Abstract

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.

Highlights

  • Patients with defects due to trauma or osteoporosis must rely on fillers to make repairs

  • The results show that the free radical scavenging ratio of the three groups of radical scavenging ratio of 50% among the samples, because the surface of direct current (DC)-cobalt-substituted hydroxyapatite (CoHA) powder samples comes from cobalt ions

  • A more uniformThrough deposition was power mode, more cobalt ions attach to the surface, while the pulse current mode has higher cobalt obtained on a titanium surface using pulse electrochemical deposition

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Summary

Introduction

Patients with defects due to trauma or osteoporosis must rely on fillers to make repairs. Autologous bone graft, allogeneic bone graft and xenograft are widely used in bone filler materials. An autologous bone graft is limited by the disease incidence of donor and donor sites [1] and may incur high costs due to development of complications [2]. Allogeneic bone grafts and xenografts might lead to immune rejection and infectious diseases [3]. Materials 2019, 12, 116 focused on the development of calcium phosphate bone graft material [4,5].

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