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基于 Na 2O-CaO-MgO-P 2O 5-SiO 2 体系的低 Na 2O 含量生物玻璃的研制与生物活性评价。

Development and bioactivity evaluation of bioglasses with low Na2O content based on the system Na 2O-CaO-MgO-P 2O 5-SiO 2.

机构信息

Department of Biomaterials, National Research Centre, 12622, El-Tahrir Str., Dokki, Cairo, Egypt.

出版信息

J Mater Sci Mater Med. 2012 Sep;23(9):2069-80. doi: 10.1007/s10856-012-4681-8. Epub 2012 May 31.

Abstract

Osteoconductive bioglasses, free of K(2)O and Al(2)O(3) and with content of Na(2)O lower than 10 mol%, were designed based on the ratio (SiO(2) + MgO)/(P(2)O(5) + CaO + Na(2)O) in the system Na(2)O-CaO-MgO-P(2)O(5)-SiO(2). The developed glasses have shown a strong potential for the formation of hydroxycarbonated apatite (HCA) in vitro. The particles of HCA aggregates tend to be of finer size with increasing the ratio of (SiO(2) + MgO)/(CaO + P(2)O(5) + Na(2)O) in the glass chemical composition indicating significant bioactivity. Critical size bone defects created in the femurs of albino adult female rats, and grafted with the glass particles for 12 weeks post implantation, were completely healed by filling with mineralized bone matrix without infection showing a strong potential for new bone formation in vivo. Osteoblasts and osteocytes were observed close to the surface of the granular implants with active areas of bone deposition, resorption and remodelling. The bioglass with lowest (SiO(2) + MgO)/(CaO + P(2)O(5) + Na(2)O) ratio has shown the highest bioactivity while the bioglass with the highest (SiO(2) + MgO)/(CaO + P(2)O(5) + Na(2)O) has shown the lowest bioactivity. The newly formed bone in vivo has shown a similar structure to that of the original bone as indicated by the histology and microstructural results. In addition, Ca/P molar ratio of the newly formed bone was found to be (~1.67), which is similar to that of the original bone.

摘要

不含 K(2)O 和 Al(2)O(3)、Na(2)O 含量低于 10mol%的骨诱导生物玻璃,是基于系统 Na(2)O-CaO-MgO-P(2)O(5)-SiO(2)中 (SiO(2) + MgO)/(P(2)O(5) + CaO + Na(2)O)的比例设计的。开发的玻璃在体外具有很强的形成羟基磷灰石 (HCA)的潜力。HCA 聚集体的颗粒随着玻璃化学成分中 (SiO(2) + MgO)/(CaO + P(2)O(5) + Na(2)O)的比例增加而趋于更细,表明具有显著的生物活性。在成年雌性白化大鼠股骨中造成临界大小的骨缺损,并在植入后 12 周用玻璃颗粒移植,完全通过矿化骨基质填充愈合,没有感染,显示出体内很强的新骨形成潜力。在颗粒状植入物表面附近观察到成骨细胞和骨细胞,有活跃的骨沉积、吸收和重塑区域。(SiO(2) + MgO)/(CaO + P(2)O(5) + Na(2)O)比例最低的生物玻璃显示出最高的生物活性,而 (SiO(2) + MgO)/(CaO + P(2)O(5) + Na(2)O)比例最高的生物玻璃显示出最低的生物活性。体内新形成的骨在组织学和微观结构结果表明具有与原始骨相似的结构。此外,新形成的骨的 Ca/P 摩尔比被发现为 (~1.67),与原始骨相似。

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