用于膝关节半月板应用的盐改性聚乙烯醇水凝胶的热学和力学性能评估。

An evaluation of the thermal and mechanical properties of a salt-modified polyvinyl alcohol hydrogel for a knee meniscus application.

机构信息

Bioscience Research Institute, Athlone Institute of Technology, Co. Westmeath, Athlone, Ireland.

Bioscience Research Institute, Athlone Institute of Technology, Co. Westmeath, Athlone, Ireland.

出版信息

J Mech Behav Biomed Mater. 2014 Dec;40:13-22. doi: 10.1016/j.jmbbm.2014.08.003. Epub 2014 Aug 20.

Abstract

The treatment of irreparable knee meniscus tears remains a major challenge for the orthopaedic community. The main purpose of this research was to analyse the mechanical properties and thermal behaviour of a salt-modified polyvinyl alcohol hydrogel, in order to assess its potential for use as an artificial meniscal implant. Aqueous poly vinyl alcohol was treated with a sodium sulphate solution to precipitate out the polyvinyl alcohol resulting in a pliable hydrogel. The freeze-thaw process, a strictly physical method of crosslinking, was employed to crosslink the hydrogel. Physical crosslinks in the form of crystalline regions were induced within the hydrogel structure which resulted in a large increase in mechanical resistance. Results showed that the optimal sodium sulphate addition of 6.6% (w/v) Na2SO4 in 8.33% (w/v) PVA causes the PVA to precipitate out of its solution. The effect of multiple freeze thaw cycles was also investigated. Investigation comprised of a variety of well-established characterisation techniques such as differential scanning calorimetry (DSC), Fourier transform infrared spectroscopy (FTIR), mechanical analysis, rheometry and swelling studies. DSC analysis showed that samples cross-linked using the freeze thaw process display a thermal shift due to increased crosslink density. FTIR analysis confirmed crystallisation is present at 1142cm(-1) and also showed that no chemical alteration occurs when PVA is treated with sodium sulphate. Swelling studies indicated that that PVA/sodium sulphate hydrogels absorb less water than untreated hydrogels due to increased amounts of PVA present. Compressive strength analysis of PVA/sodium sulphate hydrogels prepared at -80°C displayed average maximum loads of 2472N, 2482.4N and 2476N of over 1, 3 and 5 freeze thaw cycles respectively. Mechanical analysis of the hydrogel indicated that the material is thermally stable and resistant to breakdown by compressive force. These properties are crucial for potential use as a meniscus or cartilage replacement. As such, the results of this study indicate that polyvinyl alcohol modified with sodium sulphate may be a suitable material for the construction of an artificial knee meniscus.

摘要

治疗不可修复的膝关节半月板撕裂仍然是骨科领域的一大挑战。本研究的主要目的是分析一种盐改性聚乙烯醇水凝胶的力学性能和热行为,以评估其作为人工半月板植入物的潜力。将聚乙烯醇水溶液用硫酸钠溶液处理,使聚乙烯醇沉淀出来,形成柔韧的水凝胶。采用严格的物理交联方法——冻融法来交联水凝胶。水凝胶结构内形成了以结晶区形式存在的物理交联,从而大大提高了机械阻力。结果表明,6.6%(w/v)硫酸钠在 8.33%(w/v)PVA 中添加 6.6%(w/v)硫酸钠可使 PVA 从溶液中沉淀出来。还研究了多次冻融循环的效果。研究包括各种成熟的表征技术,如差示扫描量热法(DSC)、傅里叶变换红外光谱(FTIR)、力学分析、流变学和溶胀研究。DSC 分析表明,使用冻融法交联的样品由于交联密度增加而显示出热位移。FTIR 分析证实 1142cm(-1)处存在结晶,并且当 PVA 用硫酸钠处理时不会发生化学变化。溶胀研究表明,由于存在更多的 PVA,PVA/硫酸钠水凝胶比未经处理的水凝胶吸收的水分少。在-80°C 下制备的 PVA/硫酸钠水凝胶的压缩强度分析显示,经过 1、3 和 5 次冻融循环,分别具有 2472N、2482.4N 和 2476N 的平均最大载荷。水凝胶的力学分析表明,该材料热稳定且不易因压缩力而损坏。这些特性对于潜在的半月板或软骨替代物的应用至关重要。因此,本研究的结果表明,用硫酸钠改性的聚乙烯醇可能是构建人工膝关节半月板的合适材料。

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