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生物活性玻璃及其基复合材料用于骨组织修复的体内比较评价

A comparative in vivo evaluation of bioactive glasses and bioactive glass-based composites for bone tissue repair.

机构信息

Department of Engineering "E. Ferrari", University of Modena and Reggio Emilia, Via P. Vivarelli 10, 41125 Modena, Italy.

Lab. Biomaterials, Department of Medical and Surgical Sciences of Children & Adults, University of Modena and Reggio Emilia, Via Campi 213/A, 41125 Modena, Italy.

出版信息

Mater Sci Eng C Mater Biol Appl. 2017 Oct 1;79:286-295. doi: 10.1016/j.msec.2017.05.062. Epub 2017 May 11.

DOI:10.1016/j.msec.2017.05.062
PMID:28629020
Abstract

In this work a set of novel materials for bone tissue regeneration have been tested in vivo in an animal model. In fact, despite many studies have been devoted to amorphous 45S5 Bioglass®, there is lack in the literature of works aimed to study the in vivo performance of heat-treated - and thus partially crystallized - 45S5. As widely reported, crystallization limits the bioactivity of 45S5 and is the main reason that prevents a broader use of this material. Thus, in the present work, a recently developed bioactive glass (BG_Ca/Mix) is tested, since previous investigations demonstrated that BG_Ca/Mix is particularly promising by virtue of both its high bioactivity and lower tendency to crystallize with respect to 45S5. BG_Ca/Mix sintered powders and two composites, which contain BG_Ca/Mix and an increasing percentage (20wt% or 70wt%) of hydroxyapatite (HA), were considered. As a term of comparison, 45S5 sintered powders were also studied. The samples were implanted in rabbits' femurs and harvested after 8weeks. The histological analysis demonstrated that BG_Ca/Mix has an osteoconductive ability slightly higher than that of 45S5 glass-ceramics, followed by that of the composites, which may represent the starting point for obtaining systems with degradation rate tailored for a given clinical application. Moreover, the 45S5 samples were locally cracked, probably because of a non-uniform dissolution in the physiological environment. On the contrary such cracks, which could lead to implant instability and unsuitable mechanical performance, were not observed in BG_Ca/Mix.

摘要

在这项工作中,一组用于骨组织再生的新型材料已在动物模型中进行了体内测试。事实上,尽管已经有许多研究致力于研究非晶态 45S5 Bioglass®,但在文献中缺乏针对热处理(即部分结晶)45S5 的体内性能的研究工作。正如广泛报道的那样,结晶限制了 45S5 的生物活性,是阻止该材料更广泛应用的主要原因。因此,在本工作中,测试了一种最近开发的生物活性玻璃(BG_Ca/Mix),因为先前的研究表明,BG_Ca/Mix 具有高生物活性和比 45S5 更低的结晶倾向,因此具有很大的应用前景。考虑了 BG_Ca/Mix 烧结粉末和两种复合材料,这两种复合材料含有 BG_Ca/Mix 和越来越多的羟基磷灰石(HA)(20wt%或 70wt%)。作为比较,还研究了 45S5 烧结粉末。将样品植入兔子的股骨中,并在 8 周后取出。组织学分析表明,BG_Ca/Mix 的成骨能力略高于 45S5 玻璃陶瓷,其次是复合材料,这可能是获得具有针对特定临床应用的降解率的系统的起点。此外,45S5 样品局部出现裂纹,可能是由于在生理环境中溶解不均匀所致。相反,在 BG_Ca/Mix 中未观察到这种可能导致植入物不稳定和不适当的机械性能的裂纹。

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