首页> 外文期刊>Majallah-i pizishki-i Urumiyah. >ANALYTICAL STUDY OF EFFECT OF BILAYER INORGANIC AND ORGANIC COATING AROUND THE IRON OXIDE NANOPARTICLES ON MAGNETIC RESONANCE IMAGING CONTRAST
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ANALYTICAL STUDY OF EFFECT OF BILAYER INORGANIC AND ORGANIC COATING AROUND THE IRON OXIDE NANOPARTICLES ON MAGNETIC RESONANCE IMAGING CONTRAST

机译:双层无机与有机涂层围绕氧化铁纳米粒子对磁共振成像对比的影响的分析研究

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Background & Aims : In recent years, iron oxide nanoparticles have been used in contrast-enhanced magnetic resonance imaging for diagnosing a wide range of diseases. In order to provide biocompatibility and prevent the toxicity of the nanoparticles, using organic or inorganic coating around these nanoparticles is important for their application. The aim of this study is to investigate the effect of bilayer inorganic (aluminosilicate) and organic (polyethylene glycol) coating around the iron oxide nanoparticles on magnetic resonance imaging contrast. Materials & Methods : Iron oxide- aluminosilicate- polyethylene glycol nanocomposite with the size of 170-200 nm was prepared. Magnetic resonance imaging for different concentrations of the nanocomposite was carried out by the use of similar repetition time and different echo times. Mean signal intensities were measured based on applied concentrations, and the curves of spin-spin relaxation times plotted. Transverse relaxivity value was obtained using the slope of spin-spin relaxation rate versus concentration. Results : Reduction of signal intensity with increasing echo time was observed for all concentrations. The spin-spin relaxation time decreased as a function of the concentration. The transverse relaxivity as a parameter to show magnetic resonance imaging contrast was calculated to be 80.73 s-1.mM-1. Conclusion: Iron oxide nanoparticles with bilayer aluminosilicate and polyethylene glycol coating can provide negative contrast for magnetic resonance images due to the porous structure of the aluminosilicate, and the possibility of using the nanocomposite for drug delivery according to the presence of polyethylene glycol.
机译:背景和目的:近年来,氧化铁纳米颗粒已被用于对比增强的磁共振成像,用于诊断各种疾病。为了提供生物相容性并防止纳米颗粒的毒性,在这些纳米颗粒周围使用有机或无机涂层对于它们的应用是重要的。本研究的目的是探讨双层无机(铝硅酸盐)和有机(聚乙二醇)涂覆在磁共振成像对比上的氧化铁纳米颗粒周围的影响。材料和方法:制备氧化铁 - 铝硅酸盐 - 聚乙二醇纳米复合材料,尺寸为170-200nm。通过使用类似的重复时间和不同的回波时间来进行用于不同浓度的纳米复合材料的磁共振成像。基于施加的浓度测量平均信号强度,并且絮凝旋转弛豫时间曲线绘制。使用旋转旋转弛豫速率与浓度的斜率获得横向松弛率值。结果:对所有浓度观察到随着回波时间增加的信号强度的降低。旋转旋转弛豫时间随浓度的函数而降低。计算为显示磁共振成像对比度的参数的横向松弛率为80.73s-1.mm-1。结论:具有双层硅铝酸盐和聚乙二醇涂层的氧化铁纳米颗粒可以为硅硅酸盐的多孔结构而提供磁共振图像的负对比度,以及根据聚乙二醇的存在,使用纳米复合物用于药物递送的可能性。

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