 4)(X)(X)(x)(x)(x)WO3-PEG纳米码表现出高达6倍的X射线衰减能力。更重要的是,在将(NH 4)(x)(x)的PBS溶液注入小鼠肿瘤中后,可以通过CT成像有效地检测肿瘤。此外,通过(NH 4)(X)WO3-PEG纳米棒的光热效应,在980-NM激光的照射下,体内癌细胞可以进一步破坏,在980-nm激光的照射下,安全强度为0.72W cm(-2)10分钟。因此,(NH4)(x)WO3-PEG纳米棒可用作具有单一组分的新种类稳定和有效的多功能纳次,用于同时CT成像和肿瘤的光热疗。

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