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溶胶-凝胶玻璃和微晶玻璃在骨干关键骨缺损愈合过程中的体内行为。

The in vivo behaviour of a sol-gel glass and a glass-ceramic during critical diaphyseal bone defects healing.

作者信息

Gil-Albarova Jorge, Salinas Antonio J, Bueno-Lozano Antonio L, Román Jesus, Aldini-Nicolo Nicolo, García-Barea Agustina, Giavaresi Gianluca, Fini Milena, Giardino Roberto, Vallet-Regí Maria

机构信息

Hospital Universitario Miguel Servet, Servicio de Cirugía Ortopédica y Traumatología, Universidad de Zaragoza, Zaragoza, Spain.

出版信息

Biomaterials. 2005 Jul;26(21):4374-82. doi: 10.1016/j.biomaterials.2004.11.006.

Abstract

The in vivo evaluation, in New Zealand rabbits, of a sol-gel glass 70% CaO-30% SiO2 (in mol%) and a glass-ceramic obtained from thermal treatment of the glass, both bioactive in Kokubo's simulated body fluid (SBF), is presented. Femoral bone diaphyseal critical defects were filled with: (i) sol-gel glass cylinders, (ii) glass-ceramic cylinders, or (iii) no material (control group). Osteosynthesis was done by means of anterior screwed plates with an associate intramedullar Kirschner wire. Each group included 10 mature rabbits, 9 months old. Follow-up was 6 months. After sacrifice, macroscopic study showed healing of bone defects, with bone coating over the cylinders, but without evidence of satisfactory repair in control group. Radiographic study showed good implant stability and periosteal growth and bone remodelling around and over the filled bone defect. The morphometric study showed minimum evidences of degradation or resorption in glass-ceramic cylinders, maintaining its original shape, but sol-gel glass cylinders showed abundant fragmentation and surface resorption. An intimate union of the new-formed bone to both materials was observed. Mechanical study showed the higher results in the glass-ceramic group, whereas sol-gel glass and control group showed no differences. The minimum degradation of glass-ceramic cylinders suggests their application in critical bone defects locations of transmission forces or load bearing. The performance of sol-gel glass cylinders suggests their usefulness in locations where a quick resorption should be preferable, considering the possibility of serving as drug or cells vehicle for both of them.

摘要

本文介绍了在新西兰兔体内对一种摩尔比为70%CaO - 30%SiO₂的溶胶 - 凝胶玻璃以及由该玻璃热处理得到的玻璃陶瓷进行的评估,这两种材料在 Kokubo 模拟体液(SBF)中均具有生物活性。将股骨骨干临界骨缺损填充以下材料:(i)溶胶 - 凝胶玻璃圆柱体,(ii)玻璃陶瓷圆柱体,或(iii)不填充任何材料(对照组)。通过带有髓内克氏针的前路加压钢板进行骨固定。每组包括10只9个月大的成年兔。随访期为6个月。处死动物后,宏观研究显示骨缺损愈合,圆柱体表面有骨覆盖,但对照组未见满意修复的迹象。影像学研究显示植入物稳定性良好,填充骨缺损周围及上方有骨膜生长和骨重塑。形态学研究显示玻璃陶瓷圆柱体降解或吸收的迹象最少,保持其原始形状,但溶胶 - 凝胶玻璃圆柱体有大量破碎和表面吸收。观察到新形成的骨与两种材料紧密结合。力学研究显示玻璃陶瓷组结果更高,而溶胶 - 凝胶玻璃组和对照组无差异。玻璃陶瓷圆柱体最小程度的降解表明它们适用于传递力或承重的关键骨缺损部位。考虑到溶胶 - 凝胶玻璃圆柱体有可能作为药物或细胞载体,其性能表明它们在希望快速吸收的部位可能有用。

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