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Electrophoretic Deposition of Chitosan/45S5 Bioactive Glass Composite Coatings Doped with Zn and Sr

机译:Zn和Sr掺杂的壳聚糖/ 45S5生物活性玻璃复合涂层的电泳沉积

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摘要

In this research work, the original 45S5 bioactive glass was modified by introducing zinc and/or strontium oxide (6 mol%) in place of calcium oxide. Sr was added for its ability to stimulate bone formation and Zn for its role in bone metabolism, antibacterial properties, and anti-inflammatory effect. The glasses were produced by means of melting and quenching process. SEM and XRD analyses evidenced that Zr and Sr introduction did not modify the glass structure and morphology while compositional analysis (EDS) demonstrated the effective incorporation of these elements in the glass network. Bioactivity test in simulated body fluid (SBF) up to 1 month evidenced a reduced bioactivity kinetics for Zn-doped glasses. Doped glasses were combined with chitosan to produce organic/inorganic composite coatings on stainless steel AISI 316L by electrophoretic deposition (EPD). Two EPD processes were considered for coating development, namely direct current EPD (DC-EPD) and alternating current EPD (AC-EPD). The stability of the suspension was analyzed and the deposition parameters were optimized. Tape and bending tests demonstrated a good coating-substrate adhesion for coatings containing 45S5-Sr and 45S5-ZnSr glasses, whereas the adhesion to the substrate decreased by using 45S5-Zn glass. FTIR analyses demonstrated the composite nature of coatings and SEM observations indicated that glass particles were well integrated in the polymeric matrix, the coatings were fairly homogeneous and free of cracks; moreover, the AC-EPD technique provided better results than DC-EPD in terms of coating quality. SEM, XRD analyses, and Raman spectroscopy, performed after bioactivity test in SBF solution, confirmed the bioactive behavior of 45S5-Sr-containing coating while coatings containing Zn exhibited no hydroxyapatite formation.
机译:在这项研究工作中,通过引入锌和/或氧化锶(6摩尔%)代替氧化钙对原始的45S5生物活性玻璃进行了改性。加入Sr具有刺激骨骼形成的能力,而Zn具有促进骨骼代谢,抗菌和消炎的作用。玻璃是通过熔融和淬火工艺生产的。 SEM和XRD分析证明,引入Zr和Sr不会改变玻璃的结构和形态,而成分分析(EDS)证明这些元素已有效地掺入玻璃网络中。在长达1个月的模拟体液(SBF)中的生物活性测试表明,掺锌玻璃的生物活性动力学降低。将掺杂的玻璃与壳聚糖结合,通过电泳沉积(EPD)在AISI 316L不锈钢上生产有机/无机复合涂层。考虑了两种用于涂料开发的EPD工艺,即直流EPD(DC-EPD)和交流EPD(AC-EPD)。分析了悬浮液的稳定性并优化了沉积参数。胶带和弯曲测试表明,含有45S5-Sr和45S5-ZnSr玻璃的涂层具有良好的涂层与基材的粘附性,而使用45S5-Zn玻璃则降低了与基材的粘附性。 FTIR分析证明了涂层的复合性质,而SEM观察表明玻璃颗粒很好地集成在聚合物基体中,涂层相当均匀且无裂纹。此外,就涂层质量而言,AC-EPD技术比DC-EPD提供更好的结果。在SBF溶液中进行生物活性测试后进行的SEM,XRD分析和拉曼光谱证实,含45S5-Sr的涂层具有生物活性,而含锌涂层则没有羟基磷灰石形成。

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