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用于骨科应用的镁基植入物的免疫反应。我们目前了解到什么?一项关于相关研究的系统综述。

Immunological reaction to magnesium-based implants for orthopedic applications. What do we know so far? A systematic review on studies.

作者信息

Suljevic Omer, Fischerauer Stefan F, Weinberg Annelie M, Sommer Nicole G

机构信息

Department of Orthopedics and Traumatology, Medical University of Graz, Graz, Austria.

出版信息

Mater Today Bio. 2022 Jun 9;15:100315. doi: 10.1016/j.mtbio.2022.100315. eCollection 2022 Jun.

Abstract

Magnesium-based implants (Mg) became an attractive candidate in orthopedic surgery due to their valuable properties, such as osteoconductivity, biodegradability, elasticity and mechanical strength. However, previous studies on biodegradable and non-biodegradable metal implants showed that these materials are not inert when placed as they interact with host defensive mechanisms. The aim of this study was to systematically review available studies with Mg-based implants that investigated immunological reactions to these implants. The following questions were raised: Do different types of Mg-based implants in terms of shape, size and alloying system cause different extent of immune response? and; Are there missing links to properly understand immunological reactions upon implantation and degradation of Mg-based implants? The database used for the literature research was PubMed (U.S. National Library of Medicine) and it was undertaken in the end of 2021. The inclusion criteria comprised (i) studies with bony implantation of Mg-based implants and (ii) analysis of the presence of local immune cells or systemic inflammatory parameters. We further excluded any studies involving coated Mg-implants, studies, and studies in which the implants had no bone contact. The systematic search process was conducted according to PRISMA guidelines. Initially, the search yielded 225 original articles. After reading each article, and based on the inclusion and exclusion criteria, 16 articles were included in the systematic review. In the available studies, Mg-based implants were not found to cause any severe inflammatory reaction, and only a mild to moderate inflammatory potential was attributed to the material. The timeline of foreign body giant cell formation showed to be different between the reviewed studies. The variety of degradation kinetics of different tested implants and discrepancies in studies regarding the time points of immunological investigations impair the conclusion of immunological reactions. This may be induced by different physical properties of an implant such as size, shape and alloying system. Further research is essential to elucidate the underlying mechanisms by which implant degradation affects the immune system. Also, better understanding will facilitate the decision of patients whether to undergo surgery with new device implantation.

摘要

镁基植入物(Mg)因其具有诸如骨传导性、生物可降解性、弹性和机械强度等宝贵特性,成为骨科手术中颇具吸引力的选择。然而,先前关于可生物降解和不可生物降解金属植入物的研究表明,这些材料植入后并非惰性的,因为它们会与宿主防御机制相互作用。本研究的目的是系统回顾有关镁基植入物的现有研究,这些研究调查了对这些植入物的免疫反应。提出了以下问题:不同形状、尺寸和合金系统的镁基植入物是否会引起不同程度的免疫反应?以及:在正确理解镁基植入物植入和降解后的免疫反应方面是否存在缺失环节?用于文献研究的数据库是美国国立医学图书馆的PubMed,研究于2021年底进行。纳入标准包括:(i)关于镁基植入物骨植入的研究;(ii)对局部免疫细胞或全身炎症参数存在情况的分析。我们进一步排除了任何涉及涂层镁植入物的研究、综述以及植入物无骨接触的研究。系统检索过程按照PRISMA指南进行。最初,检索得到225篇原始文章。在阅读每篇文章后,根据纳入和排除标准,16篇文章被纳入系统综述。在现有研究中,未发现镁基植入物会引起任何严重的炎症反应,该材料仅具有轻度至中度的炎症潜力。在所综述的研究中,异物巨细胞形成的时间线显示有所不同。不同测试植入物的降解动力学差异以及免疫研究时间点的研究差异,影响了对免疫反应的结论。这可能是由植入物的不同物理特性,如尺寸、形状和合金系统引起的。进一步的研究对于阐明植入物降解影响免疫系统的潜在机制至关重要。此外,更好的理解将有助于患者决定是否接受新设备植入手术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9ff/9214802/3bd3c907b894/ga1.jpg

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