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钐掺杂玻璃增强羟基磷灰石具有增强的成骨性能和抗菌性能,用于骨组织再生。

Samarium doped glass-reinforced hydroxyapatite with enhanced osteoblastic performance and antibacterial properties for bone tissue regeneration.

作者信息

Morais Diana Santos, Coelho João, Ferraz Maria Pia, Gomes Pedro Sousa, Fernandes Maria Helena, Hussain Nandyala Sooraj, Santos José Domingos, Lopes Maria Ascensão

机构信息

CEMUC, Departamento de Engenharia Metalúrgica e Materiais, Faculdade de Engenharia, Universidade do Porto (FEUP), Rua Dr. Roberto Frias, Porto, Portugal.

出版信息

J Mater Chem B. 2014 Sep 21;2(35):5872-5881. doi: 10.1039/c4tb00484a. Epub 2014 Jul 31.

Abstract

A novel bioactive bone substitute with improved osteoblastic performance and effective antibacterial activity was developed, using a completely new approach based on samarium (Sm) doped PO glass-reinforced hydroxyapatite composites (GR-HA). The composites were prepared by adding 2.5% (w/w) of the PO glass to 97.5% (w/w) of HA. Four composites were developed, i.e. one non-doped composite, and three Sm doped composites prepared with the PO glass containing 0.5, 1 and 2 (mol%) of SmO. The composites were labeled as GR-HA_control, GR-HA_0.5Sm, GR-HA_1Sm and GR-HA_2Sm. The composites were physicochemical and mechanically characterized, namely performing SEM, EDS and XRD analysis and flexural bending strength (FBS) assessment. The incorporation of Sm in the GR-HA matrix resulted in the presence of a residual Sm containing phase besides HA, β-TCP and α-TCP phases, increased surface hydrophilicity and slightly higher FBS. Sm doped composites exhibited improved osteoblastic cell response, as evidenced by a better F-actin cytoskeleton organization and higher cell proliferation and expression of relevant osteoblastic genes. In addition, adhesion of Staphylococcus aureus and Staphylococcus epidermidis was greatly reduced on these composites. The improved osteoblastic behavior and the antibacterial effects were dependent on the amount of Samarium in the composite, this being particularly evident in the composite with a higher Sm content. Therefore, the developed composite GR-HA_2Sm appears as a successful bone substitute with osteoconductive and antibacterial properties.

摘要

利用基于钐(Sm)掺杂的磷酸玻璃增强羟基磷灰石复合材料(GR-HA)的全新方法,研发出一种具有改善的成骨细胞性能和有效抗菌活性的新型生物活性骨替代物。通过将2.5%(w/w)的磷酸玻璃添加到97.5%(w/w)的羟基磷灰石中来制备复合材料。制备了四种复合材料,即一种未掺杂的复合材料,以及三种用含有0.5、1和2(mol%)SmO的磷酸玻璃制备的Sm掺杂复合材料。这些复合材料分别标记为GR-HA_control、GR-HA_0.5Sm、GR-HA_1Sm和GR-HA_2Sm。对这些复合材料进行了物理化学和力学表征,即进行扫描电子显微镜(SEM)、能谱分析(EDS)和X射线衍射(XRD)分析以及弯曲强度(FBS)评估。在GR-HA基体中掺入Sm导致除了HA、β-磷酸三钙(β-TCP)和α-磷酸三钙(α-TCP)相之外,还存在含Sm的残余相,提高了表面亲水性并使FBS略高。Sm掺杂复合材料表现出改善的成骨细胞反应,这通过更好的F-肌动蛋白细胞骨架组织以及更高的细胞增殖和相关成骨基因的表达得到证明。此外,金黄色葡萄球菌和表皮葡萄球菌在这些复合材料上的粘附大大减少。成骨细胞行为的改善和抗菌效果取决于复合材料中钐的含量,这在Sm含量较高的复合材料中尤为明显。因此,研发出的复合材料GR-HA_2Sm似乎是一种具有骨传导性和抗菌性能的成功骨替代物。

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