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抗菌肽Dhvar-5对庆大霉素从聚甲基丙烯酸甲酯骨水泥中释放的影响。

The effect of the antimicrobial peptide, Dhvar-5, on gentamicin release from a polymethyl methacrylate bone cement.

作者信息

Faber C, Hoogendoorn R J W, Lyaruu D M, Stallmann H P, van Marle J, van Nieuw Amerongen A, Smit T H, Wuisman P I J M

机构信息

Department of Orthopaedic Surgery, VU University Medical Center (VUmc),Vrije Universiteit, PO Box 7057, 1007 MB Amsterdam, The Netherlands.

出版信息

Biomaterials. 2005 Oct;26(28):5717-26. doi: 10.1016/j.biomaterials.2005.01.036. Epub 2005 Apr 19.

Abstract

The objective of this study was to investigate the release mechanism and kinetics of the antimicrobial peptide, Dhvar-5, both alone and in combination with gentamicin, from a standard commercial polymethyl methacrylate (PMMA) bone cement. Different amounts of Dhvar-5 were mixed with the bone cement powders of Osteopal and the gentamicin-containing Osteopal G bone cement and their release kinetics from the polymerized cement were investigated. Additionally, the internal structure of the bone cements were analysed by scanning electron microscopy (SEM) of the fracture surfaces. Secondly, porosity was investigated with the mercury intrusion method and related to the observed release profiles. In order to obtain an insight into the mechanical characteristics of the bone cement mixtures, the compressive strength of Osteopal and Osteopal G with Dhvar-5 was also investigated. The total Dhvar-5 release reached 96% in the 100 mg Dhvar-5/g Osteopal cement, whereas total gentamicin release from Osteopal G reached only 18%. Total gentamicin release increased significantly to 67% with the addition of 50mg Dhvar-5/g, but the Dhvar-5 release was not influenced. SEM showed an increase of dissolved gentamicin crystals with the addition of Dhvar-5. The mercury intrusion results suggested an increase of small pores (< 0.1 microm) with the addition of Dhvar-5. Compressive strength of Osteopal was reduced by the addition of Dhvar-5 and gentamicin, but still remained above the limit prescribed by the ISO standard for clinical bone cements. We therefore conclude that the antimicrobial peptide, Dhvar-5, was released in high amounts from PMMA bone cement. When used together with gentamicin sulphate, Dhvar-5 made the gentamicin crystals accessible for the release medium presumably through increased micro-porosity (< 0.1 microm) resulting in a fourfold increase of gentamicin release.

摘要

本研究的目的是研究抗菌肽Dhvar-5单独以及与庆大霉素联合使用时,从标准商用聚甲基丙烯酸甲酯(PMMA)骨水泥中的释放机制和动力学。将不同量的Dhvar-5与Osteopal骨水泥粉末以及含庆大霉素的Osteopal G骨水泥混合,并研究它们从聚合水泥中的释放动力学。此外,通过对断裂表面进行扫描电子显微镜(SEM)分析骨水泥的内部结构。其次,采用压汞法研究孔隙率,并将其与观察到的释放曲线相关联。为了深入了解骨水泥混合物的力学特性,还研究了添加Dhvar-5的Osteopal和Osteopal G的抗压强度。在100 mg Dhvar-5/g Osteopal骨水泥中,Dhvar-5的总释放量达到96%,而Osteopal G中庆大霉素的总释放量仅为18%。添加50mg Dhvar-5/g后,庆大霉素的总释放量显著增加至67%,但Dhvar-5的释放不受影响。SEM显示,添加Dhvar-5后溶解的庆大霉素晶体增加。压汞结果表明,添加Dhvar-5后小孔(<0.1微米)增加。添加Dhvar-5和庆大霉素会降低Osteopal的抗压强度,但仍高于ISO临床骨水泥标准规定的限值。因此,我们得出结论,抗菌肽Dhvar-5从PMMA骨水泥中大量释放。当与硫酸庆大霉素一起使用时,Dhvar-5可能通过增加微孔率(<0.1微米)使庆大霉素晶体易于进入释放介质,从而使庆大霉素释放量增加四倍。

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