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临床前研究中镁基医疗器械的评估:挑战与需考虑的要点

Evaluation of Magnesium-based Medical Devices in Preclinical Studies: Challenges and Points to Consider.

作者信息

Chagnon Madeleine, Guy Louis-Georges, Jackson Nicolette

机构信息

1 AccelLAB Inc., A Citoxlab Company, Boisbriand, Quebec, Canada.

出版信息

Toxicol Pathol. 2019 Apr;47(3):390-400. doi: 10.1177/0192623318816936. Epub 2019 Feb 3.

Abstract

Absorbable metallic implants have been under investigation for more than a century. Animal and human studies have shown that magnesium (Mg) alloys can be safely used in bioresorbable scaffolds. Several cardiovascular and orthopedic biodegradable metallic devices have recently been approved for use in humans. Bioresorbable Mg implants present many advantages when compared to bioabsorbable polymer or nonabsorbable metallic implants, including similar strength and mechanical properties as existing implant-grade metals without the drawbacks of permanence or need for implant removal. Imaging visibility is also improved compared to polymeric devices. Additionally, with Mg-based cardiovascular stents, the risk of late stent thrombosis and need for long-term anti-platelet therapy may be reduced as the host tissue absorbs the Mg degradation products and the morphology of the vessel returns to a near-normal state. Absorbable Mg implants present challenges in the conduct of preclinical animal studies and interpretation of pathology data due to their particular degradation process associated with gas production and release of by-products. This article will review the different uses of Mg implants, the Mg alloys, the distinctive degradation features of Mg, and the challenges confronting pathologists at tissue collection, fixation, imaging, slide preparation, evaluation, and interpretation of Mg implants.

摘要

可吸收金属植入物已经研究了一个多世纪。动物和人体研究表明,镁(Mg)合金可安全用于生物可吸收支架。最近,几种心血管和骨科可生物降解金属装置已获批准用于人体。与生物可吸收聚合物或不可吸收金属植入物相比,生物可吸收镁植入物具有许多优点,包括与现有植入级金属相似的强度和机械性能,且没有永久性的缺点或无需取出植入物。与聚合物装置相比,其成像可见性也有所提高。此外,对于镁基心血管支架,随着宿主组织吸收镁降解产物且血管形态恢复到接近正常状态,晚期支架血栓形成的风险以及长期抗血小板治疗的需求可能会降低。由于可吸收镁植入物的特定降解过程与气体产生和副产物释放有关,在临床前动物研究的开展和病理数据的解读方面存在挑战。本文将综述镁植入物的不同用途、镁合金、镁独特的降解特征,以及病理学家在镁植入物的组织采集、固定、成像、玻片制备、评估和解读过程中面临的挑战。

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