材料科学
涂层
偷看
沉积(地质)
碱性磷酸酶
化学工程
生物医学工程
粘结强度
锌
热喷涂
粘结强度
核化学
复合材料
降级(电信)
壳聚糖
表面改性
钙
抗菌活性
热稳定性
作者
Jun Xu,Svea Sachse,Hanen Ferjani,Andreas Pfuch,Cornelia Wiegand,Thomas Lampke
标识
DOI:10.1088/1748-605x/ae0ee9
摘要
ZnO-doped hydroxyapatite (HAp) coatings were developed on thermally sensitive polyetheretherketone (PEEK) substrates using a hybrid plasma spraying approach that combines powder and solution precursor feedstocks. Three coating architectures with different ZnO contents were designed to assess the influence of zinc incorporation on antibacterial and osteogenic performance. All coatings were deposited at a low plasma power (5.7 kW), enabling successful deposition without thermal degradation of the PEEK substrate, and achieving bond strengths up to 17 MPa. ZnO-doped coatings exhibited antibacterial activity againstE. coliandS. aureus, with significantly higher efficacy againstE. coli. In vitrotests using MC3T3-E1 pre-osteoblasts showed enhanced cytocompatibility and osteogenic differentiation at low ZnO concentrations, as indicated by increased alkaline phosphatase (ALP) activity and calcium deposition exceeding those of undoped HAp coatings by over 50% after 21 d. The combination of antimicrobial and osteoinductive properties suggests that ZnO-doped HAp coatings are promising candidates for PEEK-based orthopedic implants.
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