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In vivo testing of a bioabsorbable magnesium alloy serving as total ossicular replacement prostheses

机译:在体内测试可生物吸收的镁合金,作为全听骨置换假体

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摘要

Magnesium alloys have been investigated in different fields of medicine and represent a promising biomaterial for implants due to characteristics like bioabsorbability and osteoinduction. The objective of this study was to evaluate the usability of magnesium as implant material in middle ear surgery. Magnesium implants were placed into the right middle ear of eighteen New Zealand White rabbits. Nine animals were euthanized after four weeks and nine animals after three month. The petrous bones were removed and embedded in epoxy resin. The specimens were then polished, stained and evaluated with the aid of a light microscope. The histological examination revealed a good biocompatibility. After four weeks, a beginning corrosion of the implant's surface and low amount of trabecular bone formation in the area of the stapes base plate was observed. A considerable degradation of implants and obvious bone formation was found three month after implantation. The magnesium alloy used in the present study partly corroded too fast, so that a complete bone reconstruction could not be established in time. The increased osteoinduction on the stapes base plate resulted in a tight bone-implant bonding. Thus, a promising application of magnesium could be a coating of biomaterials in order to improve the bony integration of implants. © The Author(s) 2012 Reprints and permissions: sagepub.co.uk/journalsPermissions.nav.
机译:镁合金已经在医学的不同领域进行了研究,由于其生物吸收性和骨诱导性等特性,代表了一种有前途的植入物生物材料。这项研究的目的是评估镁在中耳手术中作为植入材料的可用性。将镁植入物放入18只新西兰白兔的右中耳。在四周后对九只动物实施安乐死,在三个月后对九只动物实施安乐死。去除这些骨头,并嵌入环氧树脂中。然后将样品抛光,染色并在光学显微镜的帮助下进行评估。组织学检查显示良好的生物相容性。四周后,观察到植入物表面开始腐蚀,并且在骨底板区域中骨小梁形成较少。植入后三个月发现植入物明显降解,并形成明显的骨形成。本研究中使用的镁合金部分腐蚀太快,因此无法及时建立完整的骨重建。骨底板上增加的骨诱导作用导致紧密的骨-植入物粘结。因此,镁的有希望的应用可以是生物材料的涂层,以改善植入物的骨整合。 ©作者2012转载和许可:sagepub.co.uk/journalsPermissions.nav。

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