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The Effect of Electrode Topography on the Magnetic Properties and MRI Application of Electrochemically-Deposited Synthesized Cobalt-Substituted Hydroxyapatite

机译:电极形貌对电化学沉积合成钴取代羟基磷灰石磁性能和MRI应用的影响

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摘要

Magnetic nanoparticles are used to enhance the image contrast of magnetic resonance imaging (MRI). However, the development of magnetic nanoparticles with a low dose/high image contrast and non-toxicity is currently a major challenge. In this study, cobalt-substituted hydroxyapatite nanoparticles deposited on titanium (Ti-CoHA) and cobalt-substituted hydroxyapatite nanoparticles deposited on titanium dioxide nanotubes (TNT-CoHA) were synthesized by the electrochemical deposition method. The particle sizes of Ti-CoHA and TNT-CoHA were 418.6 nm and 127.5 nm, respectively, as observed using FE-SEM. It was shown that CoHA can be obtained with a smaller particle size using a titanium dioxide nanotube (TNT) electrode plate. However, the particle size of TNT-CoHA is smaller than that of Ti-CoHA. The crystal size of the internal cobalt oxide of CoHA was calculated by using an XRD pattern. The results indicate that the crystal size of cobalt oxide in TNT-CoHA is larger than that of the cobalt oxide in Ti-CoHA. The larger crystal size of the cobalt oxide in TNT-CoHA makes the saturation magnetization (Ms) of TNT-CoHA 12.6 times higher than that of Ti-CoHA. The contrast in MRIs is related to the magnetic properties of the particles. Therefore, TNT-CoHA has good image contrast at low concentrations in T2 images. The relaxivity coefficient of the CoHA was higher for TNT-CoHA (340.3 mM−1s−1) than Ti-CoHA (211.7 mM−1s−1), and both were higher than the commercial iron nanoparticles (103.0 mM−1s−1). We showed that the TNT substrate caused an increase in the size of the cobalt oxide crystal of TNT-CoHA, thus effectively improving the magnetic field strength and MRI image recognition. It was also shown that the relaxivity coefficient rose with the Ms. Evaluation of biocompatibility of CoHA using human osteosarcoma cells (MG63) indicated no toxic effects. On the other hand, CoHA had an excellent antibacterial effect, as shown by E. coli evaluation, and the effect of TNT-CoHA powder was higher than that of Ti-CoHA powder. In summary, TNT-CoHA deposited electrochemically on the TNT substrates can be considered as a potential candidate for the application as an MRI contrast agent. This paper is a comparative study of how different electrode plates affect the magnetic and MRI image contrast of cobalt-substituted hydroxyapatite (CoHA) nanomaterials.
机译:磁性纳米颗粒用于增强磁共振成像(MRI)的图像对比度。然而,具有低剂量/高图像对比度和无毒性的磁性纳米颗粒的开发是当前的主要挑战。在这项研究中,通过电化学沉积方法合成了沉积在钛上的钴取代的羟基磷灰石纳米粒子(Ti-CoHA)和沉积在二氧化钛纳米管上的钴取代的羟基磷灰石纳米粒子(TNT-CoHA)。使用FE-SEM观察到的Ti-CoHA和TNT-CoHA的粒径分别为418.6 nm和127.5 nm。结果表明,使用二氧化钛纳米管(TNT)电极板可以得到较小粒径的CoHA。但是,TNT-CoHA的粒径小于Ti-CoHA的粒径。通过使用XRD图来计算CoHA的内部钴氧化物的晶体尺寸。结果表明,TNT-CoHA中氧化钴的晶体尺寸大于Ti-CoHA中氧化钴的晶体尺寸。 TNT-CoHA中钴氧化物的较大晶体尺寸使TNT-CoHA的饱和磁化强度(Ms)比Ti-CoHA高12.6倍。 MRI的对比度与颗粒的磁性有关。因此,TNT-CoHA在低浓度的T2图像中具有良好的图像对比度。 TNT-CoHA(340.3 mM -1 s -1 )的CoHA弛豫系数高于Ti-CoHA(211.7 mM -1 ) > s -1 ),均高于商品铁纳米颗粒(103.0 mM -1 s -1 )。我们表明,TNT基底导致TNT-CoHA的氧化钴晶体尺寸增加,从而有效地改善了磁场强度和MRI图像识别。还显示出随女士的弛豫系数增加。使用人骨肉瘤细胞(MG63)评价CoHA的生物相容性表明没有毒性作用。另一方面,如大肠杆菌评价所示,CoHA具有优异的抗菌作用,并且TNT-CoHA粉末的作用高于Ti-CoHA粉末的作用。总之,电化学沉积在TNT基底上的TNT-CoHA可被认为是作为MRI造影剂应用的潜在候选者。本文是对不同电极板如何影响钴取代的羟基磷灰石(CoHA)纳米材料的磁性和MRI图像对比度的比较研究。

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