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用于潜在生物医学植入应用的新型粉末冶金Ti-10Mo-xCu合金的特性

Characteristics of novel Ti-10Mo-xCu alloy by powder metallurgy for potential biomedical implant applications.

作者信息

Xu Wei, Hou Chenjin, Mao Yuxuan, Yang Lei, Tamaddon Maryam, Zhang Jianliang, Qu Xuanhui, Liu Chaozong, Su Bo, Lu Xin

机构信息

Beijing Advanced Innovation Center for Materials Genome Engineering, State Key Laboratory for Advanced Metals and Materials, Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing, China.

Institute of Orthopaedic & Musculoskeletal Science, University College London, Royal National Orthopaedic Hospital, Stanmore, HA7 4LP, UK.

出版信息

Bioact Mater. 2020 May 8;5(3):659-666. doi: 10.1016/j.bioactmat.2020.04.012. eCollection 2020 Sep.

Abstract

When biomaterials are implanted in the human body, the surfaces of the implants become favorable sites for microbial adhesion and biofilm formation, causing peri-implant infection which frequently results in the failure of prosthetics and revision surgery. Ti-Mo alloy is one of the commonly used implant materials for load-bearing bone replacement, and the prevention of infection of Ti-Mo implants is therefore crucial. In this study, bacterial inhibitory copper (Cu) was added to Ti-Mo matrix to develop a novel Ti-Mo-Cu alloy with bacterial inhibitory property. The effects of Cu content on microstructure, tensile properties, cytocompatibility, and bacterial inhibitory ability of Ti-Mo-Cu alloy were systematically investigated. Results revealed that Ti-10Mo-1Cu alloy consisted of α and β phases, while there were a few TiCu intermetallic compounds existed for Ti-10Mo-3Cu and Ti-10Mo-5Cu alloys, in addition to α and β phases. The tensile strength of Ti-10Mo-xCu alloy increased with Cu content while elongation decreased. Ti-10Mo-3Cu alloy exhibited an optimal tensile strength of 1098.1 MPa and elongation of 5.2%. Cytocompatibility study indicated that none of the Ti-10Mo-xCu alloys had a negative effect on MC3T3-E1 cell proliferation. Bacterial inhibitory rates against and increased with the increase in Cu content of Ti-10Mo-xCu alloy, within the ranges of 20-60% and 15-50%, respectively. Taken together, this study suggests that Ti-10Mo-3Cu alloy with high strength, acceptable elongation, excellent cytocompatibility, and the bacterial inhibitory property is a promising candidate for biomedical implant applications.

摘要

当生物材料植入人体后,植入物表面会成为微生物黏附和生物膜形成的有利场所,引发植入物周围感染,这常常导致假体失效和翻修手术。钛钼合金是常用的承重骨替代植入材料之一,因此预防钛钼植入物感染至关重要。在本研究中,将具有抑菌作用的铜(Cu)添加到钛钼基体中,以开发一种具有抑菌性能的新型钛钼铜合金。系统研究了铜含量对钛钼铜合金微观结构、拉伸性能、细胞相容性和抑菌能力的影响。结果表明,Ti-10Mo-1Cu合金由α相和β相组成,而Ti-10Mo-3Cu和Ti-10Mo-5Cu合金除α相和β相外,还存在少量的TiCu金属间化合物。Ti-10Mo-xCu合金的抗拉强度随铜含量的增加而提高,而伸长率则下降。Ti-10Mo-3Cu合金表现出最佳抗拉强度1098.1MPa和伸长率5.2%。细胞相容性研究表明,Ti-10Mo-xCu合金均对MC3T3-E1细胞增殖无负面影响。Ti-10Mo-xCu合金对金黄色葡萄球菌和大肠杆菌的抑菌率分别在20 - 60%和15 - 50%范围内随铜含量的增加而提高。综上所述,本研究表明,具有高强度、可接受的伸长率、优异的细胞相容性和抑菌性能的Ti-10Mo-3Cu合金是生物医学植入应用的一个有前景的候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c989/7218015/6f148ddf6358/fx1.jpg

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