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用于椎体成形术的新型可注射硫酸钙基骨水泥的制备与表征

Preparation and characterisation of an innovative injectable calcium sulphate based bone cement for vertebroplasty application.

作者信息

Dadkhah Mehran, Pontiroli Lucia, Fiorilli Sonia, Manca Antonio, Tallia Francesca, Tcacencu Ion, Vitale-Brovarone Chiara

机构信息

Department of Applied Science and Technology, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129 Torino, Italy.

出版信息

J Mater Chem B. 2017 Jan 7;5(1):102-115. doi: 10.1039/c6tb02139e. Epub 2016 Dec 1.

Abstract

In this study, an innovative injectable and bioresorbable composite cement (Spine-Ghost) has been developed by combining a radiopaque glass-ceramic powder (SCNZgc) and spray-dried mesoporous bioactive particles (W-SC) into type III alpha calcium sulphate hemihydrate (α-CSH) (composition α-CSH/SCNZgc/W-SC, 70/20/10 wt%). The Spine-Ghost cement and pure α-CSH (as a reference) were characterised in terms of physical and mechanical properties and compared to a commercial reference (Cerament®- Bonesupport AB, Sweden). The Spine-Ghost cement had a setting time comparable with Cerament® showing a good injectability in the range of 8-20 minutes after the end of mixing. In addition, the Spine-Ghost cement showed a good radiopacity when compared with standard PMMA (BonOs Inject, aap Biomaterials GmbH Germany) and higher compressive strength when compared to healthy cancellous bone. The bioactivity of both Spine-Ghost and Cerament® was evaluated through in vitro soaking in simulated body fluid (SBF). Spine-Ghost samples were highly bioactive, inducing the precipitation of hydroxyapatite crystals in the first week of soaking in vitro. It was also found that the degradation kinetics of the Spine-Ghost cement were faster than those of pure α-CSH and comparable to those of Cerament® after approximately 1 month of soaking in SBF. Moreover, the Spine-Ghost cement was cytocompatible in indirect-contact culture in vitro. Overall results indicate that the Spine-Ghost cement might be a very good candidate for vertebroplasty application and could enhance new bone formation in vivo.

摘要

在本研究中,通过将不透射线的玻璃陶瓷粉末(SCNZgc)和喷雾干燥的介孔生物活性颗粒(W-SC)与III型半水硫酸钙α(α-CSH)混合,开发出了一种创新的可注射且可生物吸收的复合骨水泥(Spine-Ghost)(组成α-CSH/SCNZgc/W-SC,70/20/10重量%)。对Spine-Ghost骨水泥和纯α-CSH(作为对照)进行了物理和力学性能表征,并与市售对照产品(瑞典Bonesupport AB公司的Cerament®)进行了比较。Spine-Ghost骨水泥的凝固时间与Cerament®相当,在混合结束后8至20分钟范围内显示出良好的可注射性。此外,与标准聚甲基丙烯酸甲酯(德国aap Biomaterials GmbH公司的BonOs Inject)相比,Spine-Ghost骨水泥显示出良好的不透射线性能,与健康的松质骨相比具有更高的抗压强度。通过在体外模拟体液(SBF)中浸泡来评估Spine-Ghost和Cerament®的生物活性。Spine-Ghost样品具有高度生物活性,在体外浸泡的第一周就诱导了羟基磷灰石晶体的沉淀。还发现,在SBF中浸泡约1个月后,Spine-Ghost骨水泥的降解动力学比纯α-CSH更快,与Cerament®相当。此外,Spine-Ghost骨水泥在体外间接接触培养中具有细胞相容性。总体结果表明,Spine-Ghost骨水泥可能是椎体成形术应用的非常好的候选材料,并且可以增强体内新骨形成。

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