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作为打压植骨中生物复合材料移植物延伸物的聚合物类型和链长的分析:一项力学和生物相容性研究。

An analysis of polymer type and chain length for use as a biological composite graft extender in impaction bone grafting: a mechanical and biocompatibility study.

机构信息

Bone and Joint Research Group, University of Southampton, SO16 6YD, United Kingdom.

出版信息

J Biomed Mater Res A. 2012 Dec;100(12):3211-9. doi: 10.1002/jbm.a.34264. Epub 2012 Jun 15.

DOI:10.1002/jbm.a.34264
PMID:22707404
Abstract

Impaction bone grafting (IBG) with human allograft remains the preferred approach for replacement of lost bone stock during revision hip surgery. Associated problems include cost, disease transmission, and stem subsidence. Synthetic grafts are therefore appealing, and ideally display similar mechanical characteristics as allograft, but with enhanced ability to form de novo bone. High and low molecular weight forms of three different polymers [poly(DL-lactide) (P(DL) LA), poly(DL-lactide-co-glycolide) (P(DL) LGA), and poly(ε-caprolactone) (PCL)] were milled, impacted into discs, and then examined in a shear testing rig, in comparison to allograft. In addition, skeletal stem cells (SSCs) were combined with each of the milled polymers, followed by impaction and examination for cell viability and number, via fluorostaining and biochemical assays. The shear strengths of high/low mwt P(DL) LA, and high/low mwt P(DL) LGA were significantly higher than allograft (p < 0.01). High/low mwt PCL had significantly lower shear strengths (p < 0.01). WST-1 assay and fluorstaining indicated significantly increased cell viability on high mwt P(DL) LA and high mwt P(DL) LGA over allograft (p < 0.05). Mechanical and biochemical analysis indicated improved properties of high mwt P(DL) LA and high mwt P(DL) LGA over allograft. This study indicates the potential of these polymers for use as substitute human allograft, creating a living composition with SSC for application in IBG.

摘要

同种异体骨移植(IBG)仍然是髋关节翻修术中替代丢失骨量的首选方法。相关问题包括成本、疾病传播和柄沉降。因此,合成移植物很有吸引力,理想情况下具有与同种异体骨相似的机械特性,但具有增强形成新骨的能力。三种不同聚合物[聚(DL-丙交酯)(P(DL)LA)、聚(DL-丙交酯-共-乙交酯)(P(DL)LGA)和聚(ε-己内酯)(PCL)]的高分子量和低分子量形式被研磨、压入圆盘,然后在剪切测试装置中与同种异体骨进行比较。此外,将成骨细胞(SSCs)与每种研磨聚合物结合,然后通过荧光染色和生化测定检查细胞活力和数量。高/低分子量 P(DL)LA 和高/低分子量 P(DL)LGA 的剪切强度明显高于同种异体骨(p < 0.01)。高/低分子量 PCL 的剪切强度明显较低(p < 0.01)。WST-1 测定和荧光染色表明,高分子量 P(DL)LA 和高分子量 P(DL)LGA 上的细胞活力明显高于同种异体骨(p < 0.05)。力学和生化分析表明,高分子量 P(DL)LA 和高分子量 P(DL)LGA 的性能优于同种异体骨。这项研究表明,这些聚合物有可能替代人类同种异体骨,与 SSC 一起创造一种用于 IBG 的活体成分。

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