首页> 外文期刊>ACS applied materials & interfaces >Multidirectional Effects of Sr-, Mg-, and Si-Containing Bioceramic Coatings with High Bonding Strength on Inflammation, Osteoclastogenesis, and Osteogenesis
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Multidirectional Effects of Sr-, Mg-, and Si-Containing Bioceramic Coatings with High Bonding Strength on Inflammation, Osteoclastogenesis, and Osteogenesis

机译:具有高粘结强度的含Sr,Mg和Si的生物陶瓷涂层对炎症,破骨细胞生成和成骨的多方向影响

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Ideal coating materials for implants should be able to induce excellent osseointegration, which requires several important parameters, such as good bonding strength, limited inflammatory reaction, and balanced osteoclastogenesis and osteogenesis, to gain well-functioning coated implants with long-term life span after implantation. Bioactive elements, like Sr, Mg, and Si, have been found to play important roles in regulating the biological responses. It is of great interest to combine bioactive elements for developing bioactive coatings on Ti-6Al-4 V orthopedic implants to elicit multidirectional effects on the osseointegration. In this study, Sr-, Mg-, and Si-containing bioactive Sr2MgSi2O7 (SMS) ceramic coatings on Ti-6Al-4 V were successfully prepared by the plasma-spray coating method. The prepared SMS coatings have significantly higher bonding strength (~37 MPa) than conventional pure hydroxyapatite (HA) coatings (mostly in the range of 15—25 MPa). It was also found that the prepared SMS coatings switch the macrophage phenotype into M2 extreme, inhibiting the inflammatory reaction via the inhibition of Wnt5A/Ca~(2+) and Toll-like receptor (TLR) pathways of macrophages. In addition, the osteoclastic activities were also inhibited by SMS coatings. The expression of osteoclastogenesis-related genes (RANKL and MCSF) in bone-marrow-derived mesenchymal cells (BMSCs) with the involvement of macrophages was decreased, whereas OPG expression was enhanced on SMS coatings compared to HA coatings, indicating that SMS coatings also downregulated the osteoclastogenesis. However, the osteogenic differentiation of BMSCs with the involvement of macrophages was comparable between SMS and HA coatings. Therefore, the prepared SMS coatings showed multidirectional effects, such as improving bonding strength, reducing inflammatory reaction, and downregulating osteoclastic activities, but maintaining a comparable osteogenesis, as compared with HA coatings. The combination of bioactive elements of Sr, Mg, and Si into bioceramic coatings can be a promising method to develop bioactive implants with multifunctional properties for orthopedic application.
机译:理想的植入物涂层材料应能够诱导出色的骨整合,这需要几个重要参数,例如良好的粘结强度,有限的炎症反应以及平衡的破骨细胞生成和成骨作用,以获得功能良好的涂层植入物,并在植入后具有长寿命。已发现诸如Sr,Mg和Si的生物活性元素在调节生物反应中起重要作用。结合生物活性元素以在Ti-6Al-4 V整形外科植入物上开发生物活性涂层,以引起对骨整合的多方向影响,是引起极大兴趣的。在这项研究中,通过等离子喷涂法成功地在Ti-6Al-4 V上制备了Sr,Mg和Si的生物活性Sr2MgSi2O7(SMS)陶瓷涂层。与常规的纯羟基磷灰石(HA)涂层(大多数在15-25 MPa范围内)相比,制备的SMS涂层具有明显更高的结合强度(〜37 MPa)。还发现制备的SMS涂层将巨噬细胞表型转变为M2极端,通过抑制巨噬细胞的Wnt5A / Ca〜(2+)和Toll样受体(TLR)途径抑制炎症反应。另外,破骨细胞活性也被SMS涂层抑制。与巨噬细胞有关,与巨噬细胞有关的骨髓间充质细胞(BMSCs)中破骨细胞生成相关基因(RANKL和MCSF)的表达降低,而与HA涂层相比,SMS涂层上OPG的表达增强,表明SMS涂层也下调破骨细胞生成。然而,在SMS和HA涂层之间,具有巨噬细胞的BMSC的成骨分化是可比的。因此,与HA涂料相比,所制备的SMS涂料具有多向作用,例如提高粘结强度,减少炎症反应和下调破骨细胞活性,但保持可比的成骨作用。将Sr,Mg和Si的生物活性元素结合到生物陶瓷涂层中可以成为开发具有多功能特性的骨活性生物活性植入物的有前途的方法。

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