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Finely crafted quasi-core–shell gadolinium/layered double hydroxide hybrids for switching on/off bimodal CT/MRI contrasting nanodiagnostic platforms

机译:精细制成的准核 - 壳钆/层状双氢氧化物杂交用于开关开/关双峰CT / MRI对比纳米杆状平台

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We successfully synthesized a size-controlled hybrid of layered double hydroxide (LDH) platelets and Gd(OH) _(3) nanorods through the reverse micelle method. Under controlled synthetic conditions, the hybrid was developed to a quasi-core–shell structure, where the Gd(OH) _(3) nanorods were covered by the LDH platelet assembly, and this was investigated by X-ray diffraction and high-resolution transmission electron microscopy. The zeta potential measurement for the hybrid revealed that Gd(OH) _(3) was surrounded by LDH moieties. According to dynamic light scattering, the hydrodynamic radius of the hybrid was uniformly controlled under 150 nm, which was comparable to that of one Gd(OH) _(3) nanorod surrounded by an LDH moiety. Thus, the obtained hybrid exhibited a maximum Hounsfield unit of 180 at a concentration of 5 mg mL ~(?1) , implying its potential as a computed tomography contrast agent. The magnetic resonance relaxivities of the hybrid were examined at pH 5 and 7, simulating lysosomal and plasma conditions; the r _(1) values were 7.3 and 2.9, respectively, which were highly dependent on the physiological conditions.
机译:我们通过反转胶束方法成功地合成了层状双氢氧化物(LDH)血小板和GD(OH)_(3)纳米棒的尺寸控制的杂交物。在受控的合成条件下,将杂交物开发成准核 - 壳结构,其中Gd(OH)_(3)纳米棒被LDH血小板组件覆盖,并通过X射线衍射和高分辨率研究了这一点透射电子显微镜。杂种的Zeta电位测量显示Gd(OH)_(3)被LDH部分包围。根据动态光散射,杂种的流体动力半径均匀地控制在150nm下,其与由LDH部分围绕的一个Gd(OH)_(3)纳米棒的纳米棒相当。因此,所获得的杂种以5mg ml〜(α1)的浓度显示为180的最大Hounsfield单元,暗示其作为计算机断层摄影造影剂的潜力。在pH5和7中检查杂种的磁共振松弛性,模拟溶酶体和血浆条件; R _(1)值分别为7.3和2.9,其高度依赖于生理条件。

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