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Antibacterial properties and regenerative potential of Sr2+ and Ce3+ doped fluorapatites; a potential solution for peri-implantitis

机译:Sr2 +和Ce3 +掺杂的氟磷灰石的抗菌性能和再生潜力;种植体周围炎的潜在解决方案

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摘要

Scaffolds and implants in orthopaedics and regenerative dentistry usually fail because of bacterial infections. A promising solution would be the development of biomaterials with both significant regenerative potential and enhanced antibacterial activity. Working towards this direction, fluorapatite was synthesised and doped with Sr2+ and Ce3+ ions in order to tailor its properties. After experiments with four common bacteria (i.e. E. Coli, S. Aureus, B. Subtilis, B. Cereus), it was found that the undoped and the Ce3+ doped fluorapatites present better antibacterial response than the Sr2+ doped material. The synthesised minerals were incorporated into chitosan scaffolds and tested with Dental Pulp Stem Cells (DPSCs) to check their regenerative potential. As was expected, the scaffolds containing Sr2+-doped fluorapatite, presented high osteoconductivity leading to the differentiation of the DPSCs into osteoblasts. Similar results were obtained for the Ce3+-doped material, since both the concentration of osteocalcin and the RUNX2 gene expression were considerably higher than that for the un-doped mineral. Overall, it was shown that doping with Ce3+ retains the good antibacterial profile of fluorapatite and enhances its regenerative potential, which makes it a promising option for dealing with conditions where healing of hard tissues is compromised by bacterial contamination.
机译:骨科和再生牙科中的支架和植入物通常由于细菌感染而失败。一种有前途的解决方案将是开发具有显着再生潜力和增强抗菌活性的生物材料。朝这个方向努力,合成了氟磷灰石并掺杂了Sr 2 + 和Ce 3 + 离子,以调整其性能。经过对四种常见细菌(即大肠杆菌,金黄色葡萄球菌,枯草芽孢杆菌,枯草芽孢杆菌)的实验,发现未掺杂和Ce 3 + 掺杂的氟磷灰石的抗菌反应优于Sr 2 + 掺杂的材料。将合成的矿物质掺入壳聚糖支架中,并用牙髓干细胞(DPSC)进行测试,以检查其再生潜力。不出所料,含有Sr 2 + 掺杂的氟磷灰石的支架具有较高的骨电导性,导致DPSC分化为成骨细胞。掺杂Ce 3 + 的材料获得了相似的结果,因为骨钙素的浓度和RUNX2基因的表达均显着高于未掺杂的矿物质。总体而言,结果表明,掺杂Ce 3 + 保留了氟磷灰石的良好抗菌特性并增强了其再生潜力,这使其成为处理细菌损害硬组织愈合的疾病的有前途的选择污染。

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