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骨中可生物吸收的镁基植入物的µXRF元素映射

µXRF Elemental Mapping of Bioresorbable Magnesium-Based Implants in Bone.

作者信息

Turyanskaya Anna, Rauwolf Mirjam, Grünewald Tilman A, Meischel Martin, Stanzl-Tschegg Stefanie, Löffler Jörg F, Wobrauschek Peter, Weinberg Annelie M, Lichtenegger Helga C, Streli Christina

机构信息

Atominstitut, TU Wien, Stadionallee 2, Vienna 1020, Austria.

Institute of Physics and Materials Science, University of Natural Resources and Life Sciences (BOKU), Peter-Jordan-Straße 82, Vienna 1190, Austria.

出版信息

Materials (Basel). 2016 Sep 30;9(10):811. doi: 10.3390/ma9100811.

Abstract

This study investigated the distribution of the elemental constituents of Mg-based implants at various stages of the degradation process in surrounding bone tissue, with a focus on magnesium (Mg), as the main component of the alloy, and yttrium (Y), due to its potential adverse health effects. The measurements were performed on the implant-bearing thin sections of rat bone in a time series of implant degradation between one and 18 months. Micro X-ray fluorescence analysis (μXRF) with a special spectrometer meeting the requirements for the measurements of low-Z elements was used. It was found that the migration and accumulation behaviour of implant degradation products is element-specific. A sharp decrease in Mg was observed in the immediate vicinity of the interface and no specific accumulation or aggregation of Mg in the adjacent bone tissue was detected. By contrast, Y was found to migrate further into the bone over time and to remain in the tissue even after the complete degradation of the implant. Although the nature of Y accumulations must still be clarified, its potential health impact should be considered.

摘要

本研究调查了镁基植入物在周围骨组织降解过程不同阶段的元素成分分布,重点关注作为合金主要成分的镁(Mg)以及因其潜在健康不良影响的钇(Y)。在植入物降解1至18个月的时间序列内,对大鼠含植入物的骨薄片进行了测量。使用了配备满足低Z元素测量要求的特殊光谱仪的微X射线荧光分析(μXRF)。结果发现,植入物降解产物的迁移和积累行为具有元素特异性。在界面紧邻区域观察到Mg急剧减少,且未在相邻骨组织中检测到Mg的特定积累或聚集。相比之下,发现Y会随着时间进一步迁移到骨中,甚至在植入物完全降解后仍留在组织中。尽管Y积累的性质仍需阐明,但应考虑其对健康的潜在影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd1d/5456597/1486c46da36f/materials-09-00811-g001.jpg

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