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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >One-pot preparation of hydrophilic manganese oxide nanoparticles as T 1 nano-contrast agent for molecular magnetic resonance imaging of renal carcinoma in vitro and in vivo
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One-pot preparation of hydrophilic manganese oxide nanoparticles as T 1 nano-contrast agent for molecular magnetic resonance imaging of renal carcinoma in vitro and in vivo

机译:单罐制备亲水性氧化锰纳米颗粒作为T 1 纳米造影剂,用于体外肾癌的肾癌分子磁共振成像

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AbstractMagnetic resonance imaging (MRI) contrast agents have become a necessary part for clinical practice to improve the sensitivity for the diagnosis of small lesions and injuries. Among them, manganese oxide nanoparticle (MnO NPs)-based MRI contrast agent attracts more and more attention because of their better performance in the detection of brain disease and positive enhancement in T1-weighted image. However, the relatively low r1relaxivity and complex synthetic route hampered their wider applications. In this work, we proposed a one-pot approach to prepare hydrophilic MnO NPs via a polyol-like method with poly (ethylene glycol) (PEG) as both a solvent and surfactant. The obtained PEG-MnO NPs displayed a high T1relaxivity and a low r2/r1ratio (12.942s?1mM?1and 4.66) at 3.0T, which was three times that of the clinical used contrast agent, Magnevist (Gd-DTPA). Additionally, when exposed to the simulated body fluid (SBF), acidic environment or glutathione, PEG-MnO NPs kept stable, favoring their further biological applications. Then, to explore their use for the molecular magnetic resonance imaging of 786-0 renal carcinoma, amino group modified AS1411 aptamer as the targeting molecule was introduced to conjugate with PEG-MnO NPs via covalent coupling reaction. The fabricated nanoprobe, AS1411-PEG-MnO, could clearly visualize 786-0 renal carcinoma cells with MRI in vitro. Furthermore, compared with PEG-MnO NPs, AS1411-PEG-MnO nanoprobe presented a prolonged retention in 786-0 renal carcinoma t
机译:<![cdata [ 抽象 磁共振成像(MRI)造影剂已成为临床实践的必要部分,以提高诊断小病变和伤害的敏感性。其中,基于氧化锰纳米粒子(MnO NPS)的MRI造影剂由于其在检测脑疾病和T 1 - 重量的图像。然而,相对较低的R 1 放松率和复杂的合成路线阻碍了他们更广泛的应用。在这项工作中,我们提出了一种通过聚(乙二醇)(PEG)作为溶剂和表面活性剂的多元醇样方法来制备亲水性MnO NP的一罐方法。所获得的PEG-MNO NPS显示出高T 1 放松率和低R 2 / R 1 比率(12.942s ?1 mm ?1 和4.66)在3.0t时,这是临床使用的造影剂,Magnevist(Gd-DTPA)的三倍。另外,当暴露于模拟体液(SBF),酸性环境或谷胱甘肽时,PEG-MNO NPS保持稳定,有利于其进一步的生物应用。然后,为了探讨其用于786-0肾癌的分子磁共振成像的用途,将氨基修饰为1411 Aptamer,因为通过共价偶联反应将靶向分子与PEG-MNO NPS共轭。制造的纳米骨骨,As1411-PEG-MNO可以在体外明显地用MRI清楚地显示786-0肾癌细胞。此外,与PEG-MNO NPS相比,AS1411-PEG-MNO NANOPORE呈现在786-0肾癌T的延长保留

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