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A Comparative Study on the Direct and Pulsed Current Electrodeposition of Cobalt-Substituted Hydroxyapatite for Magnetic Resonance Imaging Application

机译:磁共振成像应用钴取代羟基磷灰石直流电和脉冲电沉积的比较研究

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摘要

Hydroxyapatite has excellent biocompatibility and osteo-conductivity and, as the main inorganic component of human bones and teeth, is commonly used for bone repair. Its original characteristics can be changed by metal ion substitution. Cobalt ions can act as hypoxia-inducible factors and accelerate bone repair. At the same time, cobalt has paramagnetic properties and is often used in the study of medical imaging and target drugs. Through the introduction of cobalt ions, the unique hydroxyapatite has better biological activity and positioning of medical images. Herein, cobalt-substituted hydroxyapatite (CoHA) was synthesized on the surface of a titanium plate by electrochemical deposition and changes in the power output mode to explore the impact on CoHA. Electrochemical deposition with a pulse current significantly improved the productivity and uniformity of CoHA on the surface of titanium. CoHA show paramagnetic characteristics by a superconducting quantum interference device (SQUID). Resulting smaller particle size and circular morphology improves the magnetic strength of CoHA. Magnetic resonance imaging (MRI) of CoHA showed significant image contrast effect at low concentrations. The calculated particle relaxation rate was higher than other common MRI contrast agents. Biocompatibility of CoHA powder was evaluated using the human osteosarcoma cell line (MG63) which confirmed that CoHA is not cytotoxic and can promote cell growth and extracellular matrix mineralization. With the release of cobalt ions, CoHA was found to be significantly good in repression E. coli indicating about than 95% reduction in bacterial growth. The as-synthesized CoHA has a low degree of crystallinity, highly sensitive image contrast effect, and good bioactivity, and may have potential applications in bone repair and MRI.
机译:羟基磷灰石具有出色的生物相容性和骨传导性,并且作为人体骨骼和牙齿的主要无机成分,通常用于骨骼修复。它的原始特性可以通过金属离子取代来改变。钴离子可作为缺氧诱导因子并促进骨骼修复。同时,钴具有顺磁性,通常用于医学成像和目标药物的研究。通过引入钴离子,独特的羟基磷灰石具有更好的生物活性和医学图像定位。在此,通过电化学沉积和改变功率输出模式在钛板的表面上合成了钴取代的羟基磷灰石(CoHA),以探讨对CoHA的影响。用脉冲电流进行的电化学沉积大大提高了CoHA在钛表面上的生产率和均匀性。 CoHA通过超导量子干涉仪(SQUID)表现出顺磁特性。产生较小的粒径和圆形形态可提高CoHA的磁强度。 CoHA的磁共振成像(MRI)在低浓度下显示出显着的图像对比效果。计算出的颗粒弛豫率高于其他常见的MRI造影剂。使用人类骨肉瘤细胞系(MG63)评估了CoHA粉末的生物相容性,该细胞系证实CoHA没有细胞毒性,可以促进细胞生长和细胞外基质矿化。随着钴离子的释放,发现CoHA在抑制大肠杆菌中具有显着的优势,表明细菌生长减少了约95%。合成后的CoHA具有较低的结晶度,高度敏感的图像对比效果和良好的生物活性,并且可能在骨修复和MRI中具有潜在的应用。

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