Department of Mechanical Engineering, National University of Singapore, 9 Engineering Drive 1, Singapore, 117 576, Singapore.
Graduate School of Natural Science and Technology, Okayama University, Okayama, 700-8530, Japan.
J Mater Sci Mater Med. 2017 Jan;28(1):3. doi: 10.1007/s10856-016-5812-4. Epub 2016 Nov 23.
Prevention of infection and enhanced osseointegration are closely related, and required for a successful orthopaedic implant, which necessitate implant designs to consider both criteria in tandem. A multi-material coating containing 1:1 ratio of silicon-substituted hydroxyapatite and silver-substituted hydroxyapatite as the top functional layer, and hydroxyapatite as the base layer, was produced via the drop-on-demand micro-dispensing technique, as a strategic approach in the fight against infection along with the promotion of bone tissue regeneration. The homogeneous distribution of silicon-substituted hydroxyapatite and silver-substituted hydroxyapatite micro-droplets at alternate position in silicon-substituted hydroxyapatite-silver-substituted hydroxyapatite/hydroxyapatite coating delayed the exponential growth of Staphylococcus aureus for up to 24 h, and gave rise to up-regulated expression of alkaline phosphatase activity, type I collagen and osteocalcin as compared to hydroxyapatite and silver-substituted hydroxyapatite coatings. Despite containing reduced amounts of silicon-substituted hydroxyapatite and silver-substituted hydroxyapatite micro-droplets over the coated area than silicon-substituted hydroxyapatite and silver-substituted hydroxyapatite coatings, silicon-substituted hydroxyapatite-silver-substituted hydroxyapatite/hydroxyapatite coating exhibited effective antibacterial property with enhanced bioactivity. By exhibiting good controllability of distributing silicon-substituted hydroxyapatite, silver-substituted hydroxyapatite and hydroxyapatite micro-droplets, it was demonstrated that drop-on-demand micro-dispensing technique was capable in harnessing the advantages of silver-substituted hydroxyapatite, silicon-substituted hydroxyapatite and hydroxyapatite to produce a multi-material coating along with enhanced bioactivity and reduced infection.
预防感染和增强骨整合密切相关,是成功植入骨科器械的必要条件,这就要求器械设计要同时考虑这两个标准。一种含有硅取代羟磷灰石和银取代羟磷灰石 1:1 比例的多材料涂层作为顶层功能层,以羟基磷灰石作为基层,通过按需滴注微分配技术生产,这是一种对抗感染和促进骨组织再生的战略方法。硅取代羟磷灰石和银取代羟磷灰石微滴在硅取代羟磷灰石-银取代羟磷灰石/羟基磷灰石涂层中交替位置的均匀分布,将金黄色葡萄球菌的指数生长延迟了长达 24 小时,并导致碱性磷酸酶活性、I 型胶原和骨钙素的上调表达,与羟基磷灰石和银取代羟磷灰石涂层相比。尽管硅取代羟磷灰石-银取代羟磷灰石/羟基磷灰石涂层在涂层区域的硅取代羟磷灰石和银取代羟磷灰石微滴的含量低于硅取代羟磷灰石和银取代羟磷灰石涂层,但仍表现出有效的抗菌性能和增强的生物活性。通过展示对硅取代羟磷灰石、银取代羟磷灰石和羟基磷灰石微滴的良好可控分配,按需滴注微分配技术证明了能够利用银取代羟磷灰石、硅取代羟磷灰石和羟基磷灰石的优势来生产具有增强生物活性和降低感染风险的多材料涂层。