Suppr超能文献

镁及其合金的血液相容性。

Blood compatibility of magnesium and its alloys.

作者信息

Feyerabend Frank, Wendel Hans-Peter, Mihailova Boriana, Heidrich Stefanie, Agha Nezha Ahmad, Bismayer Ulrich, Willumeit-Römer Regine

机构信息

Helmholtz-Zentrum Geesthacht, Institute of Material Research, Department for Material Design and Characterisation, Max-Planck-Str. 1, 21502 Geesthacht, Germany.

Department of Cardiovascular Surgery, Clinical Research Laboratory, University Hospital Tuebingen, Calwerstr. 7/1, 72076 Tuebingen, Germany.

出版信息

Acta Biomater. 2015 Oct;25:384-94. doi: 10.1016/j.actbio.2015.07.029. Epub 2015 Jul 22.

Abstract

RATIONALE

Blood compatibility analysis in the field of biomaterials is a highly controversial topic. Especially for degradable materials like magnesium and its alloys no established test methods are available.

OBJECTIVE

The purpose of this study was to apply advanced test methodology for the analysis of degrading materials to get a mechanistic insight into the corrosion process in contact with human blood and plasma.

METHODS AND RESULTS

Pure magnesium and two magnesium alloys were analysed in a modified Chandler-Loop setup. Standard clinical parameters were determined, and a thorough analysis of the resulting implant surface chemistry was performed. The contact of the materials to blood evoked an accelerated inflammatory and cell-induced osteoconductive reaction. Corrosion products formed indicate a more realistic, in vivo like situation.

CONCLUSIONS

The active regulation of corrosion mechanisms of magnesium alloys by different cell types should be more in the focus of research to bridge the gap between in vitro and in vivo observations and to understand the mechanism of action. This in turn could lead to a better acceptance of these materials for implant applications.

STATEMENT OF SIGNIFICANCE

The presented study deals with the first mechanistic insights during whole human blood contact and its influence on a degrading magnesium-based biomaterial. The combination of clinical parameters and corrosion layer analysis has been performed for the first time. It could be of interest due to the intended use of magnesium-based stents and for orthopaedic applications for clinical applications. An interest for the readers of Acta Biomaterialia may be given, as one of the first clinically approved magnesium-based devices is a wound-closure device, which is in direct contact with blood. Moreover, for orthopaedic applications also blood contact is of high interest. Although this is not the focus of the manuscript, it could help to rise awareness for potential future applications.

摘要

原理

生物材料领域中的血液相容性分析是一个极具争议的话题。特别是对于镁及其合金等可降解材料,目前尚无既定的测试方法。

目的

本研究的目的是应用先进的测试方法来分析可降解材料,以深入了解其与人体血液和血浆接触时的腐蚀过程机制。

方法与结果

在改良的钱德勒循环装置中对纯镁和两种镁合金进行了分析。测定了标准临床参数,并对所得植入物表面化学进行了全面分析。材料与血液的接触引发了加速的炎症反应和细胞诱导的骨传导反应。形成的腐蚀产物表明情况更接近实际体内情况。

结论

不同细胞类型对镁合金腐蚀机制的主动调节应成为研究的重点,以弥合体外和体内观察之间的差距,并理解其作用机制。这反过来可能会使这些材料在植入应用中更容易被接受。

意义声明

本研究首次对全血接触过程中的机制进行了深入了解,及其对降解镁基生物材料的影响。首次将临床参数与腐蚀层分析相结合。鉴于镁基支架的预期用途以及在临床应用中的骨科应用,这可能会引起人们的兴趣。《生物材料学报》的读者可能会感兴趣,因为首个临床批准的镁基装置之一是伤口闭合装置,它与血液直接接触。此外,对于骨科应用来说,血液接触也备受关注。尽管这不是本文的重点,但它可能有助于提高对潜在未来应用的认识。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验