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Superstable Magnetic Nanoparticles in Conjugation with Near-Infrared Dye as a Multimodal Theranostic Platform

机译:超稳定磁性纳米粒子与近红外染料共轭作为多峰治疗理论平台

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摘要

Near-infrared (NIR) dyes functionalized magnetic nanoparticles (MNPs) have been widely applied in magnetic resonance imaging (MRI), NIR fluorescence imaging, drug delivery, and magnetic hyperthermia. However, the stability of MNPs and NIR dyes in water is a key problem to be solved for long-term application. In this study, a kind of superstable iron oxide nanoparticles was synthesized by a facile way, which can be used as T-1 and T-2 weighted MRI contrast agent. IR820 was grafted onto the surface of nanoparticles by 6-amino hexanoic acid to form IR820-CSQ:Fe conjugates. Attached IR820 showed increased stability in water at least for three months and an enhanced ability of singlet oxygen production of almost double that of free dyes, which will improve its efficiency for photodynamic therapy. Meanwhile, the multispectral optoacoustic tomography (MSOT) and NIR imaging ability of IR820-CSQ:Fe will greatly increase the accuracy of disease detection. All of these features will broaden the application of this material as a multimodal theranostic platform.
机译:近红外(NIR)染料官能化的磁性纳米颗粒(MNP)已广泛应用于磁共振成像(MRI),NIR荧光成像,药物递送和磁热疗。然而,MNP和NIR染料在水中的稳定性是长期应用要解决的关键问题。本研究以一种简便的方法合成了一种超稳定的氧化铁纳米粒子,可作为T-1和T-2加权MRI造影剂。用6-氨基己酸将IR820接枝到纳米颗粒的表面,形成IR820-CSQ:Fe共轭物。附着的IR820在水中至少三个月内显示出增加的稳定性,单线态氧的产生能力几乎是游离染料的两倍,这将提高其光动力疗法的效率。同时,IR820-CSQ:Fe的多光谱光声层析成像(MSOT)和近红外成像能力将大大提高疾病检测的准确性。所有这些特征将拓宽该材料作为多模式治疗学平台的应用范围。

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