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首页> 外文期刊>RSC Advances >Preparation and characterization of novel Ag doped hydroxyapatite–Fe3O4–chitosan hybrid composites and in vitro biological evaluations for orthopaedic applications
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Preparation and characterization of novel Ag doped hydroxyapatite–Fe3O4–chitosan hybrid composites and in vitro biological evaluations for orthopaedic applications

机译:新型Ag掺杂羟基磷灰石-FE3O4-壳聚糖杂交复合材料的制备与表征及对整形外科应用的体外生物学评估

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This investigation represents the fabrication of novel composites having the biopolymer chitosan with Ag doped hydroxyapatite (HAP)-magnetite nanoparticles (Fe _(3) O _(4) NPs). In this study, Ag doped HAP was synthesized by a sol–gel method using different silver concentrations such as 1%, 3% and 5%. Furthermore, Fe _(3) O _(4) NPs were prepared by a co-precipitation technique and the composite was developed with Ag doped HAP. The fabricated Ag:HAP–Fe _(3) O _(4) composites were incorporated into the chitosan matrix by a planetary ball milling technique and were tested for their reliability as a promising biomaterial for orthopaedic applications. The present study aims to evaluate the in vitro hemocompatibility of Ag doped HAP–Fe _(3) O _(4) incorporated chitosan composites using a hemolytic assay at the concentrations of 200, 400, 600, 800 and 1000 μg ml ~(?1) . The results have shown that the developed composites exhibit a hemolytic ratio of less than 5%, which proved them as good blood compatibles in nature. The antibacterial activity of the composites was evaluated in Staphylococcus aureus ( S. aureus ) and Escherichia coli ( E. coli ) bacteria, which determined that the composites can extensively inhibit the active growth of microorganisms. In addition to this, in vitro bioactivity behavior was performed in SBF solution for 7 days in order to analyze carbonated apatite formation on the surfaces of the composites and they were found to have characteristic bone bonding ability. The in vitro biocompatibility of the fabricated nanocomposite (C-3) was examined by MTT assay using NIH-3T3 fibroblast cells for incubation periods of 24 and 48 h, and the exposed concentrations are similar to the hemolytic assay. This MTT assay indicates that the fibroblast cells were non-toxic up to the concentration of 400 μg ml ~(?1) with prominent cell attachment and proliferation on C-3 composites. These prepared composite materials were further characterized by ATR-FTIR, powder-XRD and SEM-EDAX analysis. The research findings have shown that the hybrid composites of 5%@Ag:HAP–Fe _(3) O _(4) –chitosan can be widely used as a favorable material for orthopaedic and dental applications.
机译:该研究代表了具有生物聚合物壳聚糖的新型复合材料的制造,其具有Ag掺杂的羟基磷灰石(HAP)-MaGnetite纳米颗粒(Fe _(3)O _(4)NPS)。在该研究中,通过使用不同的银浓度如1%,3%和5%,通过溶胶 - 凝胶法合成Ag掺杂的Hap。此外,通过共沉淀技术制备Fe _(3)o _(4)NP,并用Ag掺杂的Hap开发复合材料。通过行星球铣削技术将制造的AG:Hap-Fe _(3)O _(4)复合材料掺入壳聚糖基质中,并在其可靠性中作为矫形应用的有希望的生物材料测试。本研究旨在评估Ag掺杂Hap-Fe _(3)O _(4)掺入的壳聚糖复合材料的体外血液相色,所述壳聚糖复合材料在浓度为200,400,600,800和1000μgmL〜(α) 1)。结果表明,发育复合材料表现出小于5%的溶血比,这证明了它们本质上的好血液。在金黄色葡萄球菌(金黄色葡萄球菌)和大肠杆菌(大肠杆菌)细菌中评价复合材料的抗菌活性,其确定复合材料可以广泛抑制微生物的活性生长。除此之外,在SBF溶液中进行体外生物活性行为7天,以分析复合材料表面上的碳酸化磷灰石形成,并且发现它们具有特征性骨粘合能力。使用NIH-3T3成纤维细胞的MTT测定检查制造的纳米复合材料(C-3)的体外生物相容性,用于孵育24和48小时,并且暴露的浓度类似于溶血性测定。该MTT测定表明,在C-3复合材料上具有突出的细胞附着和增殖的400μgml〜(α1)的浓度无毒。通过ATR-FTIR,粉末-XRD和SEM-EDAX分析进一步表征了这些制备的复合材料。研究结果表明,5%@ AG:HAP-Fe _(3)O _(4)-Chitosan的混合复合材料可广泛用作骨科和牙科应用的良好材料。

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