首页> 美国卫生研究院文献>International Journal of Nanomedicine >Amalgamation of complex iron(III) ions and iron nanoclusters with MWCNTs as a route to potential T2 MRI contrast agents
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Amalgamation of complex iron(III) ions and iron nanoclusters with MWCNTs as a route to potential T2 MRI contrast agents

机译:MWCNT将复杂的铁(III)离子和铁纳米团簇融合作为潜在的T2 MRI造影剂的途径

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摘要

Iron-filled multiwall carbon nanotubes (Fe@MWCNTs) were functionalized toward a variety of potential magnetic resonance imaging contrast agents. Oxidized Fe@MWNCTs were covered with PEG5000 via direct esterification or using acyl chloride derivatives. Alternatively, the latter were functionalized with an aminophenol ligand (Fe@O-MWCNT-L). Moreover, pristine Fe@MWCNTs were functionalized with N-phenylaziridine groups (Fe@f-MWCNT) via [2+1] cycloaddition of nitrene. All of these chemically modified nanotubes served as a vehicle for anchoring Fe3+ ions. The new hybrids – Fe(III)/Fe@(f-/O-)MWCNTs – containing 6%–14% of the “tethered” Fe3+ions were studied in terms of the acceleration of relaxation of water protons in nuclear magnetic resonance. The highest transverse relaxivity r2=63.9±0.9 mL mg−1 s−1 was recorded for Fe(III)/Fe@O-MWCNT-L, while for Fe(III)/Fe@f-MWCNT, with r2=57.9±2.9 mL mg−1 s−1, the highest impact of the anchored Fe(III) ions was observed. The T1/T2 ratio of 30–100 found for all of the nanotube hybrids presented in this work is a very important factor for their potential application as T2 contrast agents. Increased stability of the hybrids was confirmed by ultraviolet–visible spectrophotometry.
机译:铁填充的多壁碳纳米管(Fe @ MWCNTs)已针对各种潜在的磁共振成像造影剂进行了功能化。氧化的Fe @ MWNCT通过直接酯化或使用酰氯衍生物被PEG5000覆盖。或者,将后者用氨基苯酚配体(Fe @ O-MWCNT-L)功能化。此外,通过腈的[2 + 1]环加成,将原始的Fe @ MWCNTs用N-苯基氮丙啶基团(Fe @ f-MWCNT)官能化。所有这些化学修饰的纳米管都可作为锚定Fe 3 + 离子的载体。研究了新的杂化体-Fe(III)/ Fe @(f- / O-)MWCNTs,其中包含6%–14%的“束缚” Fe 3 + 离子,它们的加速作用为质子在核磁共振中的弛豫。 Fe(III)/ Fe @ O-MWCNT-L的最高横向弛豫性r2 = 63.9±0.9 mL mg -1 s -1 III)/Fe@f-MWCNT,r2=57.9±2.9mL mg −1 s −1 ,观察到锚定的Fe(III)离子的影响最大。在这项工作中发现的所有纳米管杂化物的T1 / T2比率为30–100,是它们作为T2造影剂的潜在应用的一个非常重要的因素。紫外可见分光光度法确认了杂种稳定性的提高。

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